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Characteristic Analysis and Optimal Regulation of Primary Frequency Regulation Condition in Low Water Head Area Based on Hydraulic-Mechanical-Electrical Coupling Model of Pumped Storage Unit

机译:基于泵送存储单元液压 - 机电耦合模型的低水头面积初级频率调节条件的特征分析与最优调节

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摘要

Pumped storage power station is an important regulating tool for peak load regulation and frequency regulation of the power grid, especially its primary frequency regulation function, which is of profound significance for the safety and stability of the power grid. As the core equipment of the pumped storage power station, the reversible design of the pump turbine makes it easy to have hydraulic fluctuation and mechanical instability when the unit runs to the “S” characteristic area, which will cause the frequency oscillation of the generator under the condition of primary frequency regulation. Therefore, some innovative work is studied in this paper: (1) an accurate hydraulic-mechanical-electrical coupling system mathematical model of pumped storage unit regulation system (PSURS) is established based on full characteristic curve of the pump turbine and seventh-order synchronous generator and excitation system; (2) the dynamic response characteristics of primary frequency regulation of pumped storage unit (PSU) under different water heads and different frequency disturbances are analyzed by numerical simulation; (3) in view of the unstable condition of the unit under the large frequency disturbance when it operates in the low head and small load area, the objective optimization function considering the ITAE index of hydraulic, mechanical, and electrical factors is proposed; and (4) fractional-order PID controller and the bacterial-foraging chemotaxis gravitational search algorithm (BCGSA) combined optimization strategy is used for PSURS optimization regulation and parameter optimization. The results show that the joint optimization strategy proposed in this paper has smaller objective function value, and makes the PSURS pass through the unbalanced area quickly, with better primary frequency regulation speed and smaller regulation depth.
机译:泵送存储电站是用于电网峰值负荷调节和频率调节的重要调节工具,尤其是其初级频率调节功能,这对于电网的安全性和稳定性具有深远的重要性。作为泵送存储电站的核心设备,泵涡轮机的可逆设计使得当装置运行到“S”特征区域时,泵涡轮机的可逆设计使得液压波动和机械不稳定,这将导致发电机的频率振荡初级频率调节的条件。因此,本文研究了一些创新工作:(1)基于泵涡轮机和第七级同步的全部特性曲线建立了泵浦存储单元调节系统(PSURS)的准确液压机电耦合系统数学模型。发电机和励磁系统; (2)用数值模拟分析了不同水头下泵浦存储单元(PSU)初级频率调节的动态响应特性; (3)考虑到该单位的不稳定条件在大频率扰动下,当它在低头和小负载区域时,提出了考虑液压,机械和电气因子的itaE指数的客观优化功能; (4)分数级PID控制器和细菌辅助趋化性引力搜索算法(BCGSA)组合优化策略用于PSURS优化调节和参数优化。结果表明,本文提出的联合优化策略具有较小的客观函数值,并使PSURS快速通过不平衡区域,具有更好的初级频率调节速度和更小的调节深度。

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