Study of excitation signals parameters for portable bioimedical devices

D. Bouchaala, Emna Mekki, T. Günther, P. Büschel, O. Kanoun, N. Derbel
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引用次数: 6

Abstract

The aim of this paper is to select the suitable excitation signal for a portable biomedical system based on the simulations of different signals while respecting the constraints on the system including excitation time, energy consumption, cost and ease of generation and at the same time guarantying the safety of the patient by limiting the current's magnitude. In order to get the optimum working point that minimize the trade-off between the quality of the reconstructed signal, the time consumption and the hardware complexity when applying the perturbation signal to the system under test, the interaction between pertinent parameters is determined. These parameters are the number of the samples, the sampling frequency and the noise's level. The number of samples (N) is directly related to the memory's size of the hardware used in the measurement, the sampling frequency (Fs) is associated to the clock and the noise's level is affiliated to the algorithm or the measurement hardware. To achieve a good signal's reconstruction, the ratio (Fs/f) should be lower than (~2*N) and the window's size which is proportional to (N, Fs/f) as large as possible.
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便携式生物医疗设备激励信号参数研究
本文的目的是在对不同信号进行仿真的基础上,选择适合便携式生物医学系统的激励信号,同时尊重系统的激励时间、能量消耗、成本和易于产生等约束条件,同时通过限制电流的大小来保证患者的安全。在将扰动信号应用于待测系统时,为了得到重构信号质量、时间消耗和硬件复杂度之间折衷最小的最佳工作点,确定了相关参数之间的相互作用。这些参数是采样数、采样频率和噪声水平。采样数(N)与测量中使用的硬件的内存大小直接相关,采样频率(Fs)与时钟相关,噪声水平与算法或测量硬件相关。为了实现良好的信号重构,比值(Fs/f)应小于(~2*N),且与(N, Fs/f)成正比的窗口尺寸应尽可能大。
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