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An effective secured peer-to-peer energy market based on blockchain architecture for the interconnected microgrid and smart grid

机译:基于区块链架构的基于互联的微电网和智能电网的基于区块链架构的有效的担保的对等能源市场

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One of the most significant current topics in the energy market is the decentralized operation of the power system wherein the entire discipline is constructed based on the consensus concept. In such a framework, an agreement among all effective participants in the market should be brought without the presence of an independent arbitrator. This paper proposes a secured energy market architecture based on peer-to-peer (P2P) idea to provide an appropriate platform based on the decentralized network and key aspects of energy market, including network architecture, interface communication, and network security. It is apparent that communication interfaces connecting the market participants is a fundamental property for achieving this purpose and that must be secured against the malicious attacks. In this regard, reaching the secured consensus is guaranteed by providing a new blockchain platform coincided by P2P energy market. The energy market is conducted by an effective Relaxed Consensus-Innovation (RCI) based algorithm with the aim of bringing the power/price exchanged among connecting participants in the form of P2P structure. In the proposed model, a microgrid and a smart grid are considered as the market participants, who tend to negotiate with each other in a way that follow their own benefits in the secured environment. The microgrid includes the wind turbine (WT), photovoltaic (PV), tidal turbine and storage unit to satisfy its demand and the smart grid is composed of distributed generations (DGs) and lines in the form of the IEEE 24-bus test system. In order to handle the uncertainty effects in the problem, a stochastic framework based on unscented transform (UT) is proposed in the P2P energy market. In order to assess and verify the fault-tolerant system ability against the cyber-attack, the fault data injection attack (FDIA) is modeled and applied to the P2P energy market in a blockchain platform. The simulation results approve the appropriate performance and applicable nature of the proposed concepts in this paper.
机译:能源市场中最重要的目的主题之一是基于共识概念构建整个学科的电力系统的分散运行。在这样的框架中,在没有独立的仲裁员的情况下,应达成市场中所有有效参与者之间的协议。本文提出了一种基于对等(P2P)思想的安全能源市场架构,以提供基于分散网络的适当平台和能源市场的关键方面,包括网络架构,接口通信和网络安全性。显而易见的是,连接市场参与者的通信接口是实现此目的的基本属性,必须抵御恶意攻击。在这方面,通过提供由P2P能源市场恰逢P2P能源市场的新区块链平台,保证了达到担保共识。能源市场是由一项基于有效的轻松共识 - 创新(RCI)的算法进行的,目的是将电力/价格带到了P2P结构形式的连接参与者之间。在拟议的模型中,微电网和智能电网被视为市场参与者,他们倾向于以遵循安全环境中的益处的方式互相谈判。微耕电器包括风力涡轮机(WT),光伏(PV),潮汐涡轮机和存储单元,以满足其需求,并且智能电网由分布式代代(DGS)和IEEE 24总线测试系统的形式组成。为了处理问题的不确定性效果,在P2P能量市场中提出了一种基于无创转换(UT)的随机框架。为了评估和验证对网络攻击的容错系统能力,故障数据注入攻击(FDIA)被建模并应用于区块链平台的P2P能量市场。仿真结果批准了本文提出概念的适当性能和适用性。

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