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用于时域电磁干扰(TDEMI)测量接收机的大动态范围数据采集系统。

Large dynamic range data acquisition system for time-domain electromagnetic interference (TDEMI) measurement receiver.

作者信息

Zeng Hao, Gao Jian, Ye Peng, Guo Lianping, Liao Ke

机构信息

School of Automation Engineering, University of Electronic Science and Technology of China, Chengdu 611731, China.

出版信息

Rev Sci Instrum. 2019 Jan;90(1):015105. doi: 10.1063/1.5062618.

Abstract

Electromagnetic interference (EMI) measurement is essential in wireless communications to avoid both performance degradation and serious fault failures. In this paper, we present the design of an acquisition system for a time-domain EMI measurement receiver intended for monitoring potential EMI. The platform consists of both hardware and software systems. The hardware system is constructed using a modular design method and contains a conditioning module, a data acquisition and processing module, and a clock generation module. The software system provides an interactive interface for device operation and offers an automatic sampling/processing procedure that is developed on a slot 0 controller. An additional outstanding feature of the proposed system is its high dynamic range. We propose a novel multi-stage architecture and a data reconstruction algorithm that are combined to achieve large dynamic range acquisition. The proposed acquisition architecture breaks through the dynamic range limitations of conventional analog-to-digital converters (ADCs) on a significant scale. The implemented system is able to capture an analog waveform with a 300 MHz bandwidth and a 1 GS/s sampling rate. The experimental results show that the maximum dynamic range achieved is 96.43 dB, which is far greater than the single ADC dynamic range of 52 dB.

摘要

电磁干扰(EMI)测量对于无线通信至关重要,可避免性能下降和严重故障。本文介绍了一种用于监测潜在EMI的时域EMI测量接收机采集系统的设计。该平台由硬件和软件系统组成。硬件系统采用模块化设计方法构建,包括一个调理模块、一个数据采集与处理模块以及一个时钟生成模块。软件系统为设备操作提供交互式界面,并提供在插槽0控制器上开发的自动采样/处理程序。该系统的另一个突出特点是其高动态范围。我们提出了一种新颖的多级架构和一种数据重建算法,两者相结合以实现大动态范围采集。所提出的采集架构在很大程度上突破了传统模数转换器(ADC)的动态范围限制。所实现的系统能够捕获带宽为300 MHz、采样率为1 GS/s的模拟波形。实验结果表明,实现的最大动态范围为96.43 dB,远大于单个ADC的52 dB动态范围。

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