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Design of dynamic synchronous multi-channel data acquisition system for lung sound based on FPGA

机译:基于FPGA的肺动态动态同步多通道数据采集系统设计

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Dynamic lung sound signal analysis and processing require synchronous multi-channel data acquisition system. In noninvasive and no pain lung sound diagnosis system, the highly accurate, synchronous and stable data acquisition system is the foundation of fellow-up work. In order to acquire the array data of lung sound, higher speed, reliability and synchronous data acquisition system can meet the requests. Lung sound signal was produced by lung vibration during air exchange. Simultaneous sampling maintains the phase information and provides us with more detailed information about physiology and pathology. Our method is to use piezopolymer sensor array attached to the backside and capture the lung vibration information. This paper mainly presents a FPGA-based synchronous data acquisition system. FPGA as a main component offers the ADC chip timing and FIFO design using Verilog HDL source code. Furthermore, this paper solves the synchronization problems so that array phase information is saved. Test results of the data acquisition system can fully meet the need of data acquisition in array data acquisition of lung sound.
机译:动态肺声音信号分析和处理需要同步多通道数据采集系统。在无创,无痛的肺部声音诊断系统中,高精度,同步和稳定的数据采集系统是协同工作的基础。为了采集肺声阵列数据,可以实现更高的速度,可靠性和同步数据采集系统。空气交换过程中,肺部振动产生肺部声音信号。同时采样可维护相位信息,并为我们提供有关生理学和病理学的更详细信息。我们的方法是使用附着在背面的压电聚合物传感器阵列并捕获肺部振动信息。本文主要提出了一种基于FPGA的同步数据采集系统。 FPGA作为主要组件,使用Verilog HDL源代码提供ADC芯片时序和FIFO设计。此外,本文解决了同步问题,从而节省了阵列相位信息。数据采集​​系统的测试结果可以完全满足阵列肺声阵列数据采集中数据采集的需求。

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