考虑电池储能系统寿命特性的可再生能源微电网优化运行

M. Shehzad, F. Guéniat
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引用次数: 1

摘要

电池储能系统与可再生能源微电网的集成对于解决电力供应问题具有重要作用。为了实现可再生能源微电网的可靠和经济运行,除了最大限度地整合可再生资源外,还需要对电池储能系统的寿命特性进行充分研究。本研究建立了包含电池寿命损失成本、状态切换成本和运行维护成本的优化模型,以获得一组运行策略的最优参数。考虑到电池储能系统的寿命特性,以最大限度地提高储能系统的售电量和最小化电池寿命周期的退化为主要的控制目标。基于混合整数约束和动态模型,通过实现基于模型的预测控制(MPC)方案,解决了最优负荷需求跟踪和电力市场参与问题。通过大量的仿真验证了该控制器的有效性,使基于re的微电网运行成本最小化。
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Optimal operation of renewable energy microgrids considering lifetime characteristics of battery energy storage system
The battery energy storage system’s integration with renewable energy (RE) micro-grids play an important role in solving power supply problems. To achieve reliable and economic operations of a RE micro-grid, in addition to maximize the integration of of renewable resources, the lifetime characteristics of a battery energy storage system also need to be fully investigated.This research study develops an optimization model that includes battery life loss cost, states switching costs, and operation and maintenance cost to obtain a set of optimal parameters of operation strategy. Considering the lifetime characteristics of battery storage system, a multi-objective optimization to maximize the power sold values, and to minimize the degradations concerning battery life cycles has been achieved being main control objectives of the research under study. Based on a model adopting mixed-integer constraints and dynamics, the problem of optimal load demand tracking, and electricity market participation is solved through the implementation of an model based predictive control (MPC) scheme. The efficacy of the proposed controller is proved through extensive simulations where the RE-based micro-grid running costs are minimized.
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