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An FPGA-based implementation of a pre-processing stage for ECG signal analysis using DWT

机译:基于DWT的ECG信号分析的预处理阶段的基于FPGA的实现

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This paper falls within the scope of implementation of Digital Signal Processing (DSP) algorithms in the state of the art Field Programmable Gate Array (FPGA); so, it presents an FPGA-based embedded system design and its evaluation for a pre-processing stage of ECG signal analysis; such a design uses the Discrete Wavelet Transform (DWT) approach. Thus, the system deals mainly with the baseline wander (BLW) removal and the QRS detection. As the DWT-based implementation requires important hardware resources, our system is designed, in a spirit of optimization, to fit in low-cost and low-power FPGA device for portable medical equipment. It is developed with the Xilinx design tool, System Generator for DSP which is a plug-in to Simulink. This hardware design is tested with ECG data records from the MIT-BIH Arrhythmia database. By a careful visual examination of the simulation results, we report that the whole design provides a good response especially for the part of BLW suppression; moreover, only this part concerning the BLW is tested with a JTAG Hardware co-simulation in the available board at the time of experimentation, that is the Nexys 3 board of Digilent featuring Xilinx SPARTAN 6 XC6SLX16.
机译:本文属于现场可编程门阵列(FPGA)的数字信号处理(DSP)算法的实现范围;因此,它提出了一种基于FPGA的嵌入式系统设计及其对ECG信号分析的预处理阶段的评估。这样的设计使用离散小波变换(DWT)方法。因此,系统主要处理基线漂移(BLW)去除和QRS检测。由于基于DWT的实现需要大量的硬件资源,因此本着优化的精神设计我们的系统,以适合便携式医疗设备的低成本,低功耗FPGA器件。它是使用Xilinx设计工具DSP的系统生成器开发的,该工具是Simulink的插件。该硬件设计已通过MIT-BIH心律失常数据库中的ECG数据记录进行了测试。通过仔细观察仿真结果,我们报告整个设计提供了良好的响应,尤其是对于BLW抑制的部分。此外,在实验时只有可用的板上的JTAG硬件协同仿真才对有关BLW的部分进行了测试,这就是Digilent的配备Xilinx SPARTAN 6 XC6SLX16的Digilent Nexys 3板。

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