A Blockchain-based Platform for Exchange of Solar Energy: Laboratory-scale Implementation

M. Pipattanasomporn, M. Kuzlu, S. Rahman
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引用次数: 39

Abstract

Over the last decade, the increasing uptake of rooftop solar photovoltaics (PV) at the grid edge transforms residential houses into complex energy "prosumers". A house with rooftop solar PV can both consume and export electricity. Hence, it can participate in a "Transactive Energy" network involving peer-to-peer (P2P) exchange of excess electricity. The challenge is to keep track of these transactions and compensate buyers and sellers accordingly. Recently, blockchain has emerged as a distributed ledger technology which allows exchanges among participants without the need for a central market entity. There are several blockchain pilots in the energy sector, which focus on the business, legal and financial aspects, but without much details about how to implement a blockchain-based P2P trading platform. This paper addresses this issue by presenting laboratory-scale implementation of a blockchain network for exchange of solar electricity among participants using Hyperledger – an open-source collaborative effort. Participants, assets and transactions necessary to establish the blockchain-based network for keeping track of solar PV output exchanges are described, together with the smart contract, use cases and their implementation.
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基于区块链的太阳能交换平台:实验室规模的实施
在过去的十年中,越来越多的屋顶太阳能光伏(PV)在电网边缘的吸收将住宅转变为复杂的能源“产消者”。拥有屋顶太阳能光伏的房子既可以消耗电力,也可以输出电力。因此,它可以参与一个涉及点对点(P2P)交换多余电力的“交易能源”网络。挑战在于跟踪这些交易,并相应地补偿买家和卖家。最近,区块链作为一种分布式账本技术出现了,它允许参与者之间的交流,而不需要一个中央市场实体。能源领域有几个区块链试点,重点关注商业、法律和金融方面,但没有太多关于如何实施基于区块链的P2P交易平台的细节。本文通过展示实验室规模的区块链网络来解决这个问题,该网络用于使用Hyperledger(一种开源协作努力)在参与者之间交换太阳能电力。描述了建立基于区块链的网络以跟踪太阳能光伏输出交换所需的参与者、资产和交易,以及智能合约、用例及其实施。
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