Rank constrained temporal-spatial matrix filters for CDMA systems

Efficient interference suppression techniques are needed to maximally utilize the potential gains of code-division multiple-access systems. In this letter, a receiver structure which combines multiuser detection (temporal filtering) and receiver beamforming (spatial filtering) in a multipath environ...

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Published inIEEE transactions on wireless communications Vol. 3; no. 6; pp. 1974 - 1979
Main Authors Filiz, O., Yener, A.
Format Journal Article
LanguageEnglish
Published Piscataway, NJ IEEE 01.11.2004
Institute of Electrical and Electronics Engineers
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract Efficient interference suppression techniques are needed to maximally utilize the potential gains of code-division multiple-access systems. In this letter, a receiver structure which combines multiuser detection (temporal filtering) and receiver beamforming (spatial filtering) in a multipath environment is considered. Following previous work, we model the receiver as a linear matrix filter and use the minimum mean-squared error (MMSE) as the performance criterion. Motivated by the high complexity of the optimum receiver, we propose rank constrained temporal-spatial filters which are simpler and near-optimum. The MSE is minimized subject to a structural constraint, using an iterative algorithm based on alternating minimization. The constraint on the receiver matrix filter narrows down the solution space, which helps to solve the optimization problem more efficiently. The constraint can be set appropriately by the system designer to achieve the desired tradeoff between performance and complexity. Numerical results indicate that a performance close to that of the optimum filter can be achieved with a simple iterative structure, even in highly loaded systems. Adaptive implementation of the rank constrained filters is derived. A new adaptive scheme is proposed which is a combination of the alternating minimization and the least mean squares methods. The convergence properties are investigated along with the effect of the number paths.
AbstractList Efficient interference suppression techniques are needed to maximally utilize the potential gains of code-division multiple-access systems. In this letter, a receiver structure which combines multiuser detection (temporal filtering) and receiver beamforming (spatial filtering) in a multipath environment is considered. Following previous work, we model the receiver as a linear matrix filter and use the minimum mean-squared error (MMSE) as the performance criterion. Motivated by the high complexity of the optimum receiver, we propose rank constrained temporal-spatial filters which are simpler and near-optimum. The MSE is minimized subject to a structural constraint, using an iterative algorithm based on alternating minimization. The constraint on the receiver matrix filter narrows down the solution space, which helps to solve the optimization problem more efficiently. The constraint can be set appropriately by the system designer to achieve the desired tradeoff between performance and complexity. Numerical results indicate that a performance close to that of the optimum filter can be achieved with a simple iterative structure, even in highly loaded systems. Adaptive implementation of the rank constrained filters is derived. A new adaptive scheme is proposed which is a combination of the alternating minimization and the least mean squares methods. The convergence properties are investigated along with the effect of the number paths.
The constraint on the receiver matrix filter narrows down the solution space, which helps to solve the optimization problem more efficiently.
Author Filiz, O.
Yener, A.
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10.1109/26.380058
10.1109/53.665
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Issue 6
Keywords Multiuser detection
Interference suppression
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Wireless telecommunication
Code division multiple access
Receiver
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References ref8
ref7
Haykin (ref11) 2001
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  ident: ref9
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Snippet Efficient interference suppression techniques are needed to maximally utilize the potential gains of code-division multiple-access systems. In this letter, a...
The constraint on the receiver matrix filter narrows down the solution space, which helps to solve the optimization problem more efficiently.
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StartPage 1974
SubjectTerms Applied sciences
Array signal processing
Complexity
Constraint optimization
Constraints
Detection, estimation, filtering, equalization, prediction
Exact sciences and technology
Filtering
Information, signal and communications theory
Interference constraints
Interference suppression
Iterative algorithms
Least mean squares algorithm
Mathematical models
Minimization
Minimization methods
Minimum mean-squared error (MMSE)
Multiaccess communication
Multiuser detection
Nonlinear filters
Optimization
Receivers
Signal and communications theory
Signal, noise
Studies
Telecommunications and information theory
temporal-spatial filtering
Title Rank constrained temporal-spatial matrix filters for CDMA systems
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