Research on Supporting Capacity of Concentrated Solar Power Plant Based on Reactive Power and Voltage Control

Wang Xiangyan, Zhou Qiang, Chen Ning, Zhao Dawei, Peng Peipei
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Abstract

Concentrated solar power technology is a renewable energy power generation technology that can achieve friendly grid connection and effective peak shaving at the same time. Based on the characteristics of the synchronous generator of the concentrated solar power unit, this paper first studies the reactive voltage control mode of the concentrated solar power plant, proposes the control technology of the generator terminal voltage and the high-voltage side bus voltage of the concentrated solar power plant, and analyzes the transient response characteristics of the generator terminal voltage of the concentrated solar power unit and its support capacity for the grid voltage under fault conditions. Through the excitation control system of synchronous generator, the generator terminal voltage of the power station can be controlled, and the bus voltage at the high voltage side of the power station can also be controlled, realizing the reactive voltage support for the power grid. On this basis, a power system example of wind power-photovoltaic-solar thermal combined power generation sent to the load center is designed to study the transient reactive power and voltage support capacity of solar thermal power stations. The research shows that the generator terminal voltage changes after the disturbance, but it can quickly adjust to the reference value under the condition of small disturbances such as voltage and load; Under the large disturbance of short circuit fault, the generator terminal voltage changes sharply, but it can finally stabilize and adjust to the reference value under the control of excitation system.
基于无功和电压控制的聚光太阳能电站配套能力研究
聚光太阳能发电技术是一种可以同时实现友好并网和有效调峰的可再生能源发电技术。本文根据聚光太阳能发电机组同步发电机的特点,首先研究了聚光太阳能电站的无功电压控制方式,提出了聚光太阳能电站发电机端电压和高压侧母线电压的控制技术;分析了聚光太阳能发电机组发电机端电压在故障工况下的暂态响应特性及其对电网电压的支撑能力。通过同步发电机励磁控制系统,可以控制电站的发电机终端电压,也可以控制电站高压侧的母线电压,实现对电网的无功电压支撑。在此基础上,设计了风电-光伏-光热联产并网发电到负荷中心的电力系统实例,研究了光热电站的暂态无功功率和电压支撑能力。研究表明,扰动后发电机端电压发生变化,但在电压、负载等扰动较小的情况下,能快速调整到参考值;在短路故障的大扰动下,发电机端电压变化剧烈,但在励磁系统的控制下最终稳定并调整到参考值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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