2002Unpublished venueRequires access

Performance analysis and simulation of code division multiple access (CDMA) cellular digital networks

Zhicai Zhang, Y.-J. Liu

Open publisher page 4 citations

Abstract

The performance of a code division multiple access (CDMA) spreading ALOHA access protocol, which could be applied to cellular digital network and personal communications services, is investigated. Exact analysis for such a system access protocol is extremely difficult. By using a Markov model, it is possible to derive upper and lower bounds of the throughput of the underlying system. Time-driven simulation is performed to investigate the tightness of the bounds. The results indicate that the upper bound is reasonably tight. Numerical results show that, unlike the conventional ALOHA system, the CDMA spreading mini-slotted ALOHA system provides better delay and throughput performance than the CDMA spreading slotted ALOHA system.

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What this paper is about

The performance of a code division multiple access (CDMA) spreading ALOHA access protocol, which could be applied to cellular digital network and personal communications services, is investigated. Exact analysis for such a system access protocol is extremely difficult. By using a Markov model, it is possible to derive upper and lower bounds of the throughput of the underlying system. Time-driven simulation is performed to investigate the tightness of the bounds. The results indicate that the upper bound is reasonably tight. Numerical results show that, unlike the conventional ALOHA system, the CDMA spreading mini-slotted ALOHA system provides better delay and throughput performance than the CDMA spreading slotted ALOHA system.

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OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The performance of a code division multiple access (CDMA) spreading ALOHA access protocol, which could be applied to cellular digital network and personal communications services, is investigated. Exact analysis for such a system access protocol is extremely difficult. By using a Markov model, it is possible to derive upper and lower bounds of the throughput of the underlying system. Time-driven simulation is performed to investigate the tightness of the bounds. The results indicate that the upper bound is reasonably tight. Numerical results show that, unlike the conventional ALOHA system, the CDMA spreading mini-slotted ALOHA system provides better delay and throughput performance than the CDMA spreading slotted ALOHA system.

Key concepts: Aloha, Code division multiple access, Computer science, Channel access method, Throughput, Computer network, Time division multiple access, Upper and lower bounds

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