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Symbol error rate performance analysis for generalized coordinate interleaved orthogonal designs over Nakagami- m fading channels

Pham, V.B. (2014) Symbol error rate performance analysis for generalized coordinate interleaved orthogonal designs over Nakagami- m fading channels. Wireless Personal Communications, 77 (4). pp. 3081-3091. ISSN 9296212

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Symbol error rate performance analysis for generalized coordinate interleaved orthogonal designs over Nakagami- m fading channels.pdf

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Abstract

Space-time block codes (STBC) using generalized coordinate interleaved orthogonal designs (GCIOD) proposed by Khan and Rajan (IEEE Trans Inf Theory 52(5):2062-2091, 2006) allow single-complex symbol decoding and offer higher data rates than orthogonal STBC. In this paper, we present an exact closed-form formula (i.e.; not in integral form) for the average symbol pair-wise error probability of GCIODs derived in quasi-static frequency-nonselective independent identically distributed Nakagami- m fading channels. By using the formula, a tight union bound (UB) on symbol error rate (SER) is presented. Extensive simulation results show that the curves for the UB are asymptotically tight with the simulated SER curves for various antenna configurations and different modulations. The UB thus can be used to accurately predict and optimize the performance of GCIODs without the need of time-consuming simulations. © 2014 Springer Science+Business Media New York.

Item Type: Article
Divisions: Faculties > Faculty of Radio-Electronic Engineering
Identification Number: 10.1007/s11277-014-1696-0
Uncontrolled Keywords: Error statistics; Signal encoding; Space-time block coding (STBC); GCIOD; Nakagami; Pair-wise error probability; Performance analysis; Space-Time Block Code(STBC); STBC; Symbol error rate (SER); Symbol error rate performance; Fading channels
Additional Information: Language of original document: English.
URI: http://eprints.lqdtu.edu.vn/id/eprint/10017

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