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  • user 8:54 pm on July 23, 2016 Permalink | Reply
    Tags: , reading list   

    Summer reading and viewing – an update on blockchain 

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    My assignment with Philips is coming to an end soon. It has been quite a ride discovering , getting overly enthusiastic, realising blockchain will actually not bring world peace and ultimately creating a vision of what blockchain can actually mean for healthcare, data and privacy.

    While it seems trivial that blockchains are immutable,
    tamper-proof and transparent records of events
    its implications can be far-reaching.

    Blockchains will enable us to create data blackboxes giving control over the data back to the individual. I will post more on the content side shortly together with my partner in crime Bart Suichies. 

    Before summer starts I wanted to provide an update to my earlier and some videos of conferences where I was on stage talking about the Lab and blockchain in healthcare.

    After summer new horizons and new adventures will arise. Certainly in blockchain, because once you take the plunge you want to stay in. Have a great summer!

    Reading List:

    Let’s start with a piece that points out why we should start to rethink data – http://qz.com/697452/companies-once-thought-theyd-make-big-money-off-big-data-now-its-their-biggest-liability/

    Next a piece on the erosion of online trust. I myself would even make that broader: there has been an erosion of trust in general and for societies to function well, trust is key – http://www.forbes.com/sites/danmunro/2016/05/15/new-survey-highlights-startling-erosion-of-online-trust/

    So Blockchains biggest innovation is trust as the Economist already noted in their cover article last year. The piece on coin desk reinforces that message http://www.coindesk.com/blockchain-innovation-trust-money/

    So what can Blockchains do in healthcare? Well for instance revolutionise research as Kaiser Permanente’s John Mattison puts forward in this interview http://www.clinical-innovation.com/topics/analytics-quality/kp-s-mattison-blockchain-will-revolutionize-research

    Or what about creating an audit trail for vaccinations, establishing an adherence program in a hospital-to-home situation, cases our team has been working on as part of the Lab.

    My thoughts on Blockchain:

    As mentioned above I will get back with a content piece on blockchain soon, but as a first snapshot I refer to the videos below. The first is more about how a blockchain lab functions in a big organization like Philips and the second is about what blockchain could mean for healthcare.

    Panel at Ouisharefest 2016 – Paris

     Interview at Dutch Blockchain Conference


    [linkedinbadge URL=”https://www.linkedin.com/in/arnolaeven” connections=”off” mode=”icon” liname=”Arno Laeven“] is Head of Blockchain Lab at Philips and this post was originally published on linkedin.

     
  • user 11:36 am on July 9, 2016 Permalink | Reply
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    Blockchain: the answer to life, the universe and everything? | World news | The Guardian 

    If you aren’t tied to the tech community, you might not have picked up on this salvation rhetoric. But you probably have heard of , which burst into the public consciousness before imploding dramatically in 2014.

    But now, bitcoin is starting to look less important than the engine that drives it – the . It was created to solve a problem that had been puzzling digital activists for decades: how to create digital property without a central authority keeping track of who owns what.

    The answer to that question, first proposed by bitcoin’s pseudonymous creator, Satoshi Nakamoto, was to create a decentralised digital ledger, keeping track of every transaction made, and with its accuracy guaranteed through the combined honesty of the entire network.

    The core of the idea is to get computers burning energy in order to prove that they are trustworthy, and stamping that trust on the “blocks” of recorded transactions. You could still lie to the network – but you’d need to burn more energy doing so than every honest participant, combined.

    Bitcoin was the first to use the blockchain, but the currency is now starting to look a bit like the steam pumping engines invented in the 17th century. Yes, it’s ingenious, but the real revolution comes when the underlying technology is used for something altogether new.

     

     

     
  • user 7:35 pm on July 8, 2016 Permalink | Reply
    Tags: 3d7ce27d6475, , , blockhain, , , , what is   

    What is bitcoin and the blockchain? 

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    A of articles, blog posts, videos, books and courses to help get you started.

    As , ethereum and other cryptocurrencies have become more popular, we’ve gotten more and more requests from people seeking suggestions for how to learn about the .

    In pulling together this list of starter articles, blog posts, books and courses, we’ve found that most people are initially willing to invest about 30–45 minutes to learn about cryptocurrencies. That can then ignite enough curiosity to invest another 2–3 hours — and then they’re off to the races.

    Feel free to share this list with others. Over the last year, members of the Digital Currency Initiative have sent it to several hundred people — from finance ministers to longtime developers interested in the space and, as a result, have seem them change their policy position or even change jobs.

