Asymptotically optimal power control in CDMA with random spreading and MMSE multiuser detector
We derive two types of optimal uplink transmission power control in synchronous and asynchronous CDMA time varying fading channel with multiple user classes, random spreading sequences and MMSE multiuser detector. One optimal policy minimizes the outage probability subject to maximum average power b...
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Published in | 2004 IEEE Infocom Vol. 2; pp. 1044 - 1054 vol.2 |
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Main Author | |
Format | Conference Proceeding |
Language | English |
Published |
Piscataway, New Jersey
IEEE
2004
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Subjects | |
Online Access | Get full text |
ISBN | 0780383559 9780780383555 |
ISSN | 0743-166X |
DOI | 10.1109/INFCOM.2004.1356991 |
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Abstract | We derive two types of optimal uplink transmission power control in synchronous and asynchronous CDMA time varying fading channel with multiple user classes, random spreading sequences and MMSE multiuser detector. One optimal policy minimizes the outage probability subject to maximum average power budget and maximum transmission power constraints. The other minimizes the average power budget subject to maximum outage probability and maximum transmission power constraints. We show that for a system with a large number of users and a proportionally large processing gain, both optimal policies are threshold cut-off policies. We express the policies explicitly and show how to compute their outage probabilities. |
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AbstractList | We derive two types of optimal uplink transmission power control in synchronous and asynchronous CDMA time varying fading channel with multiple user classes, random spreading sequences and MMSE multiuser detector. One optimal policy minimizes the outage probability subject to maximum average power budget and maximum transmission power constraints. The other minimizes the average power budget subject to maximum outage probability and maximum transmission power constraints. We show that for a system with a large number of users and a proportionally large processing gain, both optimal policies are threshold cut-off policies. We express the policies explicitly and show how to compute their outage probabilities. |
Author | Rosberg, Z. |
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Keywords | Multiuser detection Fading Time variable channel Outage Wireless telecommunication Mean square error Random sequence Power control Optimal control Synchronous transmission Code division multiple access Uplink Signal detection Asynchronous transmission |
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SubjectTerms | Applied sciences Degradation Detection, estimation, filtering, equalization, prediction Detectors Distributed control Exact sciences and technology Fading Information, signal and communications theory Land mobile radio cellular systems Multiaccess communication Power control Power engineering and energy Signal and communications theory Signal, noise Systems engineering and theory Systems, networks and services of telecommunications Telecommunications Telecommunications and information theory Transmission and modulation (techniques and equipments) Wireless networks |
Title | Asymptotically optimal power control in CDMA with random spreading and MMSE multiuser detector |
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