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A synthesizer for gigawatt class high power microwaves

机译:千兆瓦级大功率微波的合成器

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The high power microwave (HPM) synthesis method is presented in this paper for gigawatt level. The gigawatt level HPM could be synthesized from two separate input wave-guides according to the coupled-wave and orthogonal polarization theory. The synthesizer is used by two back to back circular wave-guides. The main channel is the circular wave-guide connected to the output port, which transmits horizontal polarization TE0 11 mode. The operating bandwidth is only limited by the barrier wave-length λ c of circular wave-guide. The sub-channel transmits vertical polarization TE 0 11 mode and the operating bandwidth is up to several hundred MHz. The energy of sub-channel could be coupled into main channel through continuous long-slit coupling structure. The synthesizer can be analyzed using numerical simulation method, which focuses on the power capability. The simulation results indicate that the transmission efficiency of the main channel is above 99%, the coupling efficiency of the sub-channel is above 96%, which also validates the reasonability of synthesizer design. At the same time, the prototype of synthesizer is designed and the HPM experiment system is established. The transmitting and coupling efficiency are both greater than 95% in cold test condition and they are also greater than 90% in gigawatt class test condition, the power capability of the synthesizer reaches about 1.2GW. The test results validate the feasibility of synthesizer for gigawatt class HPM.
机译:本文提出了千兆瓦级的高功率微波合成方法。吉瓦级HPM可以根据耦合波和正交极化理论由两个单独的输入波导合成。该合成器由两个背对背的圆形波导使用。主通道是连接到输出端口的圆形波导,可传输水平极化TE0 11模式。工作带宽仅受圆形波导的势垒波长λc限制。子信道传输垂直极化TE 0 11模式,工作带宽高达几百MHz。子通道的能量可以通过连续的长缝耦合结构耦合到主通道。可以使用数值模拟方法对合成器进行分析,该方法着重于功率能力。仿真结果表明,主通道的传输效率在99%以上,子通道的耦合效率在96%以上,这也证明了合成器设计的合理性。同时,设计了合成器的原型,建立了HPM实验系统。在冷测试条件下的传输和耦合效率均大于95%,在千兆瓦级测试条件下也均大于90%,合成器的功率容量约为1.2GW。测试结果证明了该合成器可用于千兆瓦级HPM。

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