    This list of articles is by no means exhaustive; it’s a living document. Feel free to suggest your favorite ethereum, smart contracts, regulatory and DAO explainer articles ([email protected]) or create your own list and share it with the community!

    Overviews (30–45 mins)

    Applications (60–90 mins)

    Technical Overviews (2–4 hours)

    Books (1–2 days each)

    Bitcoin Course & Textbook (4–5 weeks)

    Special thanks to Michael Casey, Chelsea Barabas and Neha Narula for suggesting articles for this list!


    Brian Forde is Director of the Digital Currency Initiative at MIT Media Lab

     
  • user 10:59 pm on July 1, 2016 Permalink | Reply
    Tags: , , , , blockchain summit, , ,   

    The Global Blockchain Summit- Information overload, Thoughts and Summary 

    hosted the Global last week and in typical fashion of Chinese events, it was a grand occasion. Over the course of the three day summit, participants were engaged in workshops, lectures and panel discussions. Leaders from the world all gathered at this event. Having been interested in Blockchain and since the start of this year and integrating with the Blockchain community in Shanghai, this summit was the perfect chance to meet like minded people from all over the world and I found this as a unique opportunity to deepen my understanding of my newly found interest.

    The conference, for me, was a bombardment of new information from thought leaders and experts on the matter of Blockchain and Bitcoin and it confirmed the 4 ways us humans anticipate and acknowledge information; There are things that you know that you know, things that you don’t know that you know, things you know that you don’t know and things that you don’t that you don’t know. Yes, slightly confusing, but learning anything with that framework helps a lot. Whether I was sitting through the talks or talking directly with people, not only did I find out new things I didn’t know but it made me deepen my understanding of the things I didn’t really know in depth but only knew that it had existed.

    From a fresh mind that has just started to follow the developments and slowly learn the technical layers within the Blockchain space, and by no means an expert, here are 7 key takeaways I got from the Summit:

    1. Faster innovation in China 

    Jeff Garzik of Bloq, and prominent figure in the Bitcoin Developer community, noted that there is faster innovation in China than the rest of the world within the Blockchain space. Aurelien Menant, CEO of Gatecoin, talked about why Blockchain Assets (cryptocurrencies/Dapp tokens) will become a leading alternative asset class. He predicts China will lead in Blockchain Assets due to the promise of cross border flexibility the provides and the demand for transparency in China’s financial markets. With the Chinese government being accepting of the technology, it has become a gateway for Chinese entrepreneurs and companies to innovate and explore this technology and be a possible route for China to be transparent in their financial markets. One Chinese start-up that I thought was innovative is BitSe: BitSe, with their VEChain product aims to battle the counterfeit market to build a Blockchain for luxury brands to protect and secure the authenticity of their goods.

    2. We will experience a new form of the internet

    Many speakers put it differently; Jeff notably said ‘A Digital Wallet will be the new Browser’ where a user wouldn’t want 5 digital networks and wallets for 5 digital assets. There’d be that one wallet for everything. Jan Xie, a Chinese Ethereum Developer, pointed to an Internet 3.0 and there will be an interconnection of values on a larger capacity. According to him, it won’t be a social network anymore, now there will be an incentive network which will create a better business environment. Diego Guitterez of RSK Technologies compares what we have now as the Internet of Information to what we will have in the future as the Internet of Value.

    3. Nobody likes the ‘Hard fork’

    As the hack of the DAO came a week before the Summit, it was no surprise it will be a talking point. The consensus among many of the Chinese developers was that they were opposed to the ‘Hard fork’ idea suggested by the Ethereum Foundation. 

    4. Collaboration is key to push forward

    Max Kordek, CEO of Lisk, emphasised the important of collaboration. He highlighted that competitors do not pose a challenge as it allows more of an opportunity to work with everyone else, but the biggest challenge is actually for that to happen, will projects collaborate and work together to move things forward?

    5. Think Blockchain, Think Network

    When wanting to build applications on top of a Blockchain on the biggest network and economy, I thought Jeff Garzik left us with another way to think about the Blockchain, he said not to think Blockchain as a technology but rather as a network.

    6. Eric’s Law: Any asset can be digitised, will be digitised. Everyone, some machines and most AIs will have at least one digital ID

    CEO of ViewFin, Eric Gu, was very vocal about how digital assets and smart contracts would shape our future. Thinking about how more digital our lives could be is interesting, and more particularly the implications. How will it impact the society, economy, business and our daily lives?

