Z. Xie
University of Utah
9 Papers
289 Citations
Z. Xie is an academic researcher from University of Utah. The author has contributed to research in topics: White noise & Detection theory. The author has an hindex of 6, co-authored 9 publications.
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Papers
A family of suboptimum detectors for coherent multiuser communications
Z. Xie,R.T. Short,C.K. Rushforth +2 more
TL;DR: Under typical operating conditions, a class of suboptimum detectors for data transmitted asynchronously by K users employing direct-sequence spread-spectrum multiple access on the additive white Gaussian noise channel will perform much better than the conventional receiver and often nearly as well as the optimum detector.
887
Joint signal detection and parameter estimation in multiuser communications
TL;DR: An estimator that combines a suboptimum tree-search algorithm with a recursive least-squares estimator of complex signal amplitude is considered, and its performance is very close to that of the joint maximum-likelihood receiver.
136
Multiuser signal detection using sequential decoding
Z. Xie,C.K. Rushforth,R.T. Short +2 more
TL;DR: Computer simulation is used to evaluate the performance of a sequential decoder that uses this metric in conjunction with the stack algorithm, and results are achieved comparable to those obtained using the much more complicated optimal receiver.
131
Multi-user signal detection using sequential decoding
Z. Xie,C.K. Rushforth +1 more
- 23 Oct 1988
TL;DR: In this paper, a modification of R.M. Fano's (1963) sequential decoding metric was proposed, and the performance of a sequential decoder that uses this modified metric in conjunction with the stack algorithm was evaluated.
23
Suboptimum coherent detection of direct-sequence multiple-access signals
Z. Xie,R.T. Short,C.K. Rushforth +2 more
- 15 Oct 1989
TL;DR: Under typical operating conditions, this class of suboptimum detectors for data transmitted asynchronously by K users employing direct-sequence spread-spectrum multiple access on the additive white Gaussian noise channel will perform much better than the conventional receiver and often nearly as well as the optimum detector.
9