使用可重构MONTIUM TP的自适应波束形成

M. V. D. Burgwal, K. Rovers, Koen C. H. Blom, A. Kokkeler, G. Smit
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引用次数: 6

摘要

直到十年前,相控阵波束形成的概念主要是通过机械或模拟解决方案实现的。今天,数字硬件已经变得足够强大,可以执行实时数字波束形成所需的大量操作。随着越来越多的应用使用波束形成来提高通信信道在空间和频率上的利用率,提出了许多专用的数字架构来处理波束形成。通过使用可重新配置的体系结构,可以为具有不同处理需求的不同应用程序重用相同的硬件平台。在本文中,我们提出了一种可重构的基于多处理器片上系统的相控阵处理解决方案,该解决方案支持先进的跟踪机制,可以通过移动接收器连续接收信号。提出了一种用于DVB-S卫星接收的自适应波束形成器,该波束形成器采用恒模算法对卫星进行跟踪。具有64个天线和3个波束的接收器的处理被映射到一个名为Montium TP的可重构处理器上。这种接收器的总体实现需要单个Montium TP上大约570个时钟周期,但也可以在多个Montium TP上进行分区,以支持更大的相控阵。
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Adaptive Beamforming Using the Reconfigurable MONTIUM TP
Until a decade ago, the concept of phased array beam forming was mainly implemented with mechanical or analog solutions. Today, digital hardware has become powerful enough to perform the massive number of operations required for real-time digital beam forming. While more and more applications are using beam forming to improve the communication channel utilization both in space and frequency, many dedicated digital architectures are proposed for the processing. By using a reconfigurable architecture, the same hardware platform can be reused for different applications with different processing needs. In this paper, we present a reconfigurable Multi-processor System-on-Chip based solution for phased array processing that supports advanced tracking mechanisms to continuously receive signals with a mobile receiver. An adaptive beam former for DVB-S satellite reception is presented, that uses a Constant Modulus Algorithm to track satellites. The processing of a receiver with 64 antennas and 3 beams is mapped on a reconfigurable processor named Montium TP. The total implementation of such a receiver requires about 570 clock cycles on a single Montium TP, but can also be partitioned over multiple Montium TPs to support larger phased arrays.
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