    7. Things need to be made easier

    During the Panel Discussion about Blockchain and New trends in , Max Kordek emphasised the importance for things need to be made easy for the real world to understand. Deng Di, the Chairman of Beijing Taiyiyuan Technologies, stated how the 1st stage of the Blockchain era was a hobby for the techies, as Bitcoin was relatively new and Blockchain, the underlying technology, had not been explored. They were the first to get involved with Bitcoin and the network. The 2nd stage is when it became hot when central and other big players started to recognise it a few years later, where many big players and governments are exploring the technology and he said we are currently in the 3rd stage, where the consumers have no idea about the Blockchain. A bottom up approach and top bottom approach is needed to educate the masses. He finally says, we show and thus prove to them how Blockchain works, not tell them how it works.

     I really think the last point is crucial because with the advent of the internet or the phone, or any technology used by the masses, many use the technologies without thinking how it works. It may be explained in simple terms from a broad level, but it could only be done after there are use cases used by the masses. For a new technology to be explained simply that has not yet been in practical use by the world is still a difficult objective to achieve.  Blockchain and its information is still in a sense raw, filled with code and technical jargon and Andre De Castro, CEO of the Blockchain of Things, has identified this problem as he aims to make it simple for enterprises to conduct business and not deal with technicalities such as making a new cryptocurrency and dealing with code.

    Another observation I made when talking to people is that there is a huge split between those who are pro Proof of Work and those who are pro Proof of Stake. To my mind, when I think Blockchain, I think decentralisation, and Bitcoin offers the best example of a purely decentralised network, whereas the proof of stake is not completely decentralised and thus defeats the purpose of what the Bitcoin innovation and its underlying technology really stands for. I assume for specific use cases, it may make sense to have a Blockchain that uses ‘trusted nodes’ for verification. Anyways, this was just an observation which I won’t go into detail as there’s a lot of information about this online and there may be a long way till one prevails over the other, or perhaps coexist in the long run.

     The Summit in Beijing showed me the promise of the Blockchain and what it could offer and I am excited in what the future holds. Our lives in the past decade have become more digital centric, particularly with the rise of smartphones and inter-connectivity and it could be even more digitalised if we can digitalise assets and exchange it. But it’s pretty funny; although we are so interconnected and exchanging information all the time, how is it that many people still do not know about Blockchain and Bitcoin?


    [linkedinbadge URL=”https://www.linkedin.com/in/ahmed-al-balaghi-柏亚德-3a57215a” connections=”off” mode=”icon” liname=”Ahmed-Al-Balaghi-柏亚德”] is Language Student at Fudan University (Shanghai)

     

     
  • user 6:00 am on June 29, 2016 Permalink | Reply
    Tags: , , ,   

    Tech Primer: What are Smart Contracts? 

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     are computer protocols that facilitate, verify, or enforce the negotiation or performance of a  contract, or that make a contractual clause unnecessary.  Smart contracts usually also have a user interface and often emulate the logic of contractual clauses.” – Wikipedia

    Smart contracts seem to be all the rage right now, and there have been quite a few posts about them on Twitter, LinkedIn, and in the blogosphere recently.

    So… what are they?

    You have more than likely experienced a smart contract within the last 12 hours, either personally or as an unknowing (or knowing) participant: Digital Rights Management as an example, whether for music or movies; Hotel room key usage; Online gambling (I hope not); Mobile data usage and overage charges; Book/ship arrangements for service payments. The list goes on and on.

    More commonly, today, you are likely seeing these terms floating next to the words , Codius, or (who has been in the news of late due to a hack), or . None of these are required to have a smart contract, but they are likely culprits for increasing the buzz-wordiness of the concept.

    Smart contracts basically boil down to this (simplified) explanation: Two people, or entities, decide on an arrangement that can be both digitally validated and enforced. A trusted electronic system monitors the validation point(s) and when a criteria has been met, the system enforces the arrangement. Here’s an overly-simple example:

    • You want to rent a movie on DVD.
    • You swipe your credit card at a kiosk.
    • Your card is approved and rental funds are moved into the DVD owner’s account.
    • Upon receiving the funds, the movie is released from the mechanism and you may take it.
    • If you fail to return the movie within a time limit, you are billed the cost of the DVD.
    • Attempts to rent another movie while you have another rented are rejected.
    • Returning the movie — or a purchase transaction — frees you to rent another DVD.

    The smart contract says you are welcome to rent the movie as long as you pay a fee and agree to be charged for a purchase if you fail to return it. The mechanism of enforcement is built into the lock/holding mechanism and the trusted system (you do trust your movie vendor, right?)

    The example above is a physical implementation of DRM, the same process could be illustrated for digital locks on Pay Per View movies or downloadable content such as text-books or streaming music. The same IF THEN ELSE rules apply: IF something happens THEN do this, ELSE do this other thing.

