Blind Reduced-Rank Adaptive Receivers for DS-UWB Systems Based on Joint Iterative Optimization and the Constrained Constant Modulus Criterion

A novel linear blind adaptive receiver based on joint iterative optimization (JIO) and the constrained-constant-modulus design criterion is proposed for interference suppression in direct-sequence ultrawideband systems. The proposed blind receiver consists of the following two parts: 1) a transforma...

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Published inIEEE transactions on vehicular technology Vol. 60; no. 6; pp. 2505 - 2518
Main Authors Sheng Li, de Lamare, R. C.
Format Journal Article
LanguageEnglish
Published New York, NY IEEE 01.07.2011
Institute of Electrical and Electronics Engineers
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN0018-9545
1939-9359
DOI10.1109/TVT.2011.2157844

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Abstract A novel linear blind adaptive receiver based on joint iterative optimization (JIO) and the constrained-constant-modulus design criterion is proposed for interference suppression in direct-sequence ultrawideband systems. The proposed blind receiver consists of the following two parts: 1) a transformation matrix that performs dimensionality reduction and 2) a reduced-rank filter that produces the output. In the proposed receiver, the transformation matrix and the reduced-rank filter are jointly and iteratively updated to minimize the constant-modulus cost function subject to a constraint. Adaptive implementations for the JIO receiver are developed using the normalized stochastic gradient (NSG) and recursive least squares (RLS) algorithms. To obtain a low-complexity scheme, the columns of the transformation matrix with the RLS algorithm are individually updated. Blind channel estimation algorithms for both versions (i.e., NSG and RLS) are implemented. Assuming perfect timing, the JIO receiver only requires the spreading code of the desired user and the received data. Simulation results show that both versions of the proposed JIO receivers have excellent performance in terms of suppressing the intersymbol interference (ISI) and multiple-access interference (MAI) with low complexity.
AbstractList A novel linear blind adaptive receiver based on joint iterative optimization (JIO) and the constrained-constant-modulus design criterion is proposed for interference suppression in direct-sequence ultrawideband systems. The proposed blind receiver consists of the following two parts: 1) a transformation matrix that performs dimensionality reduction and 2) a reduced-rank filter that produces the output. In the proposed receiver, the transformation matrix and the reduced-rank filter are jointly and iteratively updated to minimize the constant-modulus cost function subject to a constraint. Adaptive implementations for the JIO receiver are developed using the normalized stochastic gradient (NSG) and recursive least squares (RLS) algorithms. To obtain a low-complexity scheme, the columns of the transformation matrix with the RLS algorithm are individually updated. Blind channel estimation algorithms for both versions (i.e., NSG and RLS) are implemented. Assuming perfect timing, the JIO receiver only requires the spreading code of the desired user and the received data. Simulation results show that both versions of the proposed JIO receivers have excellent performance in terms of suppressing the intersymbol interference (ISI) and multiple-access interference (MAI) with low complexity.
Author Sheng Li
de Lamare, R. C.
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  surname: de Lamare
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Keywords Performance evaluation
Parameter estimation
Updating
Iterative method
Stochastic method
Implementation
Optimization
constrained constant modulus (CCM)
Coding
Least squares method
Channel estimation
Cost function
direct-sequence ultrawideband (DS-UWB) systems
Direct sequence
Design criterion
Receiver
Blind identification
Blind adaptive receiver
Recursive algorithm
Ultra wide band
Interference suppression
Dimension reduction
Recursive method
Signal processing
System simulation
Timing
reduced-rank methods
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SubjectTerms Adaptive systems
Algorithms
Applied sciences
Blind adaptive receiver
Blinds
Coding, codes
constrained constant modulus (CCM)
Convergence
Cost function
Covariance matrix
Criteria
Detection, estimation, filtering, equalization, prediction
direct-sequence ultrawideband (DS-UWB) systems
Equations
Exact sciences and technology
Information, signal and communications theory
Interference
interference suppression
Optimization
Radiocommunications
Receivers
reduced-rank methods
Signal and communications theory
Signal, noise
Studies
Systems, networks and services of telecommunications
Telecommunications
Telecommunications and information theory
Transformations
Transmission and modulation (techniques and equipments)
Transmitters. Receivers
Title Blind Reduced-Rank Adaptive Receivers for DS-UWB Systems Based on Joint Iterative Optimization and the Constrained Constant Modulus Criterion
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