首页> 外文期刊>IEE Proceedings. Part B >Three-phase soft-switching voltage source converters for motor drives. II. Fundamental limitations and critical assessment
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Three-phase soft-switching voltage source converters for motor drives. II. Fundamental limitations and critical assessment

机译:电机驱动器的三相软开关电压源转换器。二。基本限制和严格评估

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Fundamental limits to soft-switching power converter performance are established by examining the detailed physical behaviour of bipolar power semiconductors. It is found that the soft-switched resonant transition time must be much longer than the semiconductor high-level carrier lifetime for effective reduction of switching losses. Constraints on PWM range and PWM resolution as a function of switching frequency are established for a range of soft-switching power converter topologies and the standard hard-switched inverter. For quasi-resonant DC-link topologies, the degradation in PWM resolution causes low-frequency harmonics to be introduced into the output spectrum. Topology-specific features are used to form a comparative assessment of the principal classes of soft-switched power converters. Resonant DC-link topologies are shown to produce the poorest output performance, although they offer the cheapest solution. Auxiliary resonant pole inverters can achieve levels of performance approaching those of the hard-switched topology, while retaining the benefits of soft-switching. It is concluded that the auxiliary commutated pole inverter offers the greatest potential for exploitation despite its relatively high capital cost. Modularisation of the active devices and optimisation of semiconductor design are identified as key objectives in the realisation of an economically viable system.
机译:通过检查双极型功率半导体的详细物理行为,可以确定软开关功率转换器性能的基本极限。已经发现,为了有效地减少开关损耗,软开关谐振转变时间必须比半导体高阶载流子寿命长得多。针对一系列软开关功率转换器拓扑和标准硬开关逆变器,建立了与开关频率有关的PWM范围和PWM分辨率约束。对于准谐振直流母线拓扑,PWM分辨率的下降会导致将低频谐波引入输出频谱。拓扑特定的功能用于对软开关电源转换器的主要类别进行比较评估。尽管谐振直流链路拓扑结构提供了最便宜的解决方案,但它们显示出的输出性能最差。辅助谐振极点逆变器可以实现接近硬开关拓扑的性能水平,同时保留了软开关的优势。结论是,尽管辅助换向极逆变器具有相对较高的投资成本,但仍具有最大的开发潜力。有源器件的模块化和半导体设计的优化被确定为实现经济可行的系统的关键目标。

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