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Sizing of Energy Storage Systems for Grid Inertial Response

机译:电网惯性响应储能系统的尺寸

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Although the deployment of renewable energy sources (RES) alleviates several concerns related to energy, natural resources, and climate change, their lack of rotational kinetic energy is a key challenge to the stability and resilience of future power grids. Energy storage systems (ESS) hold the potential to compensate for this lack of rotational kinetic energy with virtual inertia—such a system is called a virtual synchronous generator (VSG). Determining optimal sizes of VSGs is a key factor to develop strategies that efficiently assure the capability of VSGs in maintaining the stability of future power systems. This paper proposes an approach for sizing ESS for grid inertial response in the presence of RES. Time domain simulations are used to determine the minimum inertia required by a power system to maintain its stability. A stochastic method involving Monte Carlo simulation is developed and utilized to determine the low frequency events for a given time period. A stability index is also developed to quantify the probability of occurrence of low inertia events in the system. The ESS is then sized accordingly to compensate for the lost inertia. The proposed method is demonstrated on the reduced Western System Coordinating Council 9-bus test system. The results show that VSG can compensate for the lack of rotational kinetic energy for a wide range of fault clearing times and penetration of RES.
机译:虽然可再生能源(RES)的部署减轻了与能源,自然资源和气候变化有关的几个问题,但它们缺乏旋转动能是对未来电网的稳定性和恢复性的关键挑战。能量存储系统(ESS)持有弥补这种缺乏旋转动能的潜力,具有虚拟惯性 - 这种系统称为虚拟同步发电机(VSG)。确定VSG的最佳尺寸是开发策略的关键因素,以有效地确保VSG在维持未来电力系统稳定性方面的能力。本文提出了一种在res存在下进行网格惯性响应的尺寸尺寸的方法。时域模拟用于确定电力系统所需的最小惯性,以保持其稳定性。开发并利用涉及蒙特卡罗模拟的随机方法,以确定给定时间段的低频事件。还开发了一种稳定性指标来量化系统中低惯性事件的发生概率。然后,ESS相应地尺寸以补偿丢失的惯性。拟议的方法在减少的西方系统协调委员会9公交车测试系统上证明了该方法。结果表明,VSG可以补偿缺乏旋转动能的旋转动能,用于广泛的故障清算时间和res的渗透。

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