用混合储能系统缓解太阳能光伏发电波动的斜坡速率控制

G. Kumar, K. Palanisamy
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引用次数: 0

摘要

本文提出了一种斜坡速率控制(RRC)来缓解混合储能系统(HESS)的太阳能光伏发电波动。一次能源的波动较大,导致光伏发电机组的输出容量变化较大。这种变化可能导致电力系统的不稳定,以及由于PV的大量渗透而导致的电能质量问题。建议储能装置(ess)作为波动补偿器的作用,以尽量减少使用RRC的这些问题。分布式发电系统(DG)已成为一个关键的挑战,因为DG在故障期间从电网中断会导致停电和电压闪变等严重困难。低压穿越(LVRT)是一种很有前途的低压条件下无功供电方法。所提出的方法将实现对集成电池存储(BS)的动态控制,以减轻白天的功率波动,同时对集成超级电容器(SC)存储进行充电或放电,将BS的突然变化控制在一定程度上。在BS和SC存储之间交换能量的系统提供了对经过云的快速波动的不间断控制。利用RRC对地理偏转对光伏发电的平滑影响进行了存储容量节约评估。利用一年内每隔15秒从电厂获取的实际运行光伏输出数据进行仿真,验证了该模型的有效性。使用OP-5700 HIL试验台进行实时测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ramp-Rate Control for Mitigation of Solar PV Fluctuations with Hybrid Energy Storage System
This paper proposes a ramp-rate control (RRC) for mitigation of solar PV fluctuations with a hybrid energy storage system (HESS). The highly fluctuating primary energy source causes photovoltaic (PV) generators to suffer from variable output capacity. Such variations can lead to instability in power systems and problems with power quality due to large PV penetration. The role of energy storage devices (ESSs) as a fluctuation compensator is suggested to minimize these issues using RRC. Distributed Generation Systems (DGs) have become a key challenge as the disruption of DG from the grid during faults results in severe difficulties such as power outages and voltage flickers. Low voltage ride through (LVRT) is a promising method for supplying reactive power under low voltage conditions. The proposed method will enable dynamic control of integrated battery storage (BS) to mitigate power fluctuations during the day while simultaneously charging or discharging the integrated super-capacitor (SC) storage to control sudden variations in a BS to a certain magnitude. A system for exchanging energy between the BS and the SC storage provides uninterrupted control of the rapid fluctuations of the passing cloud. The storage capacity savings are evaluated by using the RRC for the smoothing impact of geographical deflection on PV power production. Simulations conducted with real operational PV power output data taken every 1 s from the power plant during one year confirm the validity of the model. The OP-5700 HIL test-bench is used for the real-time results.
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