Token-Based Smart Power Contract for Interoperable Blockchains of Networked Microgrid System

D. Sharma
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Abstract

Designing the secure and privacy-protected smart power contract between electricity suppliers and consumers, considered agents, of different microgrids, is a challenging task in the networked- microgrid system. A framework is suggested in which each microgrid implements a heterogeneous or isomorphic blockchain based platform. The blockchain interoperability, inherently, is present in different blockchains implemented by various microgrids. This paper reviews the interoperability issues and smart contract designs in blockchain based systems. The paper proposes new mechanisms to cater blockchain interoperability challenges to facilitate the design of secure and seamless smart contracts among different blockchains of microgrids. A network hub of heterogeneous or isomorphic blockchains of network microgrids has been created. A methodology has been developed to transfer tokens between interoperable blockchains. Distributed identity-based microgrid (DIBM) scheme is incorporated to make the networked microgrid system secure and trustworthy. This paper suggests an effective consensus protocol for cross-chain architecture that improves the tokenization system and smart power contract designs. For simulation purposes, MATLAB and python programming have been used with real-time data of microgrids.
网络化微电网系统互操作区块链的代币式智能电力合约
在网络化微电网系统中,在不同微电网的电力供应商和消费者(被视为代理)之间设计安全且保护隐私的智能电力合同是一项具有挑战性的任务。本文提出了一个框架,其中每个微电网都实现了基于区块链的异构或同构平台。区块链的互操作性本身就存在于各种微电网实施的不同区块链中。本文回顾了基于区块链系统的互操作性问题和智能合约设计。本文提出了应对区块链互操作性挑战的新机制,以促进微电网不同区块链之间安全、无缝的智能合约设计。创建了一个网络微电网异构或同构区块链的网络中心。开发了在可互操作区块链之间转移代币的方法。基于分布式身份的微电网(DIBM)方案被纳入其中,以确保网络微电网系统的安全性和可信性。本文为跨链架构提出了一种有效的共识协议,改进了代币化系统和智能电力合约设计。为了进行仿真,本文使用了 MATLAB 和 python 编程,并使用了微电网的实时数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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