AGC Command Allocation Coordinating Frequency Performance and Anti-Vibration of Hydropower Units

Yi Xu, Y. Lei, Mingxu Xiang, Wei Liu, Zimeng Huang, G. He, Juan Yu
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Abstract

Hydropower units (HPUs) are inevitably affected by vibration zone when participating in frequency regulation through automatic generation control (AGC). To improve this., the anti-vibration demand of HPUs is embedded into the AGC command allocation in existing studies. However., the system frequency regulation demand is ignored when considering the anti-vibration demand., which may deteriorate the frequency performance. With this in mind., an AGC command allocation method coordinating frequency performance and anti-vibration of HPUs is proposed in this paper. Firstly., the adjustment amount for crossing the vibration zone and the available regulation capacity considering the anti-vibration of HPUs are evaluated. Then, an optimal selection strategy considering the system frequency regulation demand is proposed to determine the HPUs that implement the vibration zone crossing. Correspondingly, the aforementioned evaluation results are adjusted. Finally, the AGC command is allocated to HPUs and thermal power units (TPUs) with the comprehensive consideration of system frequency regulation demand, anti-vibration demand of HPUs, and available regulation capacity of HPUs and TPUs. Time-domain simulation results based on practical data demonstrate that the proposed method can reduce the impact of the vibration zone on HPUs while ensuring the system frequency performance.
水电机组AGC指令分配协调频率性能与抗振
水力发电机组在参与自动发电调节频率时,不可避免地受到振动带的影响。为了改善这一点。,现有研究将hpu的抗振需求嵌入到AGC指令分配中。然而。,在考虑抗振需求时,忽略系统的调频需求。,可能导致频率性能下降。记住这一点。提出了一种协调高性能处理器频率性能和抗振性能的AGC指令分配方法。首先。,评估了通过振动区的调节量和考虑hpu抗振的可用调节能力。在此基础上,提出了一种考虑系统调频需求的优化选择策略,以确定实现振动带穿越的hpu。相应对上述评价结果进行调整。最后综合考虑系统的调频需求、hpu的抗振需求以及hpu和tpu的可用调节能力,将AGC命令分配给hpu和tpu。基于实际数据的时域仿真结果表明,该方法可以在保证系统频率性能的同时减小振动区对高性能处理器的影响。
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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