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The implementation of pulse wave signal generator based on Piecewise Gaussian-Cosine Fitting

机译:基于分段高斯 - 余弦配件的脉冲波信号发生器的实现

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Pulse wave reflects vital information related to condition of cardiovascular system. In recent years, pulse wave is widely studied. To conduct these researches successfully, acquiring pulse wave accurately is significant. However, at the developing stage of the equipment for acquiring pulse wave, it is usually not convenient to get specific signal to debug and evaluate the developing system. Aiming to produce test signal which reflects specific physiological condition for the developing pulse wave detection equipment, this paper designs a pulse wave signal generator which can produce different types of pulse waves according to the feature points set by users based on FPGA device. Sometimes noise is also needed when testing the performance of the filter designed. Therefore, the function for adding different types of noises is integrated into this system. LCD and touch screen are selected to constitute the user interface. The whole process is conducted in SOPC developing flow. Aiming to restore a single-period pulse wave from its feature points, a method named Piecewise Gaussian-Cosine Fitting is proposed in this paper. This pulse wave signal generator can be defined as a special signal generator with simple structure and small size which provides flexible solutions for many researching cases.
机译:脉波反映了与心血管系统的状况有关的重要信息。近年来,脉搏波被广泛研究。为了成功地进行这些研究,准确地获取脉波是显着的。然而,在用于获取脉冲波的设备的开发阶段,获得特定信号可以调试和评估显影系统通常是不方便的。旨在产生反映显影脉冲波检测设备的特定生理条件的测试信号,本文设计了一种脉冲波信号发生器,其可以根据基于FPGA器件的用户设置的特征点来产生不同类型的脉冲波。在测试设计过滤器的性能时,还需要噪音。因此,将不同类型噪声添加到该系统中的功能。选择LCD和触摸屏以构成用户界面。整个过程在SOPC开发流中进行。旨在从其特征点恢复单周期脉冲波,本文提出了一种名为分段高斯 - 余弦配件的方法。该脉冲波信号发生器可以定义为具有简单结构和小尺寸的特殊信号发生器,为许多研究案例提供了灵活的解决方案。

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