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DC-Link Voltage Coordinated-Proportional Control for Cascaded Converter With Zero Steady-State Error and Reduced System Type

机译:具有零稳态误差和减小系统类型的级联转换器的直流母线电压协调比例控制

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摘要

Cascaded converter is formed by connecting two subconverters together, sharing a common intermediate dc-link voltage. Regulation of this dc-link voltage is frequently realized with a proportional-integral (PI) controller, whose high gain at dc helps to force a zero steady-state tracking error. Such precise tracking is, however, at the expense of increasing the system type, caused by the extra pole at the origin introduced by the PI controller. The overall system may, hence, be tougher to control. To reduce the system type while preserving precise dc-link voltage tracking, this paper proposes a coordinated control scheme for the cascaded converter, which uses only a proportional dc-link voltage regulator. The resulting converter is thus dynamically faster, and when compared with the conventional PI-controlled converter, it is less affected by impedance interaction between its two subconverters. The proposed scheme can be used with either unidirectional or bidirectional power flow, and has been verified by simulation and experimental results presented in this paper.
机译:级联转换器是通过将两个子转换器连接在一起而形成的,它们共享一个公共的中间直流链路电压。直流链路电压的调节通常通过比例积分(PI)控制器来实现,该控制器的直流增益很高,有助于使稳态跟踪误差为零。但是,这种精确的跟踪是以增加系统类型为代价的,这是由PI控制器引入的原点处的额外极点引起的。因此,整个系统可能难以控制。为了减少系统类型同时保留精确的直流链路电压跟踪,本文提出了一种级联转换器的协调控制方案,该方案仅使用比例直流链路稳压器。因此,所得的转换器动态地更快,并且与常规的PI控制转换器相比,受其两个子转换器之间的阻抗相互作用的影响较小。该方案可用于单向或双向潮流,并已通过仿真和本文给出的实验结果进行了验证。

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