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A nonlinear disturbance observer based DC bus voltage control for a hybrid AC/DC microgrid

机译:基于非线性干扰观测器的交流/直流微电网混合直流母线电压控制

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DC bus voltage control is an important task in the control of a dc microgrid or hybrid ac/dc microgrid system. To improve the dc bus voltage control dynamics, traditional approaches are mainly based on feeding forward the load or source power. However, in the microgrid system with distributed dc sources and loads, the traditional feedforward based methods need remote measurement or communications. In this paper, a nonlinear disturbance observer (NDO) based dc bus voltage control is proposed, which does not need the remote measurement or communication with a true “plug-and-play” feature. Based on this observer, a novel dc bus voltage control scheme with pulse-width-modulation (PWM) dead-time compensation is developed. The proposed method can suppress the transient fluctuations of dc bus voltage, and improve the power quality in such a hybrid microgrid system. The performance of the presented control strategy has been successfully verified in a 30 kVA dc subgrid including battery energy storage system, photovoltaic power generation system and a dc load.
机译:直流母线电压控制是控制直流微电网或混合交流/直流微电网系统的重要任务。为了改善直流母线电压控制的动态性,传统方法主要基于前馈负载或源功率。但是,在具有分布式直流电源和负载的微电网系统中,传统的基于前馈的方法需要远程测量或通信。在本文中,提出了一种基于非线性干扰观测器(NDO)的直流总线电压控制,该控制不需要远程测量或具有真正“即插即用”功能的通信。基于该观察者,开发了一种新型的具有脉宽调制(PWM)死区时间补偿的直流总线电压控制方案。所提出的方法可以抑制直流母线电压的瞬时波动,并改善这种混合微电网系统的电能质量。所提出的控制策略的性能已在包括电池储能系统,光伏发电系统和直流负载的30 kVA直流子电网中成功验证。

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