用辅助逆变器和带过渡控制的矩阵变换器实现永磁同步电动机直接并网

T. Nagano, J. Itoh
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摘要

本文讨论了一种永磁同步电动机直接并网系统。由于同步电抗与转动惯量之间存在共振,使得永磁同步电动机难以直接接入电网。为了解决这一问题,提出了一种由小容量辅助逆变器和矩阵变换器组成的永磁同步电机直接并网系统。在该系统中,由谐振引起的转矩振动由辅助逆变器和辅助绕组在永磁同步电机中抑制。此外,采用矩阵变换器作为起动器,使永磁同步电机达到电网同步速度。在直接并网方式下,矩阵变换器将PMSM的电压与电网电压相匹配。此外,通过由输出电压相位控制模式和输出电压幅度控制模式组成的过渡控制来抑制激流。在直接并网方式下,矩阵变换器无开关操作。因此,在待机模式下,由于没有开关损耗,转换器损耗非常低。仿真和实验结果验证了该系统的有效性。从结果来看,当PMSM连接到电网时,通过过渡控制和阻尼控制,涌流被抑制到2a(额定电流的18%)。
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Direct grid connection of permanent magnet synchronus motor using auxiliary inverter and matrix converter with transition control
This paper discusses a direct grid connection system for the permanent magnet synchronous motor (PMSM). It is difficult to connect PMSM to the power grid directly due to the resonance between a synchronous reactance and the inertia moment. In order to solve this problem, the direct grid connection system which consists of an auxiliary inverter of small capacity and a matrix converter is proposed for PMSM. In the proposed system, a torque vibration caused by the resonance is suppressed by the auxiliary inverter and auxiliary windings in PMSM. Moreover, the matrix converter is used as a starter which accelerates PMSM up to synchronous speed of a power grid. In the direct grid connection mode, the matrix converter is matches voltage for PMSM with the grid voltage. Besides, the rush current is suppressed by the transition control which consists of an output voltage phase control mode and an output voltage amplitude control mode. In the direct grid connection mode, the matrix converter has no switching operation. Thus, the converter loss is remarkably low in a standby mode due to no switching loss. Additionally, the validity of the proposed system is demonstrated in the simulation and experimental results. From the results, the rush currents is suppressed to 2 A (18% of the rated current) by the transition control and the damping control when the PMSM is connected to the power grid.
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