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首页> 外文期刊>International journal of electronics >Comparison of practical methods for an efficient FPGA implementation of STAP
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Comparison of practical methods for an efficient FPGA implementation of STAP

机译:实用方法对液体有效FPGA实施的实用方法

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摘要

In this paper, practical methods for an efficient field programmable gate array (FPGA) implementation of space-time adaptive processing (STAP) are investigated and compared. The most important part for calculating the STAP weights is QR decomposition (QRD) which can be implemented using the modified Gram-Schmidt algorithm. Investigations show the method that uses QRD with less computational burden and leads to more effective implementation. Its structure parameterised with vector size to create a trade-off between hardware and performance factors. For this purpose, the modifications on QRD-MGS are performed in order to speed increasing. Then, the calculation of STAP weight vector was implemented. The implementation results show that decreasing vector size decreases the resources utilisation, computational burden and consumption power. However, computation time increases slightly, but the update rate of the STAP weights is maintained. For example, weights in the system with 6 antenna arrays, 10 received pulses and 200 range samples computed in 262 mu s by vector size of 17 on the Arria10 FPGA the maximum of which is 155 mu s are related to QRD-MGS and 107 mu s is related to other parts. Therefore, QRD-MGS is the most important part in calculation of the STAP weight vector and its simplifying led to an efficient implementation.
机译:本文研究了高效场可编程栅极阵列(FPGA)实施时空自适应处理(STAP)的实用方法进行了研究。计算STAP权重最重要的部分是QR分解(QRD),其可以使用改进的Gram-Schmidt算法实现。调查显示使用QRD具有较少计算负担的方法,并导致更有效的实施。它的结构与矢量尺寸参加,在硬件和性能因素之间创建权衡。为此目的,执行对QRD-MGS的修改以增加增加。然后,实施了STAP重量向量的计算。实施结果表明,减少矢量尺寸降低了资源利用,计算负担和消费功率。然而,计算时间略微增加,但保持了STAP权重的更新速率。例如,具有6个天线阵列的系统中的权重,在ARRIA10 FPGA上的矢量尺寸为262μs的10个接收的脉冲和200范围样本,其最大值为155μs与QRD-MGS和107μm相关s与其他部分有关。因此,QRD-MGS是计算STAP权重向量的最重要部分,其简化导致有效实现。

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