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Comparison between AGC and a tuningless LFC approach based on direct observation of DERs

机译:基于直接观察DER​​的AGC与无调谐LFC方法的比较

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Automatic Generation Control (AGC) used in secondary frequency control requires manual tuning to maintain a balance between reaction speed and stability. This task becomes increasingly difficult due to the rising number of inverter-coupled devices and High-Voltage Direct Current (HVDC) links, and the resulting reduction of available inertia. In this paper, we propose a tuningless Load-Frequency Control (LFC) approach able to cope with the changing dynamics of electric power grids. Harnessing the possibilities of modern monitoring and communication means, the so-called Direct Load-Frequency Control (DLFC) employs two concurrently operating processes: a power matching stage responsible for secondary power adjustment using directly observed area imbalances; and a frequency control stage that adjusts primary reserves' frequency setpoints in a systematic manner. As opposed to the AGC, the DLFC does not require an integrator to mitigate frequency deviations. The only free parameter is the secondary control interval, from which all other parameters are derived. Small-signal stability investigations show that the DLFC exhibits 40 dB falloff of steady-state deviations versus the AGC's 20 dB. Simulations on the non-linear singlearea system confirm the DLFC's response speed and stability advantage.
机译:次级频率控制中使用的自动发电控制(AGC)需要手动调整,以在反应速度和稳定性之间保持平衡。由于逆变器耦合设备和高压直流(HVDC)链接数量的增加,以及由此导致的可用惯量的减少,该任务变得越来越困难。在本文中,我们提出了一种无调谐负载频率控制(LFC)方法,该方法能够应对不断变化的电网动态。利用现代监视和通信手段的可能性,所谓的直接负载频率控制(DLFC)采用了两个同时运行的过程:一个功率匹配级,负责使用直接观察到的面积失衡来进行二次功率调整;以及一个频率控制级,可以系统地调整主要储备的频率设定点。与AGC相反,DLFC不需要积分器来缓解频率偏差。唯一的自由参数是辅助控制间隔,从该辅助控制间隔可以得出所有其他参数。小信号稳定性研究表明,DLFC的稳态偏差衰减为40 dB,而AGC的衰减为20 dB。在非线性单区域系统上的仿真证实了DLFC的响应速度和稳定性优势。

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