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Novel Method to Represent ECG Signals Via Predefined Personalized Signature and Envelope Functions.

机译:通过预定义的个性化签名和包络函数表示ECG信号的新方法。

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In this paper, a new method to model ECG signals by means of 'Predefined Personalized Signature and Envelope Functions' is presented. ECG signals are somewhat unique to a person. Moreover, it presents quasi-stationary behavior. Therefore in this work, on a frame basis, personal ECG signals X(sub i)(t) is modeled by the form of X(sub i)(t) = C(sub i)phi(sub i)(t) alpha(sub i) (t). In this model, phi(sub i)(t) is defined as the Personalized Signature Function (PSF); alpha(sub i)(t) is referred to as Personalized Envelope Function (PEF) and C(sub i) is called the Frame-Scaling Coefficient (FSC). It has been demonstrated that for each person, the sets Phi=(question mark)phi(sub k)(t)(exclamation point) and Alpha=(question mark)alpha(sub r)(t)(exclamation point) constitute a 'Predefined Personalized Functional Bases or Banks (PPFB)' to describe any measured ECG signal. Almost optimum forms of (PPFB), namely (question mark)alpha(sub r)(t)(exclamation point), (question mark)phi(sub k)(t)(exclamation point) pairs are generated in the Least Mean Square (LMS) sense. Thus, ECG signal for each frame is described in terms of the two indices 'R' and 'K' of PPFB and the frame-scaling coefficient C(sub i). It has been shown that the new method of modeling provides significant data compression. Furthermore, once PPFB are stored on each communication node, transmission of ECG signals reduces to the transmission of indexes 'R' and 'K' of ALPHA(SUB R)(T), PHI(SUB K)(T) pairs and the coefficients C(sub i), which also result in considerable saving in the transmission band.

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