Application of a grid scale energy storage system to reduce distribution network losses

H. Saboori, H. Abdi
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引用次数: 28

Abstract

Recent progress in advanced energy storage systems (ESS) and their relative technological maturity imply a promising future for energy storage. As a consequence, the use of stored energy to support and optimize the generation, transmission, and distribution subsystems has been grown up worldwide. One of the ESS applications is using them for load leveling. Since network losses is a square function of current, shifting load from peak to off-peak periods can potentially reduce system losses. This paper gives a quantitative survey of the possible reduction in losses, for a situation where distribution feeder load is shifted in time but not reduced. Load leveling practice will be done by an ESS unit installed in the distribution substation. Various factors governing loss reduction such as transformer side installation (MVlLV) are analyzed. Also, required ESS characteristics like Ampere-hour (Ah) capacity, current, power, and charge /discharge speed to ideally leveling the load are presented. Simulation results show that besides loss reduction, load leveling has a significant impact on network capacity. In other words, shifting peak load can defer investment plans considering load growth in the near future.
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电网规模储能系统在降低配电网损耗中的应用
先进储能系统(ESS)的最新进展及其相对成熟的技术意味着储能的前景广阔。因此,利用储存的能量来支持和优化发电、输电和配电子系统已经在世界范围内发展起来。其中一个ESS应用程序使用它们来均衡负载。由于网络损耗是电流的平方函数,将负载从高峰转移到非高峰可以潜在地减少系统损耗。本文对配电馈线负荷及时转移但不减少的情况下可能减少的损失进行了定量调查。负荷均衡实践将由安装在配电变电所的ESS装置完成。分析了影响减损的各种因素,如变压器侧安装。此外,所需要的ESS特性,如安培小时(Ah)容量、电流、功率和充放电速度,以理想地均衡负载。仿真结果表明,除减少网络损耗外,负载均衡对网络容量也有显著影响。换句话说,转移峰值负荷可以推迟考虑近期负荷增长的投资计划。
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