Optimal resource allocation in multiservice CDMA networks

This paper addresses the problem of dynamic resource allocation in a multiservice direct-sequence code-division multiple-access (DS-CDMA) wireless network supporting real-time (RT) and nonreal-time (NRT) communication services. For RT users, a simple transmission power allocation strategy is assumed...

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Published inIEEE transactions on wireless communications Vol. 2; no. 4; pp. 811 - 821
Main Authors Seong-Jun Oh, Danlu Zhang, Wasserman, K.M.
Format Journal Article
LanguageEnglish
Published Piscataway, NJ IEEE 01.07.2003
Institute of Electrical and Electronics Engineers
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Subjects
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ISSN1536-1276
1558-2248
DOI10.1109/TWC.2003.814348

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Abstract This paper addresses the problem of dynamic resource allocation in a multiservice direct-sequence code-division multiple-access (DS-CDMA) wireless network supporting real-time (RT) and nonreal-time (NRT) communication services. For RT users, a simple transmission power allocation strategy is assumed that maximizes the amount of capacity available to NRT users without violating quality of service requirements of RT users. For NRT users, a joint transmission power and spreading gain (transmission rate) allocation strategy, obtained via the solution of a constrained optimization problem, is provided. The solution maximizes the aggregate NRT throughput, subject to peak transmission power constraints and the capacity constraint imposed by RT users. The optimization problem is solved in a closed form, and the resulting resource allocation strategy is simple to implement as a hybrid CDMA/time-division multiple-access strategy. Numerical results are presented showing that the optimal resource allocation strategy can offer substantial performance gains over other conventional resource allocation strategies for DS-CDMA networks.
AbstractList This paper addresses the problem of dynamic resource allocation in a multiservice direct-sequence code-division multiple-access (DS-CDMA) wireless network supporting real-time (RT) and nonreal-time (NRT) communication services. For RT users, a simple transmission power allocation strategy is assumed that maximizes the amount of capacity available to NRT users without violating quality of service requirements of RT users. For NRT users, a joint transmission power and spreading gain (transmission rate) allocation strategy, obtained via the solution of a constrained optimization problem, is provided. The solution maximizes the aggregate NRT throughput, subject to peak transmission power constraints and the capacity constraint imposed by RT users. The optimization problem is solved in a closed form, and the resulting resource allocation strategy is simple to implement as a hybrid CDMA/time-division multiple-access strategy. Numerical results are presented showing that the optimal resource allocation strategy can offer substantial performance gains over other conventional resource allocation strategies for DS-CDMA networks.
For NRT users, a joint transmission power and spreading gain (transmission rate) allocation strategy, obtained via the solution of a constrained optimization problem, is provided.
Author Danlu Zhang
Seong-Jun Oh
Wasserman, K.M.
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Issue 4
Keywords Performance evaluation
Power gain
Wireless telecommunication
Resource allocation
Implementation
Constrained optimization
Time division multiple access
Optimal strategy
Dynamic allocation
Optimal allocation
Code division multiple access
User requirement
Numerical simulation
Transmission rate
Peak power
Service quality
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Snippet This paper addresses the problem of dynamic resource allocation in a multiservice direct-sequence code-division multiple-access (DS-CDMA) wireless network...
For NRT users, a joint transmission power and spreading gain (transmission rate) allocation strategy, obtained via the solution of a constrained optimization...
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StartPage 811
SubjectTerms Aggregates
Allocations
Applied sciences
Delay
Exact sciences and technology
Gain
Intelligent networks
Interference
Mathematical models
Multiaccess communication
Networks
Operation, maintenance, reliability
Optimization
Performance gain
Quality of service
Resource allocation
Resource management
Strategy
Studies
Systems, networks and services of telecommunications
Telecommunications
Telecommunications and information theory
Throughput
Transmission and modulation (techniques and equipments)
Wireless communication
Wireless networks
Title Optimal resource allocation in multiservice CDMA networks
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