    • IF it’s the first of the month THEN pay the rent
    • IF I am thirsty AND it’s 6pm on Friday THEN beer, ELSE water
    • IF VALUE(MyStock) < $5 THEN BUY(MyStock) ELSE SELL(MyStock)

    The Contract is Smart as long as the criteria can be electronically validated in some way that both parties trust and the enforcement can be done electronically and automatically.

    The key to why you’re seeing more and more talk about Smart Contracts is the interest in several frameworks and systems that are being built. Bitcoin and Ethereum, or Barclay’s use of R3’s Corda platform being prime examples of some of those systems.

    That’s it, Smart Contracts in a nutshell.

    ** Tech Primers are meant to be brief and to the point, they are by no means comprehensive. Want to learn more? A good book, your local technologist, Google, and/or Wikipedia are all great resources! ** 


    [linkedinbadge URL=”https://www.linkedin.com/in/jerrygilreath” connections=”off” mode=”icon” liname=”Jerry Gilreath”] is IT executive at RagingWire Data Centers.

     
  • user 10:59 am on June 28, 2016 Permalink | Reply
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    Ethereum’s Killer App: Freedom of Contract 

    In recent weeks, governance issues are a primary concern for the community as it deals with how to build that are useful as well as innovative.

    I am convinced of the viability of the Ethereum concept, if executed in a way that works for real human relationships. Business intelligence tells me that establishment players like and governments are convinced too. Today they lack the brainpower to duplicate Ethereum’s achievements, but in time they will manage to execute a world computer for mainstream commerce. A longtime commercial lawyer, I could just build toward that, taking from Ethereum its brilliance and giving nothing in return. But I am more than just a lawyer, I am a dreamer with a mission.

    The likelihood of wide-scale smart contracts adoption makes the development of effective commercial models for Ethereum even more important. Many of us aren’t the type to accept the dominant commercial paradigm easily. We want freedom of choice, of self-determination. We want to opt-out and do it our own way. With those freedoms comes the necessity of self-governance.

    Done well, smart contracts will unlock for everyday users the wonders of private law previously only available to the rich. Private law has as its fundamental underpinning “freedom of contract”, a common law concept that respects the will of the individual to bind one’s self to a promise. Courts come into play in private law only when parties fail to self-govern or damage others. Staying within the sphere of private law is desirable in building smart contracts, at least as a first step. Taking advantage of property and contracts law benefits while avoiding torts and regulatory pitfalls requires legal training, but it is possible.

    When humans learned to write on a wide scale, they began to record contracts, paper documents reflecting a previously oral process. They had the same questions of intent, governance, fairness and predictability as Ethereum developers as they developed ways to deal with the permutations of human contract. They saw in written contracts tool for building vehicles of unlimited potential.

    Freedom of contract is real, and as Ethereum smart contracts builders it is what will set us free.


     [linkedinbadge URL=”https://www.linkedin.com/in/nina-kilbride-71185610b&#8221; connections=”off” mode=”icon” liname=”Nina Kilbride”] is Head of Legal Engineering, Eris Industries and this article was posted on linkedin.

     
  • user 7:35 am on June 16, 2016 Permalink | Reply
    Tags: 71abc0fd45ed, , , , , , ,   

    Blockchain technology: Redefining trust for a global, digital economy 

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    This post is co-authored with Michael Casey, Senior Adviser, MIT Media Lab

    It seems everyone is talking about and distributed ledger . Google Trends data show that searches for the word “blockchain” have exponentially increased. News articles tout the blockchain’s unique “digital ledger technology” as a solution for everything from bypassing Wall Street’s rent-seeking middlemen to reforming developing world democracy.

    A good deal of this could be hype. But the blockchain is a major breakthrough. That’s because its decentralized approach to verifying changes in important information addresses the centuries-old problem of , a social resource that is all too often in short supply, especially amid the current era’s rampant concerns over the security of our personal data, our finances and our transactions. It turns out that fixing that can be a boon for financial inclusion and other basic services delivery, helping to achieve the global objectives laid out in the Sustainable Development Goals (SDGs).

    Sorting out hype from reality may depend on how well we identify where institutions that have until now played a role in mediating trust between people are falling short, especially in the key area of money. Deploying the blockchain in those settings to generate secure, decentralized trust could achieve great strides in inclusion and innovation.

