Ultra Low-Power Biomedical Signal Processing: An Analog Wavelet Filter Approach for Pacemakers by Wouter A. Serdijn, Sandro Augusto Pavlik Haddad (Hardcover, 2009)
Often WT systems employ the discrete wavelet transform, implemented on a digital signal processor. However, in ultra low-power applications such as biomedical implantable devices, it is not suitable to implement the WT by means of digital circuitry due to the relatively high power consumption associated with the required A/D converter. Low-power analog realization of the wavelet transform enables its application in vivo, e.g. in pacemakers, where the wavelet transform provides a means to extremely reliable cardiac signal detection. In Ultra Low-Power Biomedical Signal Processing we present a novel method for implementing signal processing based on WT in an analog way. The methodology presented focuses on the development of ultra low-power analog integrated circuits that implement the required signal processing, taking into account the limitations imposed by an implantable device.
Product Identifiers
Publisher
Springer-Verlag New York Inc.
ISBN-13
9781402090721
eBay Product ID (ePID)
90334930
Product Key Features
Author
Wouter A. Serdijn, Sandro Augusto Pavlik Haddad
Publication Name
Ultra Low-Power Biomedical Signal Processing: an Analog Wavelet Filter Approach for Pacemakers