Virtual inertia grid control with LED lamp driver

E. Waffenschmidt
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引用次数: 10

Abstract

Soon, rotating inertia of generators use for grid control must be replaced due to the growth of distributed renewable energies. Here, we propose to let also electronic loads contribute to future virtual inertia. It is suggested to use DC link capacitors of power supplies for this task. This requires 5 W, 50 J and a capacitor size of about 200 cm3 per installed kW, corresponding to the size of single phase DC link capacitors. It is shown that the additional power ripple (and thus current ripple) is in the order of 0.1% and the voltage ripple of the intermediate voltage will typically remain between +/-3.6%. The related control can be easily extended by adding a voltage signal to the control voltage, which is proportional to the frequency deviation. Then, the existing power factor correction controller inherently sets the required additional power fluctuation required for the virtual inertia function.
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带LED灯驱动器的虚拟惯性网格控制
不久,由于分布式可再生能源的发展,用于电网控制的发电机的旋转惯性必须被取代。在这里,我们建议让电子负载也有助于未来的虚拟惯性。建议使用电源直流链路电容。这需要5w, 50j,每安装kW的电容器尺寸约为200 cm3,对应于单相直流链路电容器的尺寸。结果表明,额外的功率纹波(以及电流纹波)约为0.1%,中间电压的电压纹波通常保持在+/-3.6%之间。通过在控制电压上添加与频率偏差成正比的电压信号,可以很容易地扩展相关控制。然后,现有的功率因数校正控制器固有地设定了虚拟惯性函数所需的额外功率波动。
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