2007•Unpublished venueRequires access

A Novel Timing and Frequency Offset Estimation Scheme for OFDM Systems

Shun-Sheng Wang, Chih–Peng Li, Chin-Liang Wang

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Abstract

A novel structure of training symbol is proposed for orthogonal frequency division multiplexing (OFDM) systems. With the proposed training symbol, which has repeated sample blocks and a sign pattern on each block, both timing offset and frequency offset estimations can be obtained. In particular, the frequency synchronization is accomplished using two successive stages to obtain both the fractional and integral parts of frequency offset with an estimation range of plusmnN/4 sub-carrier spacing. Simulation experiments demonstrate that the performance of the proposed scheme is, in most of the investigated cases, substantially superior to the traditional schemes, or has negligible differences. In addition, the proposed synchronization mechanism has a relatively low system complexity, making a good comprise between performance and complexity.

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What this paper is about

A novel structure of training symbol is proposed for orthogonal frequency division multiplexing (OFDM) systems. With the proposed training symbol, which has repeated sample blocks and a sign pattern on each block, both timing offset and frequency offset estimations can be obtained. In particular, the frequency synchronization is accomplished using two successive stages to obtain both the fractional and integral parts of frequency offset with an estimation range of plusmnN/4 sub-carrier spacing. Simulation experiments demonstrate that the performance of the proposed scheme is, in most of the investigated cases, substantially superior to the traditional schemes, or has negligible differences. In addition, the proposed synchronization mechanism has a relatively low system complexity, making a good comprise between performance and complexity.

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Available abstract

A novel structure of training symbol is proposed for orthogonal frequency division multiplexing (OFDM) systems. With the proposed training symbol, which has repeated sample blocks and a sign pattern on each block, both timing offset and frequency offset estimations can be obtained. In particular, the frequency synchronization is accomplished using two successive stages to obtain both the fractional and integral parts of frequency offset with an estimation range of plusmnN/4 sub-carrier spacing. Simulation experiments demonstrate that the performance of the proposed scheme is, in most of the investigated cases, substantially superior to the traditional schemes, or has negligible differences. In addition, the proposed synchronization mechanism has a relatively low system complexity, making a good comprise between performance and complexity.

Key concepts: Orthogonal frequency-division multiplexing, Frequency offset, Carrier frequency offset, Computer science, Synchronization (alternating current), Offset (computer science), Algorithm, UTC offset

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