Teletraffic Performance of a Hierarchical Microcell/Macrocell PCS Architecture
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概要
- 論文の詳細を見る
In this work, teletraffic performance of a hierarchically overlaid microcell and macrocell structure in a PCS environment is presented. In this system, each group of N microcellsis overlaid exclusively by one macrocell. The microcell tier is dedicated to low-mobility users and the macrocell tier is dedicated to both high-mobility users and overflowed low-mobility users from microcells. In general, forced termination is considerably undesirable from the user's viewpoint compared with the occurrence of call blocking. Therefore, handoff calls are given access priority to channels at the macrocell tier. As a priority scheme at the macrocell tier, a partial buffer sharing (PBS) scheme is proposed. As performance measures, call blocking probability, forced termination probability, and carried traffic are derived. Effects of the sizes of a macrocell and of hierarchical cell structure on system performance are discussed. The performance of the PBS scheme is also compared with those of the no priority scheme (NPS) and the first-come-first-service (FCFS) queueing scheme. Numerical results show that the PBS scheme gives the best performance for handoff traffic among the three schemes.
- 社団法人電子情報通信学会の論文
- 2001-05-01
著者
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Kim Byung
Information Communication Department Chungnam National University
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YOON Chong
Department of Materials Science & Engineering, Hanyang University
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Shin Byung-cheol
Multimedia Communication Research Laboratory School Of Electrical And Electrics Engineering Chungbuk
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Shin Byung-cheol
Multimedia Communication Laboratory Department Of Electrical Engineering Korea Advanced Institute Of
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JANG Jaeshin
Telecommunication R&D Center Samsung Electronics Co.
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YOO Seung
Graduate School of Information and Communication Technology, Ajou University
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Yoon Chong
Department Of Communication And Information Hankuk Aviation University
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Yoo Seung
Graduate School Of Information And Communication Technology Ajou University
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Jang Jaeshin
Telecommunication R&d Center Samsung Electronics Co.
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