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Study on Power Low Frequency Oscillation Caused by Primary Frequency Modulation

机译:初级频率调制引起的功率低频振荡研究

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Power low-frequency oscillation is a complex dynamic behavior of the power system, which is related to the safe and stable operation of the power grid. This paper studies the mechanism of the unit’s low-frequency oscillation during a frequency modulation action of the unit. It is pointed out that during a frequency modulation action, when the projection of the mechanical torque vector of the unit on the axis of the speed offset is positive, it means that the mechanical torque characteristic is negative damping. If the negative damping component is too large and exceeds the positive damping component after power system stabilizer compensation, the unit will show negative damping characteristics as a whole, which will cause adjustment power oscillation. Based on the historical data of the synchronous phasor measurement unit in the low-frequency oscillation event of the coal-fired unit, it is judged that the low-frequency oscillation is a forced oscillation caused by the primary frequency modulation of the unit. Through mechanism analysis, the unit coordinated control system exits, the digtal electric hydraulic control system is put into the closed loop mode of the power loop, and the logic setting of the primary frequency modulation command switching is unreasonable, resulting in a substantial increase in valve position output commands. It is equivalent to that the forward open loop gain of the speed channel is too large, which causes the negative damping component of the mechanical torque to be too large, which causes the regulation oscillation. Through simulation demonstration, it is determined that during the primary frequency modulation, the unreasonable logic setting and parameter setting of the primary frequency modulation control loop are the main reasons for the low frequency oscillation of the coal-fired unit power. Finally, the main measures to eliminate the unit oscillation caused by the primary frequency regulation of the unit and the suggestions for stable operation of the unit are put forward.
机译:功耗低频振荡是电力系统,这是关系到电网的安全稳定运行的复杂动态行为。本文所述单元的频率调制操作过程中研究该单元的低频振荡的机制。应当指出,一个频率调制操作期间,当在速度偏移的轴单元的机械转矩矢量的投影是正的,这意味着该机械转矩特性是负阻尼。如果负阻尼部件过大并且超过电力系统稳定器补偿后的正阻尼部件,该单元将显示负阻尼特性作为一个整体,这将导致调整功率振荡。基于在燃煤单元的低频振荡事件同步相量测量单元的历史数据,则判断为低频振荡是由该单元的主频率调制强迫振荡。通过机构分析,机组协调控制系统退出,DIGTAL电动液压控制系统投入电源环路的闭环模式,并且主频率调制命令切换的逻辑设置不合理,导致阀的大幅增加位置输出命令。它等同于该信道速度的向前开环增益过大,这会导致负阻尼的机械扭矩的部件过大,这会导致调节振荡。通过模拟演示,则确定所述主频率调制时,主频率调制控制环路的不合理逻辑设定和参数设置是用于燃煤单元功率的低频振荡的主要原因。最后,以消除由该单元的主要频率调节和用于该单元的稳定运行的建议的单元振荡的主要措施提出。

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