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Analysis of Nosecone Radome Effects of Active Electronically Scanned Array(AESA) Radar Performance of Fighter Aircrafts

机译:战斗机主动电子扫描阵列(AESA)雷达性能的鼻锥天线罩效应分析

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Most of the airborne fire control radars (FCR) are migrating to the modern active electronically steered array (AESA) technology from mechanically scanned array (MSA) technology. The FCR radars are normally installed in the nose of the aircraft that acts as a radome. Apart from structural characteristics, the Electromagnetic characteristics of the radome are essential for the performance of the radar. It leads to the antenna principal beam attenuation, deflection and reflection. The design of radome for AESA radar for airborne applications is a major challenge due to its shape and size requirements. Very few pioneers in the world are developing this class of radomes. Manufacturing of these radome as per the design is another big challenge. Then it comes to the Electromagnetic (EM) characterization of the radome, for radar application this is an elaborate process as they are to be carried out are very high in number. The advantage of desired beam formation in AESA radar brings more complexity as the radiation patterns are different in transmission and reception. This paper presents the issues in design and development of low loss, high performance radomes for airborne AESA radars on fighter aircrafts. Also it focuses on the radome effects on AESA antenna main beam attenuation and side 1lobe level degradation in Transmission and reception. The simulation and analysis of this kind of radomes is presented and discussed.
机译:大多数机载火控雷达(FCR)都已从机械扫描阵列(MSA)技术迁移到现代有源电子转向阵列(AESA)技术。 FCR雷达通常安装在充当天线罩的飞机机头中。除结构特性外,天线罩的电磁特性对于雷达的性能至关重要。这会导致天线主波束衰减,偏转和反射。机载AESA雷达的天线罩的设计由于其形状和尺寸要求而成为一项重大挑战。世界上很少有先驱者正在开发此类天线罩。按照设计制造这些天线罩是另一个巨大的挑战。接下来是天线罩的电磁(EM)表征,对于雷达应用而言,这是一个复杂的过程,因为要进行的数量非常多。 AESA雷达中所需波束形成的优点带来了更大的复杂性,因为辐射模式在发射和接收方面有所不同。本文介绍了战斗机上机载AESA雷达的低损耗,高性能天线罩的设计和开发中的问题。此外,它还重点讨论了天线罩对AESA天线主波束衰减和侧向的影响。 1 发射和接收中的波瓣电平下降。介绍并讨论了这种天线罩的仿真和分析。

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