    What do we mean by decentralized trust? The concept is unfamiliar in part because its converse — centralized trust – is something that we often take for granted, at least while it’s working. But if we look at the history of transactions since the early barter systems to modern-day digital money exchanges, we can see how different trust protocols have evolved and how, in each case, centralizing trust within particular institutions has periodically caused problems.

    As strategies for dealing with this challenge evolved, different trust bearers emerged. Charting that evolution, we can also see parallel changes in the tokens that encapsulate mediums of exchange and stores of value. Societies’ systems of trust, in other words, have always been intrinsically linked to their definitions of money.

    Financial transactions: trust bearing and encapsulating of the value of money throughout history

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    Graphic design by Duina Reyes <[email protected]>

    Tribal chiefs were the first trust bearers, acting as de facto guardians of the collective memory, which “recorded” tribe members’ exchanges of value. But one or several tribe members’ memory was not enough to track the multitude of transactions over time. People then introduced tallies and other early registers, such as the nick-sticks of the King of England, to help overcome the issues of tampering and to act as bookkeepers.

    Later, governments issued money backed by diamonds and precious metals, especially gold, to encourage trust in the monetary system. These commodities were scarce, ensuring they retained their value, and also had the advantage of being easily transportable and divisible. This practice has since been supplanted by the issuance of fiat money without the backing of a physical commodity, a shift that has left adherents of the gold standard uncomfortable to this day In essence, they don’t trust the government guarantor to maintain the value of the currency.

    The age-old debate over gold cannot be divorced from the outsized role that commercial have increasingly assumed within our monetary system, a shift that altered the composition of money and gave them a key record-keeping function as delegated trust bearers. As banks recycled deposits by issuing claims against them in the form of checks and promissory notes, fiat government money was transformed into a wider circulation of credit/debt money. That left banks occupying quasi-independent nodes in a dispersed and fragmented network of ledger-keepers.

    This created a difficult balancing act as the assets side of the banks’ ledgers were illiquid, since long-term loans could not easily be called, while their liabilities were very liquid, since depositors could call their funds into cash at any time. Public trust in banks’ management of that relationship became a vital social good whose frequent breakdown gave rise to banking crises. That led to the creation of central banks, which offered lender-of-last-resort services in return for regulatory scrutiny. A hub-and-spokes structure emerged, with a centralized ledger managed by the central bank acting as a trust backstop for the multitude of subordinate commercial bank ledgers, where most of society’s monetary balances remained.

    This centralized trust model, with its siloed information pools, has since been digitized. But its structure hasn’t changed. And, even with central banks doing their darnedest to manage the core problem of mismatched assets and liabilities, the systemic relationships between banks’ independent and closed ledgers has become extremely hard to manage as the system has become more complex and interconnected. (The 2008 financial crisis is best viewed as a breakdown in public trust in the ledger-keepers). Meanwhile, hacking attacks against banks, such as those which recently allowed criminals to exploit the international exchange messaging service Swift show that these big repositories of data remain vulnerable.

    This is where the blockchain and distributed public ledgers come in. We now have the prospect of supplanting those risk-laden trust bearers with a more robust, decentralized model. This kind of ledger, shared among a network of autonomous computers, which confirm and validate its content by following a unique algorithm that compels them to act in the common interest, is essentially tamper-proof. The cryptographic protections are such that, under current computing capability, to go back and change past data entries would require a prohibitively expensive amount computational power. That’s why it’s often described as the world’s first “immutable ledger.” This makes for safer monetary transmission and for a more or less permanent record of digital money transactions.

    Money might be just the start of it. The topics discussed at this past week’s Blockchain Summit on Necker Island in the British Virgin Islands reveal a dizzying array of non-currency use cases for the technology: Some are working on real-time transfers of stocks and bonds, bypassing the financial intermediaries that currently engage in a convoluted chain of clearing and settlement procedures. Musicians and photographers are storing ownership data about their digital works on the blockchain to gain autonomy over their copyrighted material and build direct, creative relationships with fans and other artists. Retailers are using the blockchain to turn loyalty points into a de facto currency. Hospitals are trying out systems that give patients control over their personal records while opening encrypted versions of them in aggregate form so that research can be done on the data. The blockchain’s disintermediating potential is being tried out in trade finance, supply chain management, auditing, voting systems, notary and legal services, and the big one, digital identity.

    Just as importantly, blockchain technology will facilitate the future that technologists, governments and businesses are already planning for. Many believe the Internet of Things (IoT), in which potentially hundreds of billions of devices will transact and share information across a complex array of communication lines, will be insecure and inefficient unless it’s built on a blockchain structure. It won’t be cost-effective for banks to manage these billions of tiny transactions, and while device makers, software providers and telecom companies may want to position themselves as intermediaries for these exchanges, it’s not clear how they would be able to interoperate with each other. As a group of IBM engineers noted in a paper launching a blockchain-based program for the IoT , such a decentralized system is needed to “save the future of the Internet of Things.”

