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Virtual capacitor based DBVC and active damping method for cascaded power converters stabilization control

机译:基于虚拟电容器的DBVC和有源阻尼的串级功率变换器稳定控制方法

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It is known that the constant power load (CPL) property of load converter can degrade the stability of DC bus voltage of cascaded power converters system. An idea by combining virtual capacitor (VC) based active damping control (ADC) method with DC bus voltage conditioner (DBVC) technique for load converter is proposed in this paper. Through implementing common virtual capacitance volume requirement, the DC bus voltage can be stabilized with reduced DC bus capacitor, the impact from DC bus voltage fluctuation to the load converter output voltage can be reduced compared with the case by using ADC method only, and because the VC method shares part of the compensation, the power volume of DBVC can be decreased accordingly, this might result in higher power density and lower power loss potentially compared to the case with DBVC only. Simulation results are provided to demonstrate the validation of the proposed method.
机译:众所周知,负载转换器的恒定功率负载(CPL)特性会降低级联功率转换器系统的直流母线电压的稳定性。提出了一种基于虚拟电容器(VC)的主动阻尼控制(ADC)方法与负载转换器的直流母线电压调节器(DBVC)技术相结合的思想。与仅使用ADC方法的情况相比,通过实现通用的虚拟电容量要求,可以通过减少DC总线电容器来稳定DC总线电压,并且可以减少DC总线电压波动对负载转换器输出电压的影响。 VC方法承担部分补偿,与仅使用DBVC的情况相比,可以相应地减小DBVC的功率量,这有可能导致更高的功率密度和更低的功率损耗。仿真结果表明了该方法的有效性。

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