Multi-block ADMM Approach for Decentralized Demand Response of Energy Communities with Flexible Loads and Shared Energy Storage System

Seyed Mohsen Hosseini, Raffaele Carli, J. Jantzen, M. Dotoli
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引用次数: 2

Abstract

This paper proposes a novel decentralized energy scheduling framework for demand response of energy communities in the case of limited overall capacity of distribution networks. A combined energy scheduling of heating, ventilation, and air conditioning systems and a community energy storage system (CESS) for multiple smart residential users is presented. The proposed approach aims at minimizing the total expected energy costs while ensuring the occupants’ thermal comfort. The optimization problem is first formulated as a mixed-integer linear programming problem, which is converted into a linear programming problem using a tractable approximation method based on a non-complementary charging/discharging strategy of the CESS. The decentralized resolution process is based on multi-block proximal Jacobian alternating direction method of multipliers, ensuring efficient computation and protecting users’ privacy. We assess the effectiveness of the proposed approach through numerical experiments on a realistic case study.
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具有柔性负荷和共享储能系统的能源社区分散需求响应的多块ADMM方法
针对配电网总容量有限情况下能源社区的需求响应问题,提出了一种新的分布式能源调度框架。提出了一种针对多个智能住宅用户的采暖、通风、空调系统和社区储能系统(CESS)的联合能量调度方案。所提出的方法旨在最大限度地减少总预期能源成本,同时确保居住者的热舒适。首先将优化问题表述为混合整数线性规划问题,然后利用基于非互补充放电策略的易处理逼近方法将优化问题转化为线性规划问题。分散的解析过程基于乘法器的多块近端雅可比交替方向法,保证了高效的计算,同时保护了用户的隐私。我们通过一个实际案例的数值实验来评估所提出方法的有效性。
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