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Efficiency improvement of converter for switched reluctance motor drives by mixed parallel operation of IGBT and MOSFET

机译:通过IGBT和MOSFET的混合并联操作来提高开关磁阻电机驱动器的转换器的效率

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This paper presents a method to improve the efficiency of a standard asymmetric half-bridge converter for 3-phase, 12/8 switched reluctance motor (SRM) drives at low speed operation. At that speed range, the converter operates mainly in current chopping modes. The proposed method employs mixed parallel operation of IGBT/MOSFET pairs. The technique is aiming for minimizing the turn-off switching losses of IGBT which are the main chopping switches. MOSFET are placed in parallel with each IGBT in order to momentarily conduct the phase current during IGBT's turn-off intervals. While the MOSFET is on, the voltage across the IGBT is close to zero resulting in substantially decreased turn-off loss. Those fast switching MOSFET later instantaneously turn-off the current with almost lossless. The algorithm is verified by computer simulation and experimental results. The results have satisfactorily shown validity of the proposed concept. Furthermore, performance of the proposed strategy is superior to those of the typical hard switching technique and the conventional soft switching scheme using optimum sized snubber capacitors.
机译:本文提出了一种提高低速运行的三相12/8开关磁阻电机(SRM)驱动器的标准非对称半桥转换器效率的方法。在该速度范围内,转换器主要工作在电流斩波模式下。所提出的方法采用了IGBT / MOSFET对的混合并联运行。该技术旨在使作为主要斩波开关的IGBT的关断开关损耗最小化。 MOSFET与每个IGBT并联放置,以便在IGBT的关断间隔内瞬时传导相电流。当MOSFET导通时,IGBT两端的电压接近于零,从而大大降低了关断损耗。那些快速开关MOSFET随后立即以几乎无损耗的方式关断电流。通过计算机仿真和实验结果验证了该算法。结果令人满意地显示了所提出概念的有效性。此外,所提出策略的性能优于使用最佳尺寸的缓冲电容器的典型硬开关技术和常规软开关方案的性能。

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