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Celer Network: Bring Internet Scale to Every Blockchain

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arxiv 1810.00037 v1 pith:TZBDQFO4 submitted 2018-09-28 cs.NI

classification cs.NI
keywords off-chainblockchainnetworkstatecelerdappspartiesscaling
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Off-chain scaling techniques allow mutually distrustful parties to execute a contract locally among themselves instead of on the global blockchain. Parties involved in the transaction maintain a multi-signature fraud-proof off-chain replicated state machine, and only resort to on-chain consensus when absolutely necessary (e.g., when two parties disagree on a state). Off-chain scaling is the only way to support fully scale-out decentralized applications ("dApps") with better privacy and no compromise on the trust and decentralization guarantees. It is the inflection point for blockchain mass adoption, and will be the engine behind all scalable dApps. Celer Network is an Internet-scale, trust-free, and privacy-preserving platform where everyone can quickly build, operate, and use highly scalable dApps. It is not a standalone blockchain but a networked system running on top of existing and future blockchains. It provides unprecedented performance and flexibility through innovation in off-chain scaling techniques and incentive-aligned cryptoeconomics. Celer Network embraces a layered architecture with clean abstractions that enable rapid evolution of each individual component, including a generalized state channel and sidechain suite that supports fast and generic off-chain state transitions; a provably optimal value transfer routing mechanism that achieves an order of magnitude higher throughput compared to state-of-the-art solutions; a powerful development framework and runtime for off-chain applications; and a new cryptoeconomic model that provides network effect, stable liquidity, and high availability for the off-chain ecosystem.

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Cited by 1 Pith paper

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  1. Privacy-Utility Tradeoffs in Routing Cryptocurrency over Payment Channel Networks

    cs.CR 2019-09 conditional novelty 8.0 of 10

    Under shortest-path routing in payment channel networks, any balance-revealing noise mechanism must satisfy the privacy-utility inequality Π ≤ 1 - U, and this bound is asymptotically tight.

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