    As an extension of this IoT issue, the blockchain may also be needed to secure the distributed, decentralized power grids that communities around the world are building in the interest of energy efficiency and security. The new grids will be based on complex IoT networks in which interlinked home-based solar energy cells; autonomous, auto-communicating smart meters; and locally based electrical devices are all exchanging information, electrons and money with each other. It’s the antithesis of the old centralized model, where a public utility is trusted to deliver the power, monitor and manage each home’s meter, keep track of how much they use and owe, and then invoice everyone. Public power utilities will have no economic stakes in those localized transactions, and so can’t be tasked with monitoring the data and sending out invoices. Instead, this future energy infrastructure needs a decentralized trust protocol and a digital currency that can seamlessly flow between devices at low cost. Blockchain technology is the prime candidate for providing both.

    So, what of economic development and those SDGs? Well, as distributed ledgers overhaul the legacy banking processes, the hope is that developing-world financial systems can leapfrog to the next generation. This has parallels with the leapfrogging that billions of people did when they gained access to mobile phone services well before they had landline telephones.

    Perhaps the biggest promise in this evolution of trust protocols and digital money is that it might advance financial inclusion. The blockchain has the potential to offer a less cumbersome, less expensive infrastructure for sending money, which could finally make it cost-effective for financial institutions to service the poor. If this technology can also be used to secure robust, self-sovereign digital identities around personal data, there’s a real possibility that people in places with poor documents, registries, and rule of law can finally establish trusted measures of their otherwise good reputations. This would allow them to assert who they are and show why a bank should give them a loan.

    Meanwhile, the prospect of storing and updating property title and cadasters on the blockchain could for the first time allow the poor to assert reliable title claims to their homes and use them as collateral for borrowing. Similarly, if small and medium-sized enterprises could irrevocably prove ownership of business and commercial assets – e.g., equipment, livestock, inventory – they could gain access to working capital and, by extension, to a much wider, global marketplace.

    Now for the caveat: the implementation of this technology will, like all new technologies, come with major costs and challenges. It could mean massive layoffs, this time in services sectors such as law and accounting. There’s also a “garbage-in” risk that the information that’s input into a blockchain isn’t accurate, creating a permanent ledger of faulty data. Finally, the immutability and irreversibility of transactions might make it harder for individuals and firms to arbitrate solutions whenever there’s a dispute.

    Then there’s the question of which blockchain model to use.

    The blockchain is the most established, valuable public blockchain that’s free from any trusted authority’s control. In theory – and in practice, so far – that makes it the most robustly tamper-proof. But it has its limitations: an open-source governance structure makes it hard to make contentious changes to the operating algorithm; the transaction-processing capability needs to be significantly increased if blockchain uses are to be expanded beyond pure bitcoin currency payments; its anonymity features, while strengthening decentralization, do not fit comfortably with society’s identity-focused legal system; and bitcoin’s massive, “permissionless” network of autonomous transaction validators (know as “miners”) uses an inordinate amount of energy.

    Some are now looking at alternative models of private, or “permissioned,” blockchains, which distribute a shared ledger across many nominally independent computers according to the authorization of some trusted entity. That makes for a more efficient, easily governed system, but it inherently reintroduces some of the risks associated with centralized trust bearers and limits the amount of freewheeling innovation that can occur on such platforms. When it comes to the financial system in particular, there’s a strong case to be made for a decentralized model that’s not controlled solely by banks. That way we avoid entrenching the systemic risks of the current infrastructure. We don’t want a too-big-to-fail blockchain.

    The good news is that amid the rapid pace of open-source “” innovation, multiple solutions to these challenges are being explored. It’s hard to imagine that distributed ledger technology isn’t coming, one way or another. When it arrives, the impact on society could be profound. It is therefore critical that governments engage their citizens and each other in serious discussion about the underlying trust infrastructure of 21st century digital society.

    In some cases, we may discover that it’s best to stick with centralized trust bearers, especially if their existence is integral to the bonds on which our communities are formed. But in many other situations, we may find we’re better off investing trust in an algorithm that manages shared information across a decentralized network.

