DocumentCode :
626765
Title :
Error correction algorithm for high accuracy bio-impedance measurement in wearable healthcare applications
Author :
Kubendran, Rajkumar Chinnakonda ; Sunyoung Kim ; Yazicioglu, Refet Firat
Author_Institution :
Sch. of Electr. & Comput. Eng., Purdue Univ., West Lafayette, IN, USA
fYear :
2013
fDate :
19-23 May 2013
Firstpage :
1292
Lastpage :
1295
Abstract :
High accuracy in measurement of physiological signals like skin impedance is critical and is more difficult to achieve in biomedical systems with very limited power budget. A new method for accurate bio-impedance measurement using square wave demodulation is proposed in this paper. An error correction algorithm has been derived from the analysis of a generic impedance model with multiple poles, which reduces the estimation error in square wave demodulation from 9.3% to 1.3% for a simple tissue model. Simulation results in Matlab using ideal RC values show an accuracy of <;0.14% for single pole and <;0.67% for two pole RC networks. Measurements from saline phantom solution gives an accuracy <;0.72%. The results indicate that the algorithm can be used as a postprocessing technique for error correction or even incorporated into wearable signal monitoring SoCs since modulation and demodulation using square waves consumes less power compared to sine waves.
Keywords :
biomedical electronics; biomedical measurement; error correction; health care; medical signal processing; patient care; system-on-chip; Matlab; biomedical systems; error correction algorithm; estimation error reduction; generic impedance model-multiple-poles; high-accuracy bioimpedance measurement; ideal RC values; physiological signal measurement; saline phantom solution; skin impedance; square wave demodulation; tissue model; two-pole RC networks; wearable healthcare applications; wearable signal monitoring SoCs; Current measurement; Demodulation; Frequency measurement; Impedance; Impedance measurement; Mathematical model; Voltage measurement; Bio-impedance; Physiological signal monitoring;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Circuits and Systems (ISCAS), 2013 IEEE International Symposium on
Conference_Location :
Beijing
ISSN :
0271-4302
Print_ISBN :
978-1-4673-5760-9
Type :
conf
DOI :
10.1109/ISCAS.2013.6572090
Filename :
6572090
Link To Document :
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