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Attenuation of front-end reflections in an impulse radar using high-speed switching

机译:使用高速开关衰减冲击雷达中的前端反射

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Pulse reflection between front-end components is a common problem for impulse radar systems. Such reflections arise because radio frequency components are rarely impedance-matched over an ultra-wide bandwidth. Any mismatch between components causes a portion of the impulse to reflect within the radar front-end. If the reflection couples into the transmit antenna, the radar emits an unintended, delayed and distorted replica of the intended radar transmission. These undesired transmissions reflect from the radar environment, produce echoes in the radar image, and generate false alarms in the vicinity of actual targets. The proposed solution for eliminating these echoes, without redesigning the transmit antenna, is to dissipate pulse reflections in a matched load before they are emitted. A high-speed switch directs the desired pulse to the antenna and redirects the undesired reflection from the antenna to a matched load. The Synchronous Impulse Reconstruction (SIRE) radar developed by the Army Research Laboratory (ARL) is the case-study. This paper reviews the current front-end design, provides a recent radar image which displays the aforementioned echoes, and describes the switch-cable-load circuit solution for eliminating the echoes. The consequences of inserting each portion of the new hardware into the radar front-end are explained. Measurements on the front-end with the high-speed switch show an attenuation of the undesired pulse transmissions of more than 18 dB and an attenuation in the desired pulse transmission of less than 3 dB.
机译:前端组件之间的脉冲反射是脉冲雷达系统的常见问题。这种反射出现,因为射频分量很少受到超宽带宽的匹配。部件之间的任何不匹配导致脉冲的一部分以反射雷达前端。如果反射耦合到发射天线中,则雷达发出意外,延迟和失真的预期雷达传输的复制品。这些不期望的传输反映了雷达环境,在雷达图像中产生回波,并在实际目标附近产生误报。在不重新设计发射天线的情况下消除这些回波的所提出的解决方案是在发射之前散发匹配负载中的脉冲反射。高速开关将所需脉冲引导到天线,并将不希望的反射从天线重定向到匹配的负载。陆军研究实验室(ARL)开发的同步脉冲重建(S​​IRE)雷达是案例研究。本文综述了当前的前端设计,提供最近显示上述回波的雷达图像,并描述了用于消除回波的开关电缆负载电路解决方案。解释将新硬件的每个部分插入到雷达前端的后果。高速开关的前端的测量显示出超过18dB的不需要脉冲变速箱的衰减,并且在较小3dB的所需脉冲传输中衰减。

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