    It’s too early to know the answers. That’s why it’s incumbent upon all of us to study and understand how to maximize the benefits of this technology. With serious research, we can discover the best ways to use it to lower costs and increase access to financial services while protecting the social capital that’s vital for economic development. Society must make swift changes that accommodate the demanding nature of these new models, keeping in mind the unprecedented competition and challenges facing incumbent financial institutions and regulators. If we get this transformation right, and do so in a collective, collaborative manner, it could provide a vital building block for achieving the international community’s SDGs.


    [linkedinbadge URL=”https://www.linkedin.com/in/marianadahan&#8221; connections=”off” mode=”icon” liname=”Mariana Dahan”] is Senior Operations Officer at World Bank| United Nations 2030 Development Agenda| Coordinator| Economist| Technology and Innovation Advocate.

    [linkedinbadge URL=”https://www.linkedin.com/in/michaeljohncasey&#8221; connections=”off” mode=”icon” liname=”Michael Casey“] is Senior Advisor, Blockchain Opportunities at MIT Media Lab / Consultant / Public Speaker / Author.

    This article was originally published on linkedin.

     
  • user 10:00 pm on June 14, 2016 Permalink | Reply
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    Blockchain: From Hype to Prototype – Deloitte Digital Series – video 

    The conference addressed the most commonly asked question today: how to go from hype to ?

     
  • user 7:35 pm on June 9, 2016 Permalink | Reply
    Tags: , dao,   

    Crypto 2.0 Musings – Standards and Reference Data Governance DAOs 

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    Last few weeks has seen the rise of The – an organisation like no other. Part VC fund of about 170 million USD, part crowdfunding platform, part machine. The machine part is the novel piece of the puzzle – effectively all of the governance of this new entity is done by on Ethereum, so whereas before, humans outsourced worked to machines, the machines now outsource work to humans – machines invite humans to fund them and then vote on, and monitor investments on their behalf. Read my PALE blog for more details behind the concept of distributed autonomous organisations.

    whereas before, humans outsourced worked to machines, the machines now outsource work to humans

    Whilst the idea of machine governance is truly exciting, in the case of a VC fund, folks like BitShares, who have been running a less public but none the less similar scheme for a bit now, have raised concerns such as effective engagement – people like the idea and invest in a fund, but do not have the time or expertise to manage it, so without a clear leader, good decision making is absent – of course on the other hand we have seen plenty of leaders make very bad decisions and whole concept of crowd wisdom argues that even relatively uninformed people, in sufficient numbers will make better decisions than a well informed individual.

    The same concept of automated governance e.g. voting, can in my opinion be easily transplanted to many other areas, including standards bodies. Think open source foundations like Apache Software Foundation, Linux Foundation, Ethereum Foundation and Foundation, or folks like International Organisation for Standardisation (ISO) and BSI Group

    Whilst standard setting activity is far less glamorous than managing a multi-million fund, in my opinion it faces a far smaller risk of rejection – very few people I suspect get excited about operating governance procedures, so automation here is a form of pain relief. The other issue with blockchains today is lack of transaction amount privacy, which may be an issue for VC funds in some cases, but a must-have feature for a standards body. Assuming that either a standards body will be comfortable using virtual currencies or fiat money will be on-chained, a Governance DAO will even be able to manage it’s own funds to pay human staff wages, office leases etc.

    And here comes the double whammy – if the standards body is managing reference data, take ISO 4217 currency codes for example, both the codes and their metadata i.e. a living locally stored and replicated document, as well as governance rules like votes for change, can be managed on-chain by smart contracts. Any change is replicated in near real-time to anyone running a node, to make use of as appropriate inside their firewall. Given the importance of reference data and today’s reconciliation issues, a Governance DAO sounds to me like a great value proposition. 


    [linkedinbadge URL=”https://www.linkedin.com/in/batlin&#8221; connections=”off” mode=”icon” liname=”Alex Batlin”] is Senior Innovation Manager and this article was originally posted it on linkedin.

     
  • user 7:37 am on June 8, 2016 Permalink | Reply
    Tags: , ,   

    Smart Contracts and Smart Lawsuits 

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    We hear a lot about “smart contracts”[1] these days.  What about “smart lawsuits”?

    Lawsuits are a dispute resolution tool.  Over-simplying (a lot): a plaintiff puts their problems into a complaint (sometimes called a petition) and files it with a court.  The defendant answers (or doesn’t, and maybe gets defaulted).  No dispute?  No need for a lawsuit.

    How were disputes resolved before lawsuits?  Using current lingo, we’d probably call it “peer-to-peer.”  You stole my cows?  I’m stealing them back.  The reader can imagine their own, more colorful, self-help remedies. 

