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Leveraging Public-Private Blockchain Interoperability for Closed Consortium Interfacing

机译:利用封闭联盟接口的公私区块链互操作性

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摘要

With the increasing adoption of private blockchain platforms, consortia operating in various sectors such as trade, finance, logistics, etc., are becoming common. Despite having the benefits of a completely decentralized architecture which supports transparency and distributed control, existing private blockchains limit the data, assets, and processes within its closed boundary, which restricts secure and verifiable service provisioning to the end-consumers. Thus, platforms such as e-commerce with multiple sellers or cloud federation with a collection of cloud service providers cannot be decentralized with the existing blockchain platforms. This paper proposes a decentralized gateway architecture interfacing private blockchain with end-users by leveraging the unique combination of public and private blockchain platforms through interoperation. Through the use case of decentralized cloud federations, we have demonstrated the viability of the solution. Our testbed implementation with Ethereum and Hyperledger Fabric, with three service providers, shows that such consortium can operate within an acceptable response latency while scaling up to 64 parallel requests per second for cloud infrastructure provisioning. Further analysis over the Mininet emulation platform indicates that the platform can scale well with minimal impact over the latency as the number of participating service providers increases.
机译:随着私营区块链平台的增加,在各个部门运营的联盟,如贸易,金融,物流等,正在变得普遍。尽管具有支持透明度和分布式控制的完全分散的架构的好处,但现有的私有区块链限制了其封闭边界内的数据,资产和流程,这限制了最终消费者的安全和可验证的服务供应。因此,具有多个卖家或云联合的平台,其中包含云服务提供商集合不能与现有区块链平台分散。本文提出了一种分散的网关架构,通过互操作利用公共和私有区块链平台的独特组合来接口私有区块链。通过分散云联合的用例,我们已经证明了解决方案的可行性。我们的测试平台与超载和超载合影结构有三个服务提供商的实现,表明,此类联盟可以在可接受的响应延迟内运行,同时为云基础架构配置缩放最多64个并行请求。进一步分析MinInet仿真平台表示,随着参与服务提供商的数量增加,该平台可以在对延迟的最小冲击中展现得很好。

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