2004
DOI: 10.1109/tcomm.2004.826256
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On the Optimum Design of Unitary Cyclic Group Space–Time Codes

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Cited by 10 publications
(19 citation statements)
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“…Numerical integration can be used to evaluate Equation (10), and approximate expressions exist [9]. An exact closed-form expression can be found using [18,19] …”
Section: Closed Form Expression For Pairwise Error Probabilitymentioning
confidence: 99%
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“…Numerical integration can be used to evaluate Equation (10), and approximate expressions exist [9]. An exact closed-form expression can be found using [18,19] …”
Section: Closed Form Expression For Pairwise Error Probabilitymentioning
confidence: 99%
“…It has been shown [9], that the union bound is a good estimator of relative BEP performance for medium to high SNR. These union bounds, assuming N = 2, are shown in Figure 5, with approximately 2 dB performance improvement for both reparametrisations over cyclic group codes for M = 5, 6 antennas and 2.…”
Section: Performance Analysis Of the Two Dustm Reparametrisationsmentioning
confidence: 99%
“…The exact pairwise-error-probability (PEP) of mistaking Φ for Φ for DUSTM is derived in [5], and reformulated in [11] as (15) where γ = (ρ 2 /(1 + 2ρ)), λ m is the mth eigenvalue of the matrix C S = (Φ − Φ )(Φ − Φ ) † and ∆ H is the rank of C S . Numerical integration can be used to simply and efficiently calculate (15).…”
Section: A Dustm Union Boundmentioning
confidence: 99%
“…There have been three typical criteria for the design of DUSTM, the diversity product [7], the Euclidean distance [10] and more recently the union bound on symbol or block error probability (BEP) [11]. The design of DUSTM based on the diversity product criterion is most effective at asymptotically high SNR, where it is determined based on a worst case pairwise block error probability (PEP).…”
Section: Introductionmentioning
confidence: 99%
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