20062006 IEEE International Conference on CommunicationsRequires access

Space-Time Convolutional Spreading CDMA Systems over MISO Multipath Rayleigh Fading Channels

Dianjun Chen, Nalin S. Weerasinghe, Takeshi Hashimoto

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Abstract

We propose a transmit diversity CDMA scheme which is a combination of convolutional spreading (CS) and space-time block coding over multiple input single output (MISO) multipath Rayleigh fading channels. Using orthogonal space-time block coded CS, we can reduce the communication problem over the multiple-input and multiuser channel to relatively simple communication problem over a single-antenna and single-user system. Similar to the scheme in [5], full transmit diversity gain is achieved, and path diversity gain is achieved as well. For quasiorthogonal space-time block coded CS, we also show that signal-constellation rotation is adopted [16] to achieved the full transmit diversity and path diversity gain.

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We propose a transmit diversity CDMA scheme which is a combination of convolutional spreading (CS) and space-time block coding over multiple input single output (MISO) multipath Rayleigh fading channels. Using orthogonal space-time block coded CS, we can reduce the communication problem over the multiple-input and multiuser channel to relatively simple communication problem over a single-antenna and single-user system. Similar to the scheme in [5], full transmit diversity gain is achieved, and path diversity gain is achieved as well. For quasiorthogonal space-time block coded CS, we also show that signal-constellation rotation is adopted [16] to achieved the full transmit diversity and path diversity gain.

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Available abstract

We propose a transmit diversity CDMA scheme which is a combination of convolutional spreading (CS) and space-time block coding over multiple input single output (MISO) multipath Rayleigh fading channels. Using orthogonal space-time block coded CS, we can reduce the communication problem over the multiple-input and multiuser channel to relatively simple communication problem over a single-antenna and single-user system. Similar to the scheme in [5], full transmit diversity gain is achieved, and path diversity gain is achieved as well. For quasiorthogonal space-time block coded CS, we also show that signal-constellation rotation is adopted [16] to achieved the full transmit diversity and path diversity gain.

Key concepts: Transmit diversity, Diversity gain, Computer science, Rayleigh fading, Fading, Antenna diversity, Multipath propagation, Diversity scheme

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