基于5-18GHz发射/接收模块有源平面阵列的波束转向与控制算法

Maheeja Maddegalla, A. B. Bazil Raj, Gurugubelli Syamala Rao
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引用次数: 17

摘要

随着有源电子扫描阵列(AESA)技术在先进多目标处理雷达和电子战(EW)系统设计和发展中的应用,开发了一种新型的均匀间距相控阵电子战系统,其波束可通过自适应软件程序进行控制。关键电子战系统通过使用发射/接收模块或T-R模块的小型化平面阵列进行识别。T-R模块采用了一种新的核心技术来开发AESA技术。平面阵列采用多功能单片微波集成电路(MMIC)实现小型化,并内置用于波束控制的数字电路,这就要求使用现场可编程门阵列(FPGA)实现高质量和不同水平的编程。AESA通常由数千个T-R模块组成,这些模块可以单独将其信号发射到一个频带内,并敏感地接收来自目标物体的回波,使其能够在保持隐身的同时广播传输信号,并大大提高探测和跟踪能力。对于基于T-R模块的平面阵列,必须在5-18 GHz的频率范围内设计波束转向和控制算法的实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Beam Steering and Control Algorithm for 5-18GHz Transmit/Receive Module Based Active Planar Array
With the advent of Active Electronically Scanned Array (AESA) technology in the design and development of advanced multi-target handling Radar and Electronic Warfare (EW) systems, a new EW system with a Phased Array of a uniform spacing was developed, whose beam can be controlled using adaptive software programs. The critical EW system is recognized with miniaturized Planar Arrays using Transmit/Receive modules or T-R modules. The T-R modules use a novel core technology for the development of AESA technology. The planar arrays are miniaturized using multifunctional Monolithic Microwave Integrated Circuits (MMIC) with an inbuilt digital circuitry for beam steering, which requires high quality and different levels of programming using Field Programmable Gate Arrays (FPGA's). The AESA generally consists of thousands of T-R modules which can individually spread their signal emissions out across a band of the frequencies and sensitively receive the echoes from target objects, allowing it to broadcast transmitting signals while remaining stealthy and greatly increasing the detection and tracking abilities. Implementation of beam steering and control algorithms has to be designed in the frequency of 5–18 GHz for T-R module based planar arrays.
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