Suppression of multiuser interference (MUI) and mitigation of multipath effects constitute major challenges in the design of third-generation wireless mobile systems. Most wide-band and multicarrier uplink code-division multiple-access (CDMA) schemes suppress MUI statistically in the presence of unknown multipath. For fading resistance, they all rely on transmit- or receive-diversity and multichannel equalization based on bandwidth-consuming training sequences or self-recovering techniques at the receiver end. Either way, they impose restrictive and difficult to check conditions on the finite-impulse response channel nulls. Relying on block-symbol spreading, we design a mutually-orthogonal usercode-receiver (AMOUR) system for quasi-synchronous blind CDMA that eliminates MUI deterministically and mitigates fading regardless of the unknown multipath and the adopted signal constellation. AMOUR converts a multiuser CDMA system into parallel single-user systems regardless of multipath and guarantees identifiability of users' symbols without restrictive conditions on channel nulls in both blind and nonblind setups. An alternative AMOUR design called Vandermonde-Lagrange AMOUR is derived to add flexibility in the code assignment procedure. Analytic evaluation and preliminary simulations reveal the generality, flexibility, and superior performance of AMOUR over competing alternatives

AMOUR - Generalized Multi-Carrier Transceivers for Blind CDMA Irrespective of Multipath / G. B., Giannakis; Z., Wang; A., Scaglione; Barbarossa, Sergio. - In: IEEE TRANSACTIONS ON COMMUNICATIONS. - ISSN 0090-6778. - (2000), pp. 2064-2076. [10.1109/26.891217]

AMOUR - Generalized Multi-Carrier Transceivers for Blind CDMA Irrespective of Multipath

BARBAROSSA, Sergio
2000

Abstract

Suppression of multiuser interference (MUI) and mitigation of multipath effects constitute major challenges in the design of third-generation wireless mobile systems. Most wide-band and multicarrier uplink code-division multiple-access (CDMA) schemes suppress MUI statistically in the presence of unknown multipath. For fading resistance, they all rely on transmit- or receive-diversity and multichannel equalization based on bandwidth-consuming training sequences or self-recovering techniques at the receiver end. Either way, they impose restrictive and difficult to check conditions on the finite-impulse response channel nulls. Relying on block-symbol spreading, we design a mutually-orthogonal usercode-receiver (AMOUR) system for quasi-synchronous blind CDMA that eliminates MUI deterministically and mitigates fading regardless of the unknown multipath and the adopted signal constellation. AMOUR converts a multiuser CDMA system into parallel single-user systems regardless of multipath and guarantees identifiability of users' symbols without restrictive conditions on channel nulls in both blind and nonblind setups. An alternative AMOUR design called Vandermonde-Lagrange AMOUR is derived to add flexibility in the code assignment procedure. Analytic evaluation and preliminary simulations reveal the generality, flexibility, and superior performance of AMOUR over competing alternatives
2000
digital communications; interference cancellation; performance analysis
01 Pubblicazione su rivista::01a Articolo in rivista
AMOUR - Generalized Multi-Carrier Transceivers for Blind CDMA Irrespective of Multipath / G. B., Giannakis; Z., Wang; A., Scaglione; Barbarossa, Sergio. - In: IEEE TRANSACTIONS ON COMMUNICATIONS. - ISSN 0090-6778. - (2000), pp. 2064-2076. [10.1109/26.891217]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/17638
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