2002•Unpublished venueRequires access

Synchronization of Code-Spread CDMA Systems

Fredrik Malmsten, Tony Ottosson, Erik G. Ström

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Abstract

Delay estimation of a code-spread code-division multiple-access (CS-CDMA) system using low-rate maximum free distance (MFD) convolutional codes for bandwidth expansion is studied. The MFD codes used, have a repetitive structure, which is utilized for non-data-aided synchronization. The repetition pattern of the code is optimized for good delay estimation properties, using an optimization criterion based on the Cramer-Rao bound for the delay estimation problem. An approximate maximum-likelihood estimator that jointly estimates the channel gain, the codewords and the delay is proposed. A corresponding estimator for direct-sequence CDMA (DS-CDMA) is also derived. The performance, in terms of estimation error, outlier rate and bit-error rate, for both the systems are compared.

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What this paper is about

Delay estimation of a code-spread code-division multiple-access (CS-CDMA) system using low-rate maximum free distance (MFD) convolutional codes for bandwidth expansion is studied. The MFD codes used, have a repetitive structure, which is utilized for non-data-aided synchronization. The repetition pattern of the code is optimized for good delay estimation properties, using an optimization criterion based on the Cramer-Rao bound for the delay estimation problem. An approximate maximum-likelihood estimator that jointly estimates the channel gain, the codewords and the delay is proposed. A corresponding estimator for direct-sequence CDMA (DS-CDMA) is also derived. The performance, in terms of estimation error, outlier rate and bit-error rate, for both the systems are compared.

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Available abstract

Delay estimation of a code-spread code-division multiple-access (CS-CDMA) system using low-rate maximum free distance (MFD) convolutional codes for bandwidth expansion is studied. The MFD codes used, have a repetitive structure, which is utilized for non-data-aided synchronization. The repetition pattern of the code is optimized for good delay estimation properties, using an optimization criterion based on the Cramer-Rao bound for the delay estimation problem. An approximate maximum-likelihood estimator that jointly estimates the channel gain, the codewords and the delay is proposed. A corresponding estimator for direct-sequence CDMA (DS-CDMA) is also derived. The performance, in terms of estimation error, outlier rate and bit-error rate, for both the systems are compared.

Key concepts: Computer science, Code division multiple access, Synchronization (alternating current), Code (set theory), Spread spectrum, Telecommunications, Computer network, Programming language

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