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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >Improvement of Lock-in Electrical Bio-Impedance Analyzer for Implantable Medical Devices
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Improvement of Lock-in Electrical Bio-Impedance Analyzer for Implantable Medical Devices

机译:用于植入式医疗设备的锁定式电生物阻抗分析仪的改进

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摘要

A novel solution for improving lock-in electrical bio-impedance (EBI) analyzers by suppressing errors caused by higher odd harmonics of rectangular wave pulses is proposed. The solution is based on a newly developed method of shortening the rectangular full duty cycle pulses, which are commonly used in correlation-type lock-in EBI measurements. Comparison of the proposed method to a common method of regular rectangular waveforms is given. The results show that the measurement errors of the three-element EBI equivalent become several tens of times smaller when shortening the excitation and reference signals separately by different values, for example, by 30 deg and 18deg. Shortening of only a single signal (either excitation or reference) can also give significant progress. Improved accuracy of the EBI phasor measurement makes the proposed method reliable for most clinical applications. Due to its simplicity, the method is appropriate for on-chip realization in implantable devices
机译:提出了一种新的解决方案,通过抑制矩形波脉冲的较高奇次谐波引起的误差来改进锁定式生物阻抗(EBI)分析仪。该解决方案基于缩短矩形全占空比脉冲的新开发方法,该方法通常在相关型锁定EBI测量中使用。给出了所提方法与常规矩形波的比较方法。结果表明,当分别将激励信号和参考信号缩短不同值(例如30度和18度)时,三元素EBI当量的测量误差会减小几十倍。仅缩短单个信号(激励信号或参考信号)也可以取得重大进展。 EBI相量测量精度的提高使所提出的方法对于大多数临床应用而言都是可靠的。由于其简单性,该方法适用于可植入设备中的片上实现

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