基于状态反馈线性化方法的普通直流总线牵引电机仿真器单回路控制

Arvind H Kadam, S. Williamson
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引用次数: 1

摘要

目前,LCL(电感-电容-电感)滤波器是电流控制电力电子变换器系统中不可缺少的组成部分。LCL滤波器虽然阶数较高,但由于其具有较高的谐波抑制能力,被广泛应用于背对背变流器系统或并网变流器系统中。一般采用LCL滤波器时,控制系统采用双闭环控制,外环控制直流电压,内环控制交流电流。然而,对于一些特殊的应用,如常见的直流总线配置的电机仿真器(ME)系统,直流总线电压不需要控制。此外,在交流电机仿真中,LCL滤波器的存在引入了磁链和转矩分量的交叉耦合。一般采用双闭环控制来解耦转矩和磁链分量,但控制器的设计是一个较为复杂的过程。因此,本文提出了一种基于状态反馈线性化方法的基于LCL滤波器的普通直流母线配置ME系统的单回路控制。推导了直、交轴解耦方程。通过对2.0 kW永磁同步电机的仿真,验证了系统在单回路控制下的稳定性和闭环运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single Loop Control of a Common DC-Bus-Configured Traction Motor Emulator Using State Feedback Linearization Method
Nowadays, the LCL (inductor-capacitor-inductor) filter is an integral part of every power electronic converter system operating on current control. Though higher order, the LCL filter due to its high harmonic suppression capability are widely adopted in back-to-back converter systems or grid connected converter systems. Normally, with LCL filter, the control system follows double closed loop with outer loop controlling DC voltage and inner loop controlling AC current. However, for some special applications like common DC-bus-configured motor emulator (ME) system, the DC bus voltage is not required to be controlled. In addition, the presence of LCL filter introduces cross coupling of flux and torque component in case of AC motor emulation. The double closed loop control is generally adopted to decouple torque and flux components, however the controller design is more complex process. Therefore, this paper presents a single loop control of a common DC-bus-configured ME system with LCL filter based on state feedback linearization method. The decoupling equations in direct and quadrature axis are derived here. The simulation results presented for a 2.0 kW PMSM motor validate the stability as well as closed loop operation of the system with single loop control.
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