首页> 外文会议>IEEE Antennas and Propagation Society International Symposium, 2009. APSURSI '09 >Field programmable gate array acceleration of bio-inspired optimization techniques for phased array design
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Field programmable gate array acceleration of bio-inspired optimization techniques for phased array design

机译:用于相控阵设计的生物启发性优化技术的现场可编程门阵列加速

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This paper investigates the performance improvement in computational time achieved by the use of field programmable gate arrays (FPGAs) in electromagnetic simulations. The amplitudes of a linear phased array antenna are optimized to reduce the interference in multi-beam satellite communication systems by implementing the optimization algorithm and the antenna pattern calculations on a single FPGA. The ant colony optimization algorithm, which is a bio-inspired heuristic search method based on the survival skills of ants, is applied to a phased array antenna such that nulls can be placed in the array factor to reduce interference from beams operating at the same frequency band. Due to the inherently parallel nature of the algorithm, speed improvements in the orders of ten thousands compared to conventional programming using Matlab have been demonstrated by being able to pipeline and parallelize the calculations on the FPGA.
机译:本文研究了在电磁仿真中使用现场可编程门阵列(FPGA)所实现的计算时间性能的提高。通过在单个FPGA上实现优化算法和天线方向图计算,可以优化线性相控阵天线的幅度,以减少多波束卫星通信系统中的干扰。蚁群优化算法是一种基于蚂蚁生存技能的生物启发式启发式搜索方法,被应用于相控阵天线,以便可以在阵列因子中放置零点,以减少来自以相​​同频率工作的波束的干扰带。由于该算法固有的并行性,通过在FPGA上对计算进行流水线化和并行化,已证明与使用Matlab进行常规编程相比,速度提高了约10,000倍。

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