Nonlinear adaptive control design for the VSC-HVDC light transmission system

Y. Sang, B. Yang, L. Jiang
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引用次数: 4

Abstract

This paper proposes a nonlinear adaptive control (NAC) scheme for the voltage source converter based high voltage direct current (VSC-HVDC) light transmission system to handle various system uncertainties. The combinatorial effect of system nonlinearity, parameter uncertainties and external disturbances is aggregated into a perturbation term, which is estimated online by a perturbation observer (PO). The NAC is based on the nonlinearly functional estimation which does not require an accurate system model and only one state measurement is needed, thus it can be easily implemented in practice. The proposed approach is then applied in a standard VSC-HVDC light transmission system to maintain the DC voltage and regulate the active and reactive power. Case study has been carried out to verify its effectiveness under various operating conditions.
VSC-HVDC输电系统非线性自适应控制设计
针对基于电压源变换器的高压直流输电系统的各种不确定性,提出了一种非线性自适应控制(NAC)方案。系统非线性、参数不确定性和外部干扰的组合效应聚合成一个扰动项,由扰动观测器在线估计。NAC基于非线性泛函估计,不需要精确的系统模型,只需要一次状态测量,因此易于在实际中实现。然后将该方法应用于标准的直流直流输电系统中,以保持直流电压并调节有功和无功功率。通过实例研究,验证了该方法在不同工况下的有效性。
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