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A control strategy for soft open points based on adaptive voltage droop outer-loop control and sliding mode inner-loop control with feedback linearization

机译:基于自适应电压下垂外环控制和具有反馈线性化的软开放点的控制策略

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摘要

A soft open point (SOP) is a flexible power electronic device that can enable accurate active and reactive power flow control to balance the power flow in a distribution network. Due to the inclusion of renewable energy resources with intermittent characteristics in distribution networks, frequent power adjustments and parameter perturbations present great challenges for the control systems of SOPs. Thus, to fully use the regulatory capabilities of the converters in SOP systems and avoid reaching the voltage limits, an adaptive voltage droop control scheme for the outer control loop that considers both a power sharing factor and a DC voltage deviation factor is proposed. Subsequently, a sliding mode control strategy with feedback linearization of the modular multilevel converters (MMCs) is introduced to the inner control loop, thereby improving the robustness of the system and reducing the difficulty of parameter tuning relative to proportional-integral (PI) control. In addition, this paper investigates the zero-dynamics stability of the proposed controller. By combining the two parts of the control system, a control strategy for SOPs based on adaptive voltage droop outer-loop control and sliding mode inner-loop control with feedback linearization is proposed. Case studies of a three-port SOP in a distribution network are conducted to verify the effectiveness and efficiency of the proposed controller.
机译:软开口点(SOP)是一种柔性电力电子设备,可以精确的主动和无功功率流控制来平衡分配网络中的功率流。由于将可再生能源资源纳入分销网络中的间歇特征,频繁的功率调整和参数扰动对SOP的控制系统产生了巨大的挑战。因此,为了充分利用SOP系统中的转换器的调节能力并避免达到电压限制,提出了一种用于外部控制回路的自适应电压下垂控制方案,其考虑电力共享因子和DC电压偏差因子。随后,将具有模块化多级转换器(MMC)的反馈线性化的滑模控制策略被引入内部控制回路,从而提高了系统的鲁棒性,并降低了相对于比例积分(PI)控制的参数调谐的难度。此外,本文调查了所提出的控制器的零动力学稳定性。通过组合控制系统的两个部分,提出了一种基于自适应电压下垂外环控制和具有反馈线性化的滑模内环控制的SOP的控制策略。进行了分配网络中三端口SOP的案例研究以验证所提出的控制器的有效性和效率。

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