针对FPGA平台的指数正弦扫描测量实现

Alexander Klemd, P. Nowak, Piero Rivera Benois, Etienne Gerat, U. Zölzer, B. Klauer
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引用次数: 0

摘要

本文将现场可编程门阵列(FPGA)作为实现指数正弦扫描测量算法的数字信号处理平台。以最小化所需计算资源为目标,提出了两种策略。首先,利用坐标旋转数字计算机(CORDIC)算法实现振荡器产生指数正弦扫描;其次,只有计算被执行,导致系统的线性脉冲响应的期望长度。此外,为了最小化所需的内存资源,测量的脉冲响应被存储在先前分配给记录信号的内存中。为了验证所提出的实现,声学系统的测量使用配备了FPGA和处理器的平台进行。这样,可以将FPGA定点实现的结果与运行在处理器上的浮点MATLAB实现的参考结果进行比较。这一比较证实了所提出的实施方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exponential sine sweep measurement implementation targeting FPGA platforms
In this paper a field programmable gate array (FPGA) is considered as a digital signal processing platform for the implementation of an exponential sine sweep measurement algorithm. Aiming at minimizing the required computational resources, two strategies are proposed. Firstly, an oscillator implemented with the coordinate rotation digital computer (CORDIC) algorithm is used to generate the exponential sine sweep. Secondly, only the calculations are performed that lead to the linear impulse response of the system for a desired length. Furthermore, aiming at minimizing the required memory resources, the measured impulse response is stored in the memory previously allocated to the recorded signal. In order to validate the proposed implementation, measurements of an acoustical system are performed using a platform that is equipped with an FPGA and a processor. In this way, the results achieved by the FPGA fixed-point implementation can be compared to reference results achieved using a floating-point MATLAB implementation running on the processor. This comparison corroborates the validity of the proposed implementation.
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