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A Hybrid Blockchain Consensus Algorithm Using Locational Marginal Pricing for Energy Applications

机译:一种使用基地边际定价用于能源应用的混合区块链共识算法

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Blockchain technology has recently witnessed a rapid proliferation across multiple industries and has the potential to evolve as a popular energy transaction platform for grid operators and general users. The current proof-of-work consensus algorithm used by many blockchain protocols suffer from vulnerabilities such as the majority attacks problem and strip mining. The algorithm often requires specialized application-specific hardware and involves energy-intensive computation, making it an unlikely candidate for power grid applications. On the other hand, the proof-of-stake consensus algorithm is susceptible to the well-known nothing-at-stake vulnerability issue, making it equally unlikely to be used in large-scale secured energy transactions. An energy-efficient locational marginal pricing-based hybrid proof-of-work, proof-of-stake consensus algorithm is proposed to mitigate such risks. The hybrid consensus algorithm uses an optimized market-based energy pricing model to select the mining and forging nodes. A detailed framework of the hybrid consensus algorithm is provided, along with an overview of its potential application to record large volumes of energy transactions and execute obligatory smart-contract agreements.
机译:BlockChain技术最近目睹了多个行业的快速增殖,并且有可能作为电网运营商和一般用户的流行能源交易平台发展。许多区块链协议使用的目前的工作验证算法遭受漏洞,例如大多数攻击问题和剥离挖掘。该算法通常需要专用的特定于应用的硬件,并涉及能量密集的计算,使其成为电网应用的不太可能的候选者。另一方面,持股权共识算法易于众所周知的无股权漏洞问题,使其同样不太可能用于大规模安全能量交易。建议提出了一种基于节能的基于位置边缘定价的混合验证算法,以减轻这种风险。混合共识算法使用优化的基于市场的能量定价模型来选择挖掘和锻造节点。提供了混合共识算法的详细框架,并概述了其潜在应用程序,以记录大量的能源交易和执行强制性智能合同协议。

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