Zeng Hao, Gao Jian, Ye Peng, Guo Lianping, Liao Ke
School of Automation Engineering, University of Electronic Science and Technology of China, Chengdu 611731, China.
Rev Sci Instrum. 2019 Jan;90(1):015105. doi: 10.1063/1.5062618.
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.
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。