Title :
Supporting Asymmetric Traffic in a TDD/CDMA Cellular Network via Interference-Aware Dynamic Channel Allocation and Space–Time LMMSE Joint Detection
Author :
Spyropoulos, Ioannis ; Zeidler, James R.
Author_Institution :
Dept. of Electr. Eng., Univ. of California, La Jolla, CA
Abstract :
In a time-division duplexing (TDD)/code-division multiple-access (CDMA) cellular network with asymmetric data traffic, dynamic channel allocation (DCA) enhances resource utilization compared with fixed channel allocation (FCA). However, it also induces base-to-base and mobile-to-mobile crossed-slot intercell interference, which can severely degrade system performance. To deal with this problem, a decentralized scheme is proposed, which combines an interference-aware DCA algorithm with space-time linear minimum-mean-square-error (LMMSE) joint detection at the base and mobile stations. The former assigns active links to timeslots in a way that crossed-slot interference is mitigated, while the latter suppresses the remaining intercell interference (along with intersymbol and intracell interference), exploiting its spatio-temporal autocorrelation statistics. The performance of this scheme is evaluated in terms of downlink and uplink signal-to-interference-plus-noise ratio (SINR) outage and average throughput via analytical approximations and Monte Carlo simulations, and it is compared with that of benchmark random DCA (RDCA) and FCA schemes. The cases of single- and dual-antenna reception with perfect and imperfect channel state information are examined. It is shown that the proposed scheme achieves higher average throughput than FCA (particularly for dual-antenna reception) as well as RDCA (for heavy traffic loads). These throughput gains are more significant in uplink than in downlink.
Keywords :
Monte Carlo methods; antenna arrays; cellular radio; channel allocation; code division multiple access; interference suppression; intersymbol interference; least mean squares methods; radiofrequency interference; signal detection; telecommunication traffic; time division multiple access; Monte Carlo simulations; TDD-CDMA cellular network; asymmetric data traffic; base-to-base crossed-slot intercell interference; benchmark random DCA schemes; benchmark random FCA schemes; channel state information; dual-antenna reception; fixed channel allocation; interference suppression; interference-aware dynamic channel allocation; intersymbol interference; intracell interference; linear minimum mean square error; mobile-to-mobile crossed-slot intercell interference; resource utilization; signal-to-interference-plus-noise ratio outage; single-antenna reception; space-time LMMSE joint detection; spatio-temporal autocorrelation statistics; time division duplexing-code division multiple access cellular network; Antenna arrays; Time division duplexing; antenna arrays; code division multiaccess; code-division multiple access (CDMA); land mobile radio cellular systems; resource management; signal detection; time-division duplexing (TDD);
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2008.928108