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FPGA SoC Based Multichannel Data Acquisition System with Network Control Module

机译:基于FPGA SoC的具有网络控制模块的多通道数据采集系统

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摘要

Normally, Data acquisition (DAQ) is used to acquire the signals from different devices like sensors, transducers, actuators etc. The data acquisition is also used to analyze the signals, digitizing the signals and acquiring the signals from different inputs. The main drawbacks in data acquisition system are data storage, hardware size and remote monitoring. The System-on-Chip Field Programmable Gate Array (SoC-FPGA) is used in the proposed system in the aim to reduce the hardware and memory size. Further to provide remote monitoring with Ethernet/Wi-Fi, the Network Control Module (NCM) is integrated with Data acquisition and processing module for the communication between the systems. This developed system achieves high resolution with memory reduction, reduced hardware size, fast remote monitoring and control. It is used for real time processing in DAQ and signal processing. For fault tolerance and portability, the full system reconfigurability based FPGA acts as the best solution and the system can be reused with different configurations. The control of data acquisition and the subsequent management of data are coded in LabVIEW. Lab VIEW tool is used to design and develop a four-channel Data Acquisition and Processing (DAQP) unit. National Instruments Data Acquisition (NIDAQ) and National Instruments Field Programmable Gate Array (NIFPGA) are used to test and implement the design for real time processing. This is designed to provide high accuracy, storage and portability.
机译:通常,数据采集(DAQ)用于从不同的设备(例如传感器,传感器,执行器等)采集信号。数据采集也用于分析信号,将信号数字化并从不同的输入中采集信号。数据采集​​系统的主要缺点是数据存储,硬件大小和远程监视。所提议的系统中使用了片上系统现场可编程门阵列(SoC-FPGA),目的是减少硬件和存储器的大小。为了通过以太网/ Wi-Fi提供远程监控,网络控制模块(NCM)与数据采集和处理模块集成在一起,用于系统之间的通信。此开发的系统可通过减少内存,减小硬件大小,快速进行远程监视和控制来实现高分辨率。它用于DAQ中的实时处理和信号处理。为了提高容错性和可移植性,基于FPGA的完整系统可重配置性是最佳解决方案,并且可以在不同配置下复用系统。数据采集​​控制和后续数据管理在LabVIEW中进行了编码。 Lab VIEW工具用于设计和开发四通道数据采集和处理(DAQP)单元。 NI数据采集(NIDAQ)和NI现场可编程门阵列(NIFPGA)用于测试和实现实时处理设计。旨在提供高精度,存储和便携性。

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