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Interference Statistics and Capacity Analysis for Uplink Transmission in Two-Tier Small Cell Networks: A Geometric Probability Approach

2014/01/22 by Hina Tabassum, Zaher Dawy, Tabassum, Hina +6
Computer Science · Engineering · Mathematics · #Advanced MIMO Systems Optimization #Advanced Wireless Network Optimization #FOS: Computer and information sciences #FOS: Mathematics #Information Theory (cs.IT) #Networking and Internet Architecture (cs.NI) #Statistics Theory (math.ST) #Wireless Communication Networks Research #cs.IT #cs.NI #math.IT #math.ST #stat.TH

paper · pdf · doi:10.48550/arxiv.1401.5555

We have withdrawn the paper due to some limitations

openalex publication_date 2014/01/22 · arxiv created 2014/01/30 · arxiv updated 2014/01/31 · openalex created_date 2022/10/03 · openalex updated_date 2026/07/28

Abstract

Small cell networks are evolving as an economically viable solution to ameliorate the capacity and coverage of state-of-the-art wireless cellular systems. Nonetheless, the dense and unplanned deployment of the small cells (e.g., femtocells, picocells) with restricted user access significantly increases the impact of interference on the overall network performance. To this end, this paper presents a novel framework to derive the statistics of the interference considering dedicated and shared spectrum access for uplink transmissions in two-tier small cell networks such as the macrocell-femtocell networks. The derived expressions are validated by the Monte-Carlo simulations. Numerical results are generated to assess the feasibility of shared and dedicated spectrum access in femtocells under varying traffic load and spectral reuse scenarios.

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