首页> 外文会议>Engineering in Medicine and Biology Society, 1998. Proceedings of the 20th Annual International Conference of the IEEE >Highly accurate demodulation method of an IPFM model with an absolute refractory period
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Highly accurate demodulation method of an IPFM model with an absolute refractory period

机译:具有绝对不应期的IPFM模型的高精度解调方法

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An integral pulse frequency modulation (IPFM) model is a pulse generation mechanism model for the nervous systems and is one of the models which connects heart rate variability to autonomic nervous system activity. There is a refractory period just after a heart beat impulse occurs, in which no heart beat impulses occur at any rate. The IPFM model does not take the refractory period into account. It would be good to consider the refractory periods in order to make the IPFM model realistic. In this paper, we are examining the effects of the absolute refractory period on the spectral distortion properties and the demodulation accuracy. Spurious components, (which are caused by mutual interference among the frequency components), decreased as the absolute refractory period increased, while the side-band distortion around the input frequency components increased. The direct FFT method impairs demodulation accuracy as the absolute refractory period increases. Even the integral function (IF) method without taking the absolute refractory period into account can reduce the distortion that is peculiar to the absolute refractory period. Moreover, the IF method which took the absolute refractory period into account has higher demodulation accuracy in spite of the absolute refractory period.
机译:积分脉冲频率调制(IPFM)模型是神经系统的脉冲生成机制模型,并且是将心率变异性与自主神经系统活动联系起来的模型之一。发生心跳冲动后有一个不应期,其中不会以任何速率发生心跳冲动。 IPFM模型未考虑不应期。为了使IPFM模型变得现实,最好考虑不应期。在本文中,我们正在研究绝对不应期对频谱失真特性和解调精度的影响。杂散分量(由频率分量之间的相互干扰引起)随着绝对不应期的增加而减小,而输入频率分量周围的边带失真增大。直接FFT方法会随着绝对不应期的增加而损害解调精度。即使不考虑绝对不应期的积分函数(IF)方法也可以减少绝对不应期特有的失真。而且,尽管考虑了绝对不应期,但考虑到绝对不应期的IF方法具有更高的解调精度。

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