Trends in radar systems drive the need for smarter test systems

A. Samant
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引用次数: 3

Abstract

Active Electronically Scanned Array (AESA) technology will enable next generation radars achieve better jamming resistance capability and low probability of intercept by spreading their emissions over a wide frequency range. These radars systems consist of a large number of transmit/receive modules (TRMs) which are electronically scanned in a tight time-synchronized manner. This requires digital control to move closer to the radio front end on the antennas. Other emerging technologies, such as cognitive radars and MIMO radars, will continue to drive the need for complex timing, synchronization, and high mix RF and digital measurement requirements. To meet these challenges, radar engineers will need a platform based approach which delivers capabilities such as multi-channel phase aligned measurements over wide bandwidths and high-throughput streaming. This paper discusses the fundamentals of AESA radars and trends in radar systems. It analyzes the impact of these trends on test system architecture and explains how the advances in PXI modular instrumentation can meet these challenging requirements.
雷达系统的发展趋势推动了对智能测试系统的需求
有源电子扫描阵列(AESA)技术将使下一代雷达在更宽的频率范围内扩展其发射,从而实现更好的抗干扰能力和低截获概率。这些雷达系统由大量的发射/接收模块(trm)组成,这些模块以严格的时间同步方式进行电子扫描。这需要数字控制移动到更靠近天线上的无线电前端。其他新兴技术,如认知雷达和MIMO雷达,将继续推动对复杂定时、同步、高混合射频和数字测量要求的需求。为了应对这些挑战,雷达工程师将需要一种基于平台的方法,该方法可以在宽带宽和高吞吐量流上提供多通道相位对准测量等功能。本文讨论了有源相控阵雷达的基本原理和雷达系统的发展趋势。它分析了这些趋势对测试系统架构的影响,并解释了PXI模块化仪器的进步如何满足这些具有挑战性的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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