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Effect Of Energy Storage System (ESS) in Low Inertia Power System with High Renewable Energy Sources

机译:储能系统(ESS)在具有高可再生能源的低惯性电力系统中的作用

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Intermittence and variability of renewable resources is often a barrier to their huge penetration in power systems. Another barrier is the lack of synchronous generators providing rotational inertia. The replacement of conventional synchronous generation with converter connected renewable energy sources reduces system inertia and impacts primary frequency response of the system. In order to keep frequency in permissible limits in systems with low rotational inertia, certain requirements from inertia must be met in order to avoid system instability. By adding such new requirements, the traditional unit commitment problem may be modified as more synchronous generators may be dispatched for the only purpose of bringing inertia which is not really benefits for power system operators. Energy storage systems (ESS) combined with renewable energy resources (RES) are an efficient and serviceable solution to bring inertia to the system. In such way, this paper discusses the effect of energy storage systems (ESS) on system having low inertia by modeling a block diagram of frequency response of a low-inertia system including energy storage system. Then effect of ESS on the frequency response is shown. Further the energy storage system is sized and evaluation of its impact on the unit commitment based on a study case system with high wind energy penetration is performed by using Matpower Optimal Scheduling Tool (MOST).
机译:可再生资源的间歇性和可变性通常是其在电力系统中的巨大渗透的障碍。另一个障碍是缺少提供旋转惯量的同步发电机。用转换器连接的可再生能源代替传统的同步发电可减少系统惯性并影响系统的主频率响应。为了在低转动惯量的系统中将频率保持在允许的范围内,必须满足惯性的某些要求,以避免系统不稳定。通过增加这样的新要求,可以修改传统的机组承诺问题,因为可以派遣更多的同步发电机,其唯一目的是带来惯性,而这对电力系统运营商而言并不是真正的好处。储能系统(ESS)与可再生能源(RES)相结合是一种有效且可维护的解决方案,可为系统带来惯性。以此方式,本文通过对包括能量存储系统的低惯性系统的频率响应框图进行建模,讨论了能量存储系统(ESS)对低惯性系统的影响。然后显示了ESS对频率响应的影响。此外,还通过使用Matpower最佳计划工具(MOST)来确定储能系统的大小,并基于风能渗透率高的案例系统评估其对机组承诺的影响。

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