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A Wide-Beam Antenna Based on Missile Telemetry System

机译:基于导弹遥测系统的宽梁天线

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This paper presents an antenna system with multiple patches and multiple layer substrates for missile telemetry application. The antenna is comprised by a driven microstrip line, which is printed on the bottom layer dielectric substrate, and two parasitic patch radiators which are printed on the upper dielectric substrate. The microstrip line is excited by a coaxial probe directly, and the two parasitic patches are excited by the coupling energy. In order to broaden the beam width of the microstrip antenna, two parasitic patch radiators with different sizes are printed on the upper dielectric substrate. The width of the microstrip line is linearly varied to obtain a wide impedance-matching bandwidth This antenna is simulated and optimized by using the full wave electromagnetic simulation technique. The simulated results show that the voltage standing wave ratio (VSWR) is less than 1.9 between 2.15GHz and 2.17GHz. At 2.16GHz, the VSWR of port is 1.29 and the 3dB beam widths of radiation patterns at E planes and H planes were more than 89.2 degrees. The proposed antenna is processed and measured. The measured results show that the proposed antenna achieves the expected radiation performance and validates the effectiveness of the antenna design. The antenna scheme studied in this paper is suitable for missile telemetry system. The research results have laid a technical foundation for its practical engineering application.
机译:本文介绍了具有多个贴片的天线系统和用于导弹遥测应用的多层基板。天线由从动微带线构成,该电动微带线印刷在底层电介质基板上,以及两个寄生贴片散热器,它们印刷在上部电介质基板上。微带线直接通过同轴探针激发,并且通过耦合能量激发两个寄生斑块。为了宽微带天线的光束宽度,在上介电基板上印刷两个具有不同尺寸的寄生贴片辐射器。微带线的宽度线性变化,以获得通过使用全波电磁仿真技术模拟和优化的宽阻抗匹配带宽。模拟结果表明,电压驻波比(VSWR)小于1.9之间的2.15GHz和2.17GHz。在2.16GHz,端口的VSWR是1.29,e平面和H平面上的辐射图案的3DB光束宽度超过89.2度。处理和测量所提出的天线。测量结果表明,所提出的天线实现预期的辐射性能并验证天线设计的有效性。本文研究的天线方案适用于导弹遥测系统。研究结果为其实际工程应用奠定了技术基础。

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