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[IEEE 2019 Systems of Signal Synchronization, Generating and Processing in Telecommunications (SYNCHROINFO) - Russia (2019.7.1-2019.7.3)] 2019 Systems of Signal Synchronization, Generating and Processing in Telecommunications (SYNCHROINFO) - Experimental Researches of the Macrobend Effect of Optical Fibers on Brillouin Traces

DOI:10.1109/synchroinfo.2019.8814105 出版年份:2019 更新时间:2025-09-19 17:13:59
摘要: The network densi?cation of small cells (SCs) is a promising way to cope with the explosive growth of future traf?c demands in 5G networks. However, the overall power consumption and the backhaul limitation of the network have become the key factors affecting the network performance and users’ quality-of-experience, which have great importance in 5G wireless networks. Due to the complexity of 5G networks and the variety of user behaviors, the combination of software-de?ned networks and content delivery strategy could be a more ef?cient way to manage such networks. In this paper, a cache-enabled wireless heterogeneous network with the control-plane (C-plane) and user-plane (U -plane) split is proposed, where the macro cell and SCs with different cache abilities are overlaid and cooperated together in the backhaul scenario. Using an evaluation tool composed of stochastic processes and classical power consumption model, key performance indicators, e.g., the coverage probability, throughput, and energy ef?ciency (EE), are derived as closed-form expressions or the functions of the signal-to-interference-plus-noise ratio threshold, path loss exponent, transmission power and density of macro and SCs, cache ability, ?le popularity, and backhaul capacity. Fundamental trade-offs are illustrated between EE and transmission power, EE and SC density, as well as the throughput and density of SCs. Numerical results show that the proposed cache-enabled software-de?ned networks have much higher throughput and improved EE than current LTE networks, which shows a promising solution for future cellular networks.
作者: JIAXIN ZHANG,XING ZHANG,WENBO WANG
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Investigating the combination of software-defined networks and content delivery strategy to manage the complexity and variety of user behaviors in 5G networks, focusing on improving network performance and users' quality-of-experience under backhaul limitations.

The proposed cache-enabled software-defined network architecture significantly improves throughput and energy efficiency compared to current LTE networks, offering a viable solution for future 5G networks. Fundamental trade-offs between energy efficiency and transmission power, SC density, and throughput are identified, providing insights for network optimization.

The study focuses on backhaul limited scenarios and assumes perfect content popularity, which may not capture all real-world complexities. The impact of dynamic user behaviors and varying network conditions over time is not fully explored.

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