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Dual-mode MMW/IR simulation of beam combiner

机译:光束合成器的双模MMW / IR仿真

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摘要

Along with the development of the optoelectronic interference technology, invisible technology and anti-radiation missile technology, missile guidance with single band or single mode cannot adapt for modern warfare. So the technology of combined guidance is proposed. In the field of combined guidance, MMW/IR combined guidance is more significant. The critical component of the MMW/IR semi-physical simulation will be discussed in this paper, and the selection principle of the substrate and coating materials used for dichroic beam combiner (DBC) is analyzed: MMW/IR beam combiner. By researching the method of the beam combiner of 8-18 GHz MW and 3-5 μm IR, the theory and simulation are discussed in detail in this paper. And the result is given. At the same time, the distortion effect on the MMW signal is analyzed theoretically and the method is presented. Substrate material is selected. The main problems and study factors include: MMW transmission, insertion phase delay, size of substrate material, and coating. At last, the substrate material is determined, and the thickness of the substrate material is optimized.
机译:随着光电干扰技术,无形技术和反辐射导弹技术的发展,单波段或单模式的导弹制导已不能适应现代战争。因此提出了组合制导技术。在联合制导领域,MMW / IR联合制导更为重要。本文将讨论MMW / IR半物理模拟的关键组成部分,并分析了用于二向色合束器(DBC)的基材和涂料的选择原理:MMW / IR合束器。通过研究8-18 GHz MW和3-5μmIR的合束器的方法,本文详细讨论了理论和仿真。并给出结果。同时,从理论上分析了失真对MMW信号的影响,提出了该方法。选择基板材料。主要问题和研究因素包括:MMW传输,插入相位延迟,基材材料的尺寸和涂层。最后,确定衬底材料,并优化衬底材料的厚度。

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