电除尘器高压电源的优化设计

Xing Wei, Zhan Shen, Yuyuan Ye, Jingwen Leng, Zhike Xu, Long Jin
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引用次数: 2

摘要

本文介绍了一种改进的基于变压器的变换器,适用于高压、大功率直流负载,如静电除尘器。根据颗粒分离模型和分布实验,提出并验证了影响颗粒收集性能的主要因素和对电除尘器供电的要求。通过分析三种典型调制方案下ESP电源的静态特性,以较低的成本降低了IGBT桥和电力变压器的损耗,提高了电源的可靠性。补偿网络提高了设计电源的动态稳定性和响应速度,即使在最恶劣的运行条件下也能保证ESP的收集效率。此外,提出了一种适用于变压器绕组的交流电阻优化方法。与传统设计方法相比,该方法将绕组层数作为设计变量而不是预定参数,并引入铁芯窗尺寸和绝缘要求作为边界条件。实验结果验证了电力变压器和电除尘器设计的合理性,现场运行数据表明,所设计的高压直流电源驱动的除尘器污染物排放符合中国和欧盟最严格的标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization and Design of a High-Voltage Supply for Electrostatic Precipitators
This paper introduces an improved transformer- based converter, suitable for high-voltage, high-power dc loads such as electrostatic precipitators (ESPs). According to the particle separation model and distribution experiments, the main influencing factors of particle collection performance and the requirements for ESP supply are proposed and verified. By analyzing the static characteristics of the ESP supply with three typical modulation schemes, the loss reduction of IGBT bridges and power transformer are achieved with a lower cost, and the supply reliability is improved. Compensation network enhances the dynamic stability and response speed of the designed supply and guarantees the ESP collection efficiency even in the worst operating condition. Moreover, an ac resistance optimization method applicable for transformer windings is proposed. Compared with conventional design methods, the number of layers of the windings is treated as a design variable instead of as a predetermined parameter, and the core window dimension and insulation requirements are introduced as boundary conditions. The experimental results verify that the design of the power transformer and ESP supply is reasonable, and the field operation data indicate that the pollutant emission of the precipitators powered the devised high-voltage dc supply satisfy the strictest standards in China and the European Union.
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