A Frequency Stability Analysis for BESS Placement Considering the Loads and Wind farms Locations

Hassan Alsharif, M. Jalili, K. Hasan
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Abstract

Power systems operating with a high level of inverter-based renewable generation resources, e.g. photovoltaic systems and wind turbines, may impose significant challenges on the power system dynamics, including the system frequency stability. The Battery Energy Storage Systems (BESS) has been recognised as a viable solution for system stability issues as it can rapidly respond to system disturbances, and also it provides high flexibility in terms of the storage capacity and placement locations. In the literature, the focus of BESS placement in frequency stability studies is mostly limited to that, the BESS placement is being identified based on the location of the highest frequency deviation in the power system using different optimisation techniques. The main issue of this technique is that it partly or even completely ignores some of the important factors in power systems, i.e. the overall system dynamics, the uncertainty of load demand and intermittent generation sources output power and the locations of the loads and the intermittent generation sources. This research, therefore, aims to fill this gap by considering the aforementioned factors in the BESS placement under two different analysis approaches, i.e. deterministic and probabilistic (long-term investigation). The simulation has been carried out in DIgSILENT PowerFactory software with Python interface and has been demonstrated using the IEEE 39-bus power system. The obtained results revealed that the BESS placement closer to the load's side (consumers' side) provides better frequency stability than when the BESS was placed near the wind farms' side (generation side).
考虑负荷和风电场位置的BESS布置频率稳定性分析
以逆变器为基础的可再生能源发电资源较多的电力系统,如光伏系统和风力涡轮机,可能会对电力系统的动态特性带来重大挑战,包括系统频率稳定性。电池储能系统(BESS)已被认为是解决系统稳定性问题的可行方案,因为它可以快速响应系统干扰,并且在存储容量和放置位置方面提供了高度的灵活性。在文献中,BESS放置在频率稳定性研究中的重点主要限于此,BESS放置是基于电力系统中使用不同优化技术的最高频率偏差的位置来确定的。该技术的主要问题是部分甚至完全忽略了电力系统中的一些重要因素,即系统整体动力学、负荷需求和间歇性发电源输出功率的不确定性以及负荷和间歇性发电源的位置。因此,本研究旨在通过在两种不同的分析方法(即确定性和概率(长期调查))下考虑BESS安置中的上述因素来填补这一空白。仿真在DIgSILENT PowerFactory软件中以Python接口进行,并使用IEEE 39总线电源系统进行了验证。结果表明,靠近负荷侧(用户侧)的BESS比靠近风电场侧(发电侧)的BESS提供更好的频率稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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