一种用于VSCF应用的三相AC/AC高频链路矩阵变换器

H. Cha, P. Enjeti
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引用次数: 98

摘要

本文讨论了一种新的三相高频链路矩阵变换器,并对传统矩阵变换器的拓扑结构进行了改进,增加了一个变速恒频(VSCF)变压器。该方法通过在双桥矩阵变换器的中间级采用高频变压器,实现了大于1的电压传递比、两个电压源之间的电流隔离和更高的功率密度。它具有双向潮流能力,可控制的位移功率因数和低谐波失真在变速源和固定频率公用事业。此外,异步或同步PWM可以根据一次侧转换器的调频比来采用,它保证了直流链路和近对称方波脉冲序列的充分输入电压利用率,无论输入频率如何变化。该方法在风力发电和微型风力发电等分布式发电应用中具有一定的竞争力。仿真结果证明了该系统的优越性。给出了基于DSP控制器的230V、3kVA、400 Hz ~ 60 Hz变频调速系统的实验结果。
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A three-phase AC/AC high-frequency link matrix converter for VSCF applications
In this paper, a new three-phase high-frequency link matrix converter is discussed and the topology of conventional matrix converter is modified with the addition of a transformer for a variable speed constant frequency (VSCF) application. The proposed approach accomplishes voltage transfer ratio more than unity, galvanic isolation between both voltage sources and higher power density by employing a high-frequency transformer into the intermediate stage of the dual bridge matrix converter. It has a bidirectional power flow capability, controllable displacement power factor and lower harmonic distortion at both variable speed source and fixed frequency utility. Further, asynchronous or synchronous PWM can be employed depending on the frequency modulation ratio in the primary side converter and it guarantees full input voltage utilization for DC-link and near symmetric square wave pulse trains applied to high frequency transformer regardless of varying input frequency. The proposed approach is a competitive solution for VSCF distributed generating application such as wind-turbine and micro-turbine application. Simulation results are shown to demonstrate the advantages of the proposed system. Experimental results on a 230V, 3kVA 400 Hz to 60 Hz VSCF system based on DSP controller are presented.
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