直流微电网大信号稳定的综合控制方案

Pengfeng Lin, Chuanlin Zhang, Peng Wang, Jianfang Xiao, Chi Jin
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引用次数: 0

摘要

直流微电网以其高灵活性和高效率得到了广泛的关注。在直流系统中,电力电子负载和电机驱动通常被建模为恒定负载(cpl),这些负载呈现负增量阻抗,可能导致稳定性问题。为了减轻cpl的潜在不稳定性,本文提出了一种新的综合控制方案。该方案由一个广义比例积分观测器(GPIO)和一个后退控制器(BC)组成。GPIO能够准确、快速地估计源转换器的输出功率,并将估计的量通过BC前馈解耦。采用所提出的综合方法,可以有效地实现直流永磁系统的大信号稳定。因此,cpl的不稳定效应可以得到充分补偿,从而保证MG的稳定运行。仿真和实验验证了该方案的有效性和可行性。
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A Synthesized Control Scheme for Large Signal Stabilization of DC Microgrids
DC microgrids (MGs) have obtained extensive attentions due to their high flexibilities and efficiencies. In DC systems, power electronic loads and motor drives are normally modeled as constant loads (CPLs) which present negative incremental impedances and may cause stability problem. To mitigate the potential instability of CPLs, a novel synthesized control scheme is proposed in this paper. The scheme consists of a generalized proportional-integral observer (GPIO) and a backstepping controller (BC). The GPIO enables to exactly and rapidly estimate the output power of the source converters, and the estimated quantity will be decoupled by the BC in a feedforward way. By using the proposed synthesized method, large signal stabilization of the DC MG can be effectively realized. Destabilizing effects of CPLs could hence be fully compensated, thus safeguarding the stable MG operations. Simulations and experiments consolidate the effectiveness and feasibility of the proposed scheme.
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