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Abstract: Low power implementation of digital adaptive filters for channel equalization and interference cancelling is
an important aspect of wireless communications transceiver design. In this paper we provide a low power design
methodology for the widely used finite precision LMS adaptive cahnnel equalizer. We first derive expressions for
the increase in mean square error of the digital adaptive filter when the total power dissipated is decreased by
reducing both the number of data bits and filter... (Update)
Context of citations to this paper: More
.... can be obtained with little loss in equalizer performance by reduction of bit resolution on the coefficients and on the data stream [4, 5]. This paper incorporates such a power reduction strategy for OFDM reception along with equalizer tap length reduction and FFT length...
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BibTeX entry: (Update)
A. O. Hero and R. Gupta, "Power vs. Performance Tradeoffs for Reduced Resolution Adaptive Equalizers," Proceedings of the IEEE 1998 Conf. on Miltary Communications, Bedford, MA Sept. 1998 http://citeseer.ist.psu.edu/article/gupta98power.html More
@misc{ hero98power,
author = "A. Hero and R. Gupta",
title = "Power vs. Performance Tradeoffs for Reduced Resolution Adaptive Equalizers",
text = "A. O. Hero and R. Gupta, Power vs. Performance Tradeoffs for Reduced Resolution
Adaptive Equalizers, Proceedings of the IEEE 1998 Conf. on Miltary Communications,
Bedford, MA Sept. 1998",
year = "1998",
url = "citeseer.ist.psu.edu/article/gupta98power.html" }
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