DocumentCode :
1058430
Title :
Hybrid Ultrawideband Modulations Compatible for Both Coherent and Transmit-Reference Receivers
Author :
Zhao, Shiwei ; Orlik, Philip ; Molisch, Andreas F. ; Liu, Huaping ; Zhang, Jinyun
Author_Institution :
Oregon State Univ., Corvallis
Volume :
6
Issue :
7
fYear :
2007
fDate :
7/1/2007 12:00:00 AM
Firstpage :
2551
Lastpage :
2559
Abstract :
This paper considers signaling schemes for heterogeneous ultrawideband communications networks that contain both coherent (rake) and transmitted-reference (TR) receivers. While coherent receivers are capable of receiving TR signals, they do so with a 3 dB penalty, because they cannot make use of the energy invested into the reference pulse. We propose a new signaling scheme that avoids this drawback, by encoding redundant information on the reference pulse. The resulting scheme does not affect the operation of a TR receiver, while recovering the 3 dB penalty and furthermore providing an additional 1.7 dB coding gain to a coherent uncoded binary scheme. This can be explained by interpreting the scheme as a trellis-coded modulation. We also provide an alternative implementation that can be viewed as a recursive systematic convolutional encoder. Combining this version further with a simple forward error correction encoder results in a concatenated code that can be decoded iteratively, providing a bit-error rate of 10-3 at 2.8 dB signal-to-noise ratio in additive white Gaussian noise. The convergence behavior of this iterative code is analyzed by using extrinsic information transfer charts.
Keywords :
AWGN; concatenated codes; convolutional codes; error statistics; forward error correction; iterative decoding; radio receivers; telecommunication signalling; trellis coded modulation; ultra wideband communication; additive white Gaussian noise; bit-error rate; coherent receiver; concatenated code; encoding; extrinsic information transfer chart; forward error correction; iterative decoding; recursive systematic convolutional encoder; signaling scheme; transmitted-reference receiver; trellis-coded modulation; ultrawideband modulation; uncoded binary scheme; Concatenated codes; Convolution; Convolutional codes; Encoding; Forward error correction; Gain; Iterative decoding; RAKE receivers; Ultra wideband communication; Ultra wideband technology;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2007.05892
Filename :
4275008
Link To Document :
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