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Optimal design of resonant converter for Electrostatic Precipitators

机译:电除尘器谐振变换器的优化设计

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This work presents a design optimization procedure for Series Parallel Resonant Converters (LCC) employed in Electrostatic Precipitator (ESP) power supplies. The system parameters, such as resonant tank elements, are selected in order to reduce semiconductor losses when a typical ESP energization operation range is considered. Here, the sum of the power losses of the switches are predicted for a set of parameters by mathematical models of the LCC resonant converter, and also by loss characteristics of suitable commercially available IGBTs obtained from experimental analysis and datasheet values. The analysis comprises two different control strategies: the conventional Variable Frequency (VF) control and the Dual Control (DC). Finally, the circuit operation and design are verified with a 60kW charging capability LCC resonant converter test set-up. Both control strategies are analyzed by comparing semiconductor's losses for five commercial modules.
机译:该工作介绍了静电除尘器(ESP)电源中采用的串联并联谐振转换器(LCC)的设计优化过程。选择诸如谐振罐元件的系统参数,以便在考虑典型的ESP通电操作范围时减少半导体损耗。这里,通过LCC谐振转换器的数学模型预测交换机的功率损耗的总和,以及通过从实验分析和数据表值获得的合适商业上可用IGBT的损耗特性。该分析包括两个不同的控制策略:传统的可变频率(VF)控制和双控制(DC)。最后,通过60kW充电能力LCC谐振转换器测试设置验证了电路操作和设计。通过比较半导体的五个商业模块的损失来分析两个控制策略。

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