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首页> 外文期刊>Power Electronics, IET >Analysis and design of pulse frequency modulation discontinuous-current-mode dielectric barrier corona discharge with constant applied electrode voltage
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Analysis and design of pulse frequency modulation discontinuous-current-mode dielectric barrier corona discharge with constant applied electrode voltage

机译:恒定施加电极电压的脉冲频率调制不连续电流模式电介质势垒电晕放电的分析与设计

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摘要

In dielectric barrier corona discharge (DBCD) used in material surface treatment, how to obtain a constant peak applied electrode voltage when regulating the power is an important issue as the voltage considerably influences the discharge stability and characteristics. In this study discontinuous current mode (DCM) is used in DBCD for surface treatment. The peak applied electrode voltage is constant when the output power is regulated with pulse frequency modulation, which is simpler than conventional control schemes. Moreover, the power regulation is linear with the operating frequency. Thus, the close-loop design is much easier. Moreover, zero-current-switch turn-on and zero-voltage-zero-current-switch turn-off are achieved with a high frequency and power density. The time-domain analysis is simple in DCM and the expressions for key parameters, in terms of the tank gain and the capacitance ratio, are presented. The conduction loss is confirmed to be relatively low in DCM because of the essential characteristic of DBCD load. A design procedure is presented and the magnetic integration technique is used for specified transformer leakage inductance. The accuracy of the deduced expressions and design methodologies is verified by simulation and experimental results.
机译:在材料表面处理中使用的介电势垒电晕放电(DBCD)中,调节电压时如何获得恒定的峰值施加电极电压是一个重要问题,因为电压会极大地影响放电稳定性和特性。在这项研究中,在DBCD中使用了不连续电流模式(DCM)进行表面处理。当通过脉冲频率调制来调节输出功率时,峰值施加电极电压是恒定的,这比常规控制方案更简单。此外,功率调节与工作频率成线性关系。因此,闭环设计要容易得多。而且,以高频率和高功率密度实现了零电流开关导通和零电压零电流开关关断。在DCM中,时域分析非常简单,并给出了基于储罐增益和电容比的关键参数表达式。由于DBCD负载的基本特性,已确认DCM中的传导损耗相对较低。提出了一种设计程序,并将磁集成技术用于指定的变压器漏感。仿真和实验结果验证了推导表达式和设计方法的准确性。

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