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Open-Short-Load Compensation for A Bipolar Bioimpedance Spectrometer

机译:双极生物阻抗谱仪的开放式短负荷补偿

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Open-short-load (OSL) compensations are the most popular correcting technique used in impedance measurement instruments for minimizing measurement errors before outputting the final results. This paper presents a practical OSL compensation model for a new developed bipolar bioimpedance spectrometer (BIS) system. The experiment shows that after the OSL compensation, the mean error of impedance magnitudes is reduced from the original relative error of 2.9% to 0.88% and the mean error of impedance phases is reduced from the original absolute error of 2.5 degree to 0.24 degree over 32 frequency points in the range from 10kHz to 1MHz. The compensation result validates the performance of the proposed OSL compensation model and demonstrates that the OSL compensation method with a proper compensation model can improve the effective measurement accuracy of an instrument.
机译:开放式短路(OSL)补偿是阻抗测量仪器中最流行的校正技术,用于在输出最终结果之前最小化测量误差。 本文介绍了一种新型开发的双极性生物阻抗谱仪(BIS)系统的实用OSL补偿模型。 实验表明,在OSL补偿之后,阻抗幅度的平均误差从2.9%的原始相对误差减少到0.88%,阻抗相的平均误差从2.5度的原始绝对误差减少到32度的0.24度 频率点在10kHz至1MHz的范围内。 补偿结果验证了所提出的OSL补偿模型的性能,并表明具有适当补偿模型的OSL补偿方法可以提高仪器的有效测量精度。

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