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Dynamic Compensation Control Strategy of DC Microgrid Bus Voltage Based on Disturbance Observer

机译:基于干扰观测器的直流微电网母线电压动态补偿控制策略

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To solve the problem of bus voltage dynamic response under the droop control method in DC microgrid, a parallel dynamic compensation structure of converter based on disturbance observer was proposed. Firstly, the problems existing under the traditional DC droop control are analyzed. The state space model is established for the parallel models of multiple converters in the DC microgrid. The current changes caused by the common load switching in the parallel state are analyzed. The synchronous measurement method (PMU) is applied to the disturbance current. The measurement distribution is carried out. According to the left and right mutual decomposition theory and the Youla parameterized stability controller theory, the parallel dynamic compensation structure of the converter based on the disturbance observer is obtained. The model matching algorithm is used to obtain the Youla parameterization matrix Q(s). The current loop compensation structure M(s) is designed to counteract the effect of the compensation signal on the current loop. Simulation results show that the structure can accelerate the dynamic response speed of DC bus voltage when the common load is switched. At the same time, the structure can suppress the double frequency disturbance of DC bus voltage caused by an unbalanced load and keep the bus voltage stable.
机译:针对直流微电网下垂控制方法下母线电压动态响应的问题,提出了一种基于扰动观测器的变流器并联动态补偿结构。首先,分析了传统直流下垂控制下存在的问题。为直流微电网中的多个转换器的并行模型建立了状态空间模型。分析了并联状态下公共负载切换引起的电流变化。同步测量方法(PMU)应用于干扰电流。进行测量分配。根据左右互分解理论和Youla参数化稳定性控制器理论,得到了基于扰动观测器的变流器并联动态补偿结构。模型匹配算法用于获得Youla参数化矩阵Q(s)。电流环路补偿结构M(s)设计用于抵消补偿信号对电流环路的影响。仿真结果表明,该结构可以加快切换公共负载时直流母线电压的动态响应速度。同时,该结构可以抑制由不平衡负载引起的直流母线电压的双频干扰,并保持母线电压稳定。

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