首页> 外文会议>2014 IEEE MTT-S International Microwave and RF Conference, Collocated with Intemational Symposium on Microwaves >A simple laboratory setup to create 2-D angle of arrival scenario keeping transmitter fixed and receiver moving on 3-axes servo
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A simple laboratory setup to create 2-D angle of arrival scenario keeping transmitter fixed and receiver moving on 3-axes servo

机译:一个简单的实验室设置即可创建2D到达角场景,使发射器保持固定,接收器在3轴伺服器上移动

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摘要

The 2-Dimensional Angle-of-Arrival (2D-AoA) i.e. azimuth and elevation angle are the parameters of prime importance in present days' advanced Direction Finding (DF) receiver in Electronic Warfare. During design and development of 2D-DF receiver, there lies lot of issues. It is preferable to resolve those by carrying out Test & Evaluation in laboratory premise prior to field-trials. Usually, in a space-constrained laboratory setup, the generation of radar signal with 2D-AoA is not as simple as in case of 1D-AoA. Here, in this paper, a simple and cost-effective laboratory setup is presented to create 2D-AoA scenario by keeping transmitter fixed and receiver moving on 3-axes servo. The proposed solution has been derived mathematically and verified experimentally in the laboratory with exhaustive test cases.
机译:二维到达角(2D-AoA),即方位角和仰角是当今电子战中先进的测向(DF)接收器中最重要的参数。在2D-DF接收机的设计和开发过程中,存在很多问题。最好在实地试验之前通过在实验室进行测试和评估来解决这些问题。通常,在空间受限的实验室中,使用2D-AoA生成雷达信号并不像使用1D-AoA那样简单。在本文中,本文介绍了一种简单且具有成本效益的实验室设置,通过保持发射器固定和接收器在3轴伺服系统上移动来创建2D-AoA方案。所提出的解决方案已经通过数学方法导出,并在实验室中用详尽的测试案例进行了实验验证。

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