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Secure Electricity Trading and Incentive Contract Model for Electric Vehicle Based on Energy Blockchain

机译:基于能量区块链的电动汽车安全交易和激励合同模型

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摘要

As a neoteric high-tech product, electric vehicles (EVs) can effectively solve the problems of energy shortages and environmental pollution. On the one hand, EV can relieve the peak load of a smart grid and improve the electricity system operation. On the other hand, EV's electricity trading information can provide useful data for vehicle management departments to electricity scheduling. However, hackers can easily obtain data from the central database to simulate both parties involved, which leads to the receiver getting unauthorized information. For these challenges, we propose a novel secure electricity trading and incentive contract model based on the basic rules of China's electricity market. The digital signature technology adopts elliptic curve bilinear pairing to guarantee the reliability and integrity of the transaction information. Energy blockchain is utilized for encryption and distributed storage of energy data with the possession of tamper-proof and traceability. The consistency part of the data block applies a practical Byzantine fault-tolerant (PBFT) algorithm, which not only increases transaction throughput but also reduces transmission delay. The incentive contract based on revenue rewards can promote the benign interaction of EVs. The security analysis reveals that this scheme can achieve better results. Compared with other schemes, our scheme saves about 64.55% of the communication overhead and validates the same number of signed messages in a shorter time. Incentive contracts based on game theory can facilitate EV electricity trading through energy coin rewards. This mechanism makes EV more willing and active to participate in transactions that guarantee the activity and stability of the network.
机译:作为一个新型高科技产品,电动汽车(EVS)可以有效解决能源短缺和环境污染问题。一方面,EV可以减轻智能电网的峰值负荷并改善电力系统操作。另一方面,EV的电力交易信息可以为车辆管理部门提供电力调度的有用数据。但是,黑客可以轻松地从中央数据库获取数据以模拟所涉及的双方,这导致接收器获得未经授权的信息。为这些挑战,我们提出了一种基于中国电力市场基本规则的新型安全电力交易和激励合同模式。数字签名技术采用椭圆曲线双线性配对,以保证交易信息的可靠性和完整性。能量区块链用于加密和分布能量数据存储,并拥有防篡改和可追溯性。数据块的一致性部分适用于实用的拜占庭容错(PBFT)算法,这不仅提高了事务吞吐量,而且还降低了传输延迟。基于收入奖励的激励合同可以促进EVS的良性互动。安全分析表明,该方案可以实现更好的结果。与其他方案相比,我们的方案节省了约64.55%的通信开销,并在较短的时间内验证相同数量的签名消息。基于博弈论的激励合同可以通过能量硬币奖励促进电力交易。这种机制使EV更愿意和积极参与保证网络活动和稳定性的交易。

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