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Investigation of Operational Regimes of a High-Power Pulsed Corona Source with an All-Solid State Pulser

机译:全固态脉冲发生器研究大功率脉冲电晕源的工作方式

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This paper reports the ongoing effort of the development of efficient, compact pulsed corona sources for pollution control applications. The systems comprise all-solid state 1-kW or 4-kW average-power nanosecond pulsers and a plasma reactor. The former is based on a one-stage magnetic compressor generating 1-5 J, 50-100-ns pulses across a reactor having an impedance of approximately 100 Omega, at a PRF of up to 1 kHz. In the plasma reactor, the treatment is conducted in heterogeneous media. Principle of operation of the compressor is described. Equivalent circuits for two consecutive operation stages of the compressor accounting for nonlinear processes in magnetic switches are presented and analyzed. It was found that for the given topology, the optimal ratio of the primary and secondary capacitances is less than the "classical" unity characteristic for most magnetic compression systems. Typical voltage and current waveforms are presented for an optimal reactor design. It was found that the reactor breakdown voltage decreased considerably with the increase of the pulse repetition frequency (PRF). The latter effect in several cases was clearly associated with ozone build-up
机译:本文报告了为污染控制应用开发高效,紧凑的脉冲电晕源的持续努力。该系统包括全固态1 kW或4 kW平均功率纳秒脉冲发生器和等离子体反应器。前者基于一级电磁压缩机,在高达1 kHz的PRF时,在阻抗约为100Ω的电抗器上产生1-5 J,50-100 ns的脉冲。在等离子体反应器中,处理是在异质介质中进行的。描述了压缩机的工作原理。提出并分析了压缩机两个连续运行阶段的等效电路,这些等效电路考虑了磁性开关中的非线性过程。已经发现,对于给定的拓扑,对于大多数磁压缩系统,一次电容和二次电容的最佳比率小于“经典”统一特性。给出了用于最佳电抗器设计的典型电压和电流波形。已经发现,随着脉冲重复频率(PRF)的增加,电抗器的击穿电压大大降低。在某些情况下,后者的影响显然与臭氧积累有关

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