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Impedance Modeling and Stability Analysis of Dual-Active Bridge Converter Interfacing DC Grids

机译:双有源桥式变换器与直流电网对接的阻抗建模和稳定性分析

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As a key enabling component, high-power three-phase dual-active bridge (DAB3) converters are widely used to interface sources and loads to dc grids. However, with different control objectives and converter design parameters, the interconnected DAB3 converters could induce interactions that degrade the system stability. To address this issue, this paper presents a comprehensive impedance-based stability analysis method for DAB3 converter interfacing dc grids. The small-signal model of the DAB3 converter is firstly developed whereby the digital controllers for the voltage-controlled and current-controlled DAB3 converters are designed. Thereby, the output impedances of DAB3 converters are calculated, and a sensitivity analysis is performed to understand the influences of the controller bandwidth and the dc filter capacitance. With the obtained impedances, three different impedance-based stability criteria are investigated to analyze a dc system with two interconnected DAB3 converters. The unified stability criterion can determine the system stability accurately, while the gain margin and phase margin criterion can not only identify the low-frequency resonance intuitively, but also assist the design of control parameters and the filter capacitance. Time-domain simulation results are presented to validate the effectiveness and accuracy of the modeling and analysis method.
机译:作为关键的使能组件,大功率三相双有源桥(DAB3)转换器广泛用于将电源和负载连接到直流电网。但是,由于控制目标和转换器设计参数不同,互连的DAB3转换器可能会引起相互作用,从而降低系统稳定性。为了解决这个问题,本文提出了一种用于DAB3转换器接口直流电网的基于阻抗的综合稳定性分析方法。首先开发了DAB3转换器的小信号模型,从而设计了用于电压控制和电流控制的DAB3转换器的数字控制器。从而,计算DAB3转换器的输出阻抗,并进行灵敏度分析以了解控制器带宽和直流滤波器电容的影响。利用获得的阻抗,研究了三种不同的基于阻抗的稳定性标准,以分析具有两个互连的DAB3转换器的直流系统。统一的稳定性准则可以准确地确定系统的稳定性,而增益裕度和相位裕度准则不仅可以直观地识别低频谐振,还可以帮助设计控制参数和滤波器电容。提出了时域仿真结果,以验证建模和分析方法的有效性和准确性。

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