DocumentCode :
761359
Title :
Multiuser diffuse indoor wireless infrared communication using equalized synchronous CDMA
Author :
Griner, Uri N. ; Arnon, Shlomi
Author_Institution :
Dept. of Electr. & Comput. Eng., Ben-Gurion Univ. of the Negev, Beer-Sheva
Volume :
54
Issue :
9
fYear :
2006
Firstpage :
1654
Lastpage :
1662
Abstract :
We propose an indoor wireless infrared downlink scheme for high-data-rate multiuser connectivity with diffuse channels. The scheme is based on synchronous code-division multiple access with unipolar Hadamard codes. The orthogonality of unipolar Hadamard codes enables multiuser operation with relatively short codes. Thus, practical downlink rates of tens of Mb/s for each user can be obtained. However, multipath reflections in diffuse channels cause strong multipath dispersion and, consequently, severe distortion. This distortion becomes even more severe in a multiuser environment, as the dispersed incoherent infrared radiation of all users aggregates together. To mitigate this distortion, we use a novel adaptive multilevel serial composite decision feedback and feedforward equalizer. We investigate the system´s performance with the proposed equalizer, and compare it with the performance of the same system, both composite decision-feedback and feedforward equalizers, and with a conventional decision-feedback equalizer (DFE). Our results show that the proposed scheme enables a high-data-rate multiaccess link and eliminates most of the multiuser distortion. Furthermore, it improves system performance in a multiaccess environment, as compared with the other composite equalizers and DFE for the same complexity. We also compare other coding schemes, and show that Hadamard codes are on top of the other codes
Keywords :
Hadamard codes; code division multiple access; decision feedback equalisers; indoor communication; multipath channels; multiuser channels; optical communication; optical dispersion; optical distortion; adaptive multilevel serial composite decision feedback equalizer; code-division multiple access; diffuse channels; dispersed incoherent infrared radiation; equalized synchronous CDMA; feedforward equalizer; high-data-rate multiuser connectivity; indoor wireless infrared downlink; multipath dispersion; multipath reflections; multiuser diffuse indoor wireless infrared communication; multiuser distortion; unipolar Hadamard codes; Code division multiplexing; Decision feedback equalizers; Downlink; Error correction; Error correction codes; Multiaccess communication; Optical fiber communication; Reflection; System performance; Wireless communication; Decision-feedback equalizer (DFE); decision feedforward equalizer; indoor wireless communication; infrared (IR) communication; multiaccess communication; optical code-division multiple access (OCDMA);
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2006.881247
Filename :
1703823
Link To Document :
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