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Real-Time Power Balancing in Electric Grids With Distributed Storage

机译:具有分布式存储的电网中的实时功率平衡

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Power balancing is crucial for the reliability of an electric power grid. In this paper, we consider an aggregator coordinating a group of distributed storage (DS) units to provide power balancing service to a power grid through charging or discharging. We present a real-time, distributed algorithm that enables the DS units to determine their own charging or discharging amounts. The algorithm accommodates a wide spectrum of vital system characteristics, including time-varying power imbalance amount and electricity price, finite battery size constraints, cost of using external energy sources, and battery degradation. We develop a modified Lyapunov optimization framework for real-time power balancing and provide a fast iterative method for distributed implementation. The two components interact through a novel cost cushion parameter that tunes the trade-off between system performance and convergence speed. We show analytically that the algorithm converges quickly and provides asymptotically optimal performance as the capacity of DS units increases. We further study through simulation the algorithm performance over a wide range of parameter values and demonstrate that it is highly competitive over a greedy alternative.
机译:功率平衡对于电网的可靠性至关重要。在本文中,我们考虑一个聚合器,该聚合器协调一组分布式存储(DS)单元,以通过充电或放电为电网提供功率平衡服务。我们提出了一种实时的分布式算法,使DS单元可以确定其自身的充电或放电量。该算法具有广泛的重要系统特性,包括时变电源不平衡量和电价,有限的电池尺寸限制,使用外部能源的成本以及电池退化。我们开发了用于实时功率平衡的改进的Lyapunov优化框架,并为分布式实现提供了一种快速的迭代方法。这两个组件通过新颖的成本缓冲参数进行交互,该参数调整了系统性能和收敛速度之间的权衡。我们通过分析表明,随着DS单元容量的增加,该算法快速收敛并提供渐近最优性能。我们通过仿真进一步研究了算法在各种参数值上的性能,并证明了它在贪婪的选择上具有很高的竞争力。

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