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Optimization of High-Voltage Devices for Energy Compression of Nanosecond Pulses

机译:纳秒脉冲能量压缩高压设备的优化

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Designs of compact converters intended for compression of high-voltage pulses with durations of a few nanoseconds and operating in a traveling wave mode were examined. The energy compression unit contained two lines - high-impedance and forming - with a high-pressure gas spark discharger used as a switch. A traditional serial connection of lines was replaced by a parallel connection to increase the energy compression efficiency. The power of the initial pulse (amplitude, 145 kV; half-height duration, 4 ns; and rise time, 1.5 ns) at a load of 45 Q was increased by a factor of 1.8, while the calculated value was 2.5. The amplitude was as great as -195 kV, and the power was 17% higher relative to the circuit with a serial connection of lines. When shaped, the pulse was compressed in time to 0.8 ns. Two modifications of devices converting the initial pulse with an amplitude of -160 kV and a rise time of 0.3 ns into pulses with amplitudes of -210 and -250 kV and durations of 0.80 and 0.45 ns, respectively, were tested. Waveguide components of the converters were developed, with which it was possible to minimize the dimensions of the device in order to avoid excitation of higher harmonics while maintaining the electric strength.
机译:研究了紧凑型转换器的设计,该紧凑型转换器旨在压缩持续时间为几纳秒的高压脉冲并以行波模式工作。能量压缩单元包含两根线-高阻抗和成形-高压气体火花放电器用作开关。传统的线路串行连接被并行连接取代,以提高能量压缩效率。负载为45 Q时,初始脉冲的功率(幅度为145 kV;半高持续时间为4 ns;上升时间为1.5 ns)增加了1.8倍,而计算得出的值为2.5。幅度高达-195 kV,相对于带有串行线路的电路,功率高出17%。整形后,脉冲会及时压缩到0.8 ns。测试了设备的两种修改形式,分别将振幅为-160 kV的初始脉冲和0.3 ns的上升时间转换为振幅为-210 kV和-250 kV的脉冲以及持续时间分别为0.80和0.45 ns的脉冲。开发了转换器的波导组件,可以使器件的尺寸最小化,从而避免在保持电气强度的同时激发更高的谐波。

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