基于太阳辐照度的高间歇光伏系统调频负荷控制器

Xie Cherng Miow, Y. Lim, L. Hau, J. Wong, H. Patsios
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引用次数: 0

摘要

由于马来西亚靠近赤道地区,容易受到许多过路云的影响,因此光伏系统(PV)的电力输出具有高度间歇性。光伏发电输出的高间歇性增加了发电与需求之间的功率不匹配。因此,它导致频率问题,如频率漂移和高频率变化率(ROCOF)。已经提出了几种方法来缓解频率问题,需求侧管理(DSM)由于其比其他方法(如飞轮和基于电池的储能系统)更低的部署成本而成为核心。用电需求管理通过控制配电级负荷的用电量来调节系统频率。传统上,研究人员根据实际光伏输出功率设计DSM负荷控制器。然而,与太阳辐照度相比,这种数据可能不常见。因此,本文提出了一种基于太阳辐照度的负荷控制器,用于光伏发电高间歇性下的频率调节。初步结果表明,所提出的控制器与使用实际光伏功率输出数据进行频率调节的负载控制器具有相当的性能。当使用空载控制器时,所提出的控制器还可以将系统频率保持在50hz±1%的法定限制范围内,并且与基线相比,ROCOF降低0.033 Hz/s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solar Irradiance-based Load Controller for Frequency Regulation under High Intermittency Photovoltaic System
The power output of photovoltaic systems (PV) in Malaysia is highly intermittent due to its location near the equatorial region that is susceptible to many passing clouds. High intermittency of PV power output increases the power mismatches between the power generation and demand. Consequently, it leads to frequency issues such as frequency excursions and a high rate of change of frequency (ROCOF). Several methods have been proposed to mitigate the frequency issues, and demand side management (DSM) has been central due to its lower deployment costs than other methods such as flywheel- and battery-based energy storage systems. DSM controls the electrical consumption of loads at the distribution level to regulate the system frequency. Conventionally, researchers have designed the DSM load controller based on actual PV power output. However, such data may not be commonly available compared to solar irradiance. Thus, this paper presents a solar irradiance-based load controller for frequency regulation under high intermittency of PV. The preliminary results show that the proposed controller has a comparable performance versus a load controller that uses the actual PV power output data for frequency regulation. The proposed controller also can maintain the system frequency well within the statutory limit of 50 Hz ± 1 % and reduce the ROCOF by 0.033 Hz/s compared to the baseline when no load controller is used.
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