Optimal Allocation of Distributed Energy Storage Systems in Weak Grid: A Case Study of Ali, Tibet

C. Liu, Anni Lin, Boqi Zhang, Weikang Kong, Miao Zhu, S. Wen
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Abstract

Nowadays, integrating more renewable energy into power systems has been viewed as an irreversible route to achieving carbon neutrality. However, with the trend of high renewable energy penetration, the randomness and volatility pose a great challenge to the power grid. Compared with the power system with strong inertia, the weak grid is more vulnerable to fluctuations caused by renewable energy generation. In this sense, distributed energy storage systems are necessary for a weak grid to mitigate the negative effect of renewable energy. This paper proposes an optimal location and sizing framework for distributed energy storage systems in a weak power system. Furthermore, the problem is formulated as a non-linear, non-convex optimization problem and solved by an adaptive particle swarm optimization. A real-world weak grid, Ali regional power grid, is selected to perform case studies and numerical results demonstrate the efficiency of the proposed method.
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弱电网下分布式储能系统的优化配置——以西藏阿里为例
如今,将更多的可再生能源纳入电力系统已被视为实现碳中和的不可逆转之路。然而,随着可再生能源的高度普及,其随机性和波动性对电网提出了巨大的挑战。与具有强惯性的电力系统相比,弱电网更容易受到可再生能源发电带来的波动的影响。从这个意义上说,分布式储能系统对于弱电网来说是必要的,以减轻可再生能源的负面影响。提出了弱电系统中分布式储能系统的最优选址和最优规模框架。将该问题转化为非线性非凸优化问题,并采用自适应粒子群算法求解。以实际弱电网阿里区域电网为例进行了实例研究,数值结果验证了该方法的有效性。
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