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首页> 外文期刊>Journal of Process Control >A self-interested distributed economic model predictive control approach to battery energy storage networks
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A self-interested distributed economic model predictive control approach to battery energy storage networks

机译:一种自信的分布式经济模式预测控制电池储能网络

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In this work, a dissipativity based distributed economic model predictive control (DEMPC) approach is developed for the operation of battery energy storage (BES) networks in residential microgrids. With the presence of a microgrid power market (MPM), control of the BES systems is formulated as a self-interested distributed control problem, as individual DEMPC controllers minimize their local economic cost functions based on the price prediction of MPM. Due to the intermittent nature of photovoltaic (PV) power generations and load demands, the DEMPC without proper coordination or constraints may lead to excessive energy trading and price oscillations in MPM. To solve this problem, dissipativity theory with dynamic supply rates is adopted in this paper to deal with the interactions between individual users and the MPM. The microgrid-wide performance requirement of attenuation of the net power fluctuations with respect to time-varying PV generation and demands, is converted into the dissipative trajectory constraints imposed on individual DEMPC controllers. The proposed approach is scalable as it does not require online iterative optimizations across the controller network. A case study is presented to illustrate the proposed method. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项工作中,开发了一种基于耗散的分布式经济模型预测控制(DEMPC)方法,用于在住宅微电网中的电池能量存储(BES)网络的运行。随着微电网电力市场(MPM)的存在,将对BES系统的控制制定为自信的分布式控制问题,因为单独的DEMPC控制器基于MPM的价格预测最小化其本地经济成本函数。由于光伏(PV)发电的间歇性和负载需求,DEMPC没有适当的协调或约束可能导致MPM中的能量交易和价格振荡过度。为了解决这个问题,本文采用了具有动态供应率的耗散理论,以处理个别用户与MPM之间的相互作用。关于时变PV生成和要求的净功率波动衰减的微电网的性能要求被转换为对单个DEMPC控制器施加的耗散轨迹约束。所提出的方法是可扩展的,因为它不需要跨控制器网络的在线迭代优化。提出了案例研究以说明所提出的方法。 (c)2018年elestvier有限公司保留所有权利。

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