    Formalized court systems made most modern commerce possible.  Whether or not you like them (or think they should last) is a matter of personal preference.  Whatever you think, they are also likely to remain in place for some time, process automation brought to you by software notwithstanding. 

    Lawsuits may have been an improvement but they aren’t always fast or efficient, a common complaint.  Proving that one thing is or isn’t true takes time and, often, testimony or documentary evidence.  They are also static, not dynamic documents, and changes must be incorporated by written amendment.  Nor are they aware or able to respond to or interact with external data.  Lawyers are catching up, but we still use tools and with 19th century (and earlier) antecedents.  

    Take a basic function of a lawsuit, deciding what’s true and what’s not.  Who decides that in our current system?  First you have to distinguish between law and facts, at least in the U.S.  We use a jury system, in which a number of citizens are selected to decide which facts are true and which aren’t.  In a non-jury case, the judge will make factual decisions.  In all cases, the judge makes legal decisions.  

    Some lawsuits are dismissed early for a variety of reasons.  They may fail to state a claim under any recognized theory of law.  It may be true that you can sue someone because you don’t like what they had for breakfast.  If that’s all you got, though, your lawsuit will probably be dismissed if the request is made.

    If you make it past motions to dismiss you may end up in what’s called discovery (again, I’m referring to the U.S.)[2]  Discovery is the phase of a case where the parties get to learn about the other sides’ facts — what do they have that will prove their case?  The proof may be in the form of witness testimony or exist in documentary form.  Document can be ink and paper or electronic. 

    Some cases make it to trial.  Some don’t.  They may settle, they may be dismissed.  Some cases are resolved in motion practice.  Summary Judgment is an example.  It’s a way to resolve a case without a trial where (1) there are no “genuine issues of material fact” and (2) the moving party is entitled to a decision in their favor as a matter of law.  (See Rule 56 of the Federal Rules of Civil Procedure for the Federal Court formulation.  Many states follow this, though not all.  https://www.law.cornell.edu/rules/frcp/rule_56).  

    How do you get summary judgment in your favor or defend against it and live to make it to trial?  You have to be able to get your facts in front of the judge, who will decide the motion.  Traditionally, this involved citing deposition testimony and getting witnesses to provide affidavits or declarations, under oath, attesting to facts (either to show a dispute the lack of one), and including documentary evidence (the authenticity of which may need to be established by a person with knowledge).  Disputes often turn on things like whether a document was signed, whether or when products were delivered — things that can be proved or disproved with documentary evidence, which may or not be readily available or for which authenticity may be disputed. 

    The Federal Rules don’t use the word in Rule 56, but they do refer to “electronically stored information”, right between “documents” and “affidavits of declarations”.

    (1) Supporting Factual Positions. A party asserting that a fact cannot be or is genuinely disputed must support the assertion by:

    (A) citing to particular parts of materials in the record, including depositions, documents, electronically stored information, affidavits or declarations, stipulations (including those made for purposes of the motion only), admissions, interrogatory answers, or other materials; 

    At the risk of stating the obvious, blockchain data = “electronically stored information”.   Explaining to a Court what a blockchain or are may for educational (if not foundational) purposes still require an explanatory declaration of affidavit.  But it’s not hard to foresee a time in the not too distant future where moving papers might point to an address, no affidavit needed.  

    If a record’s substance and existence can’t be contested, that would do away with a lot of disputes and make summary judgment practice simpler for many.  As for broader applications, here’s a nice formulation by Nina Kilbride of Eris Industries:

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    It may not happen overnight, but this may be how blockchain based smart contracts may start to pave a way to smart lawsuits.  The first lawsuit or summary judgment motion that refers to a contract address may have the distinction of being the first (sorta) smart lawsuit.

    *  Photo credit:  https://pixabay.com/en/bird-cage-hanging-birdcage-vintage-783185/.  CC0 public domain.

    ** Disclaimer:  These are my personal opinions only.  They may not be shared by and are not sanctioned by clients, past, present or future, or any law firm with which I’m affiliated.  And none of this is legal advice.  A blog post isn’t a substitute for a lawyer.

    [1].  Neither smart, not contracts.  You’ll find a recent and very thoughtful discussion of “smart legal contracts” here:  http://www.coindesk.com/making-sense-smart-contracts/.

    [2].  The world is a big place.  The fact that I’m referring to U.S. practice is because I am U.S. trained lawyer.


     [linkedinbadge URL=”https://www.linkedin.com/in/stephendpalley&#8221; connections=”off” mode=”icon” liname=”Stephen Palley”], the author of this post, is a lawyer focused on Construction, Insurance, and Compliance Driven Software Development. @palleylaw

     
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