SKA脉冲星搜索引擎中多个不同大小滤波器卷积的优化

Haomiao Wang, B. Stappers, P. Thiagaraj, O. Sinnen
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引用次数: 0

摘要

脉冲星搜索是平方公里阵列(SKA)中央信号处理器(CSP)子单元的主要任务之一。由于大多数脉冲星的细节是未知的,因此采用了许多脉冲星搜索方法。脉冲星搜索模块的主要计算密集型应用是匹配滤波器组,它将输入信号与一组滤波器进行卷积。在fpga上提出了能够高效处理多个大型滤波器的高性能设计。但考虑到在许多应用中,包括这里的目标脉冲星搜索,滤波器有不同的大小,有很大的优化潜力。研究了SKA脉冲星搜索引擎通用匹配滤波设计的优化问题。分析了不同过滤器数量和不同尺寸对过滤效果的影响。对时域(TD)和频域(FD)的一般实现进行了优化,采用最长处理时间(LPT)优先规则在滤波器处理管道中分配滤波器模板。采用该设计在两个SKA脉冲星模块中实现了匹配滤波器组。结果表明,优化后的TD和FD分别提高了2.1倍和1.2倍的速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimisation of Convolution of Multiple Different Sized Filters in SKA Pulsar Search Engine
Pulsar search is one of the main tasks for the Square Kilometre Array (SKA) central signal processor (CSP) sub-element. Because most of the pulsar details are unknown, many pulsar search approaches are employed. The main compute-intensive application of the pulsar search modules is the matched filter group, which convolves the input signals with a group of filters. High-performance designs on FPGAs have been proposed that can process multiple large filters efficiently. But given that in many applications, including the here targeted pulsar search, filters have different sizes, there is a high potential for optimisation. This paper investigates the optimisation of general matched filtering design for the SKA pulsar search engine. The influence of changing the number of filters and the difference in sizes is analysed. The general implementations in time-domain (TD) and frequency-domain (FD) are optimised, employing the longest processing time (LPT) first rule to distribute filter templates across filter processing pipelines. The proposed design is employed to implement the matched filter groups in two SKA pulsar modules. The results show that the optimisation can provide up to 2.1x speedup in TD and 1.2x speedup in FD.
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