FPGA based Digital Beam Forming for Radars

T. Roy, D. Meena, L. Prakasam
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引用次数: 9

Abstract

Array beam forming techniques exist that can yield multiple, simultaneously available beams. The beams can be made to have high gain and low sidelobe levels or controlled beam width. Beam forming techniques dynamically adjust the array pattern to optimize some characteristic of the received signal. Antenna arrays using beam-forming techniques can reject interfering signals having a direction of arrival different from that of desired signal. The principal reason of interest is their ability to automatically steer nulls into undesired sources of interferences, thereby reducing output noise and enhancing the detection of desired signal. Digital beam forming is thus a powerful technique for boosting the antenna performance. Our work emphasizes on the FPGA (Field Programmable Gate Array) based digital technique adopted for the implementation of fixed beam forming. This paper mainly focuses on the implementation solution provided by utilizing the efficient FPGA resources so as to meet the timings in the crucial application of beam forming. Extensive use of intellectual properties of Xilinx has been employed keeping in mind the time efficiency it provides. Beam forming and beam scanning are generally accomplished by phasing the feed to each element of an array so that signals received from all the elements will be in phase in particular direction. This is the direction of the maximum beam.The FPGA based approach facilitates the design with high degree of flexibility, reliability and upgradeability. The implementation also overcomes the main difficulty of compensating minute propagation delays often encountered while using beam forming for radar applications. The paper discusses all the critical implementation issues that are taken care of in the development of the efficient FPGA structure for implementation.
基于FPGA的雷达数字波束形成
阵列波束形成技术可以产生多个同时可用的波束。可以使光束具有高增益和低旁瓣电平或控制光束宽度。波束形成技术通过动态调整阵列方向图来优化接收信号的某些特性。采用波束形成技术的天线阵列可以拒绝与期望信号到达方向不同的干扰信号。感兴趣的主要原因是它们能够自动将零值转向不需要的干扰源,从而减少输出噪声并增强对所需信号的检测。因此,数字波束形成是提高天线性能的一种有效技术。我们的工作重点是采用基于FPGA(现场可编程门阵列)的数字技术来实现固定波束形成。本文主要研究了在波束形成的关键应用中,利用高效的FPGA资源,满足时序要求所提供的实现方案。广泛使用赛灵思的知识产权,同时考虑到它提供的时间效率。波束形成和波束扫描通常是通过对阵列的每个单元进行相位馈电来完成的,这样从所有单元接收到的信号将在特定方向上处于相位。这是最大光束的方向。基于FPGA的方法使设计具有高度的灵活性、可靠性和可升级性。该实现还克服了在雷达应用中使用波束形成时经常遇到的补偿微小传播延迟的主要困难。本文讨论了在开发高效的FPGA实现结构时需要注意的所有关键实现问题。
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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