微电网系统中隐私约束的能源管理

Zhe Wang, Kai Yang, Xiaodong Wang
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引用次数: 1

摘要

针对由多个单元和一个控制中心组成的微电网系统,我们提出了一种隐私保护的供需侧联合能源管理策略,每个单元由智能电表、分布式能源发电机和一些能源消耗客户组成。假设细胞可以通过交换其本地产生的能量来进行合作,并且它们可以通过控制中心获得外部能量。将该问题表述为受隐私约束的线性优化问题,对微电网系统内的能源利用进行最优调节,以减少需要外部进口能源来弥补的能源短缺。为了解决这一问题,我们开发了一种隐私保护方案,该方案以有限信息交换的分布式方式执行所提出的基于对偶分解的算法。最后,在不侵犯隐私的情况下获得了最优的能量调度,仿真结果表明了所提技术优于传统方法的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Privacy constrained energy management in microgrid systems
We propose privacy-preserved joint supply- and demand-side energy management strategies for a microgrid system that consists of several cells and a control center, with each cell composed of a smart meter, a distributed energy generator and some energy consuming customers. It is assumed that the cells can cooperate by exchanging their locally generated energy and they can obtain external energy, both through the control center. The problem is formulated as privacy-constrained linear optimization problem to optimality regulate the energy utilization within the microgrid system for reducing the energy shortage which needs to be fulfilled by externally imported energy. To solve this problem, we develop a privacy-preserving scheme that performs the proposed dual decomposition-based algorithm in a distributed fashion with the limited information exchanges. Finally, the optimal energy schedule is obtained without the privacy violation and simulation results are provided to demonstrate the superior performance of the proposed techniques over the traditional methods.
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