DocumentCode :
1273571
Title :
Channel Identification of Concatenated Fiber-Wireless Uplink Using Ternary Signals
Author :
Ng, Yin Hoe ; Tan, Ai Hui ; Chuah, Teong Chee
Author_Institution :
Fac. of Eng., Multimedia Univ., Cyberjaya, Malaysia
Volume :
60
Issue :
7
fYear :
2011
Firstpage :
3207
Lastpage :
3217
Abstract :
In the uplink of a fiber-based wireless system, the multipath dispersion that is introduced by the wireless link and the nonlinear distortion that is caused by the radio-over-fiber (RoF) link significantly degrade system performance. Channel equalization is challenging, because these impairments are generally unknown to the receiver. One novel technique of estimating both of these impairments using ternary pseudorandom signals is proposed. The key idea is to exploit proper harmonic suppression through signal design such that errors that are inflicted by the nonlinear distortion can be eliminated or reduced. Capitalizing on this case, a simple yet effective correlation approach is applied to accurately estimate the channel impulse response. Subsequently, least squares polynomial fitting is invoked to identify the nonlinearity of the RoF link, making use of the linear estimates obtained earlier. Design guidelines that lead to good performance are proposed. Results reveal that an improvement in the estimation accuracy of at least a factor of two is achieved by the proposed technique over an existing technique utilizing binary signals in the various scenarios investigated, even if the identification period of the proposed technique is almost 1000 times shorter than the existing technique. Because the proposed technique enables a simpler transmitter structure and requires shorter identification periods and lower power transmission, it is found to be appealing for use in broadband fiber-based wireless systems.
Keywords :
broadband networks; equalisers; harmonics suppression; least squares approximations; polynomials; radio-over-fibre; broadband fiber-based wireless systems; channel equalization; channel identification; channel impulse response; concatenated fiber-wireless uplink; harmonic suppression; least squares polynomial fitting; multipath dispersion; nonlinear distortion; radio-over-fiber; ternary pseudorandom signals; Business process re-engineering; Harmonic analysis; Noise; Optical fiber dispersion; Polynomials; Wireless communication; Channel identification; fiber-based wireless (Fi-Wi); multipath dispersion; nonlinear distortion (NLD); radio over fiber (RoF); ternary signals;
fLanguage :
English
Journal_Title :
Vehicular Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9545
Type :
jour
DOI :
10.1109/TVT.2011.2162012
Filename :
5954196
Link To Document :
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