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Traffic Offloading in Heterogeneous Networks With Energy Harvesting Personal Cells-Network Throughput and Energy Efficiency

机译:具有能量收集个人小区的异构网络中的流量卸载-网络吞吐量和能效

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摘要

This work develops a tractable model to analyze the performance of downlink heterogeneous cellular networks (HCNs) with both power-grid-connected base stations (PG-BSs) and energy harvesting small cell access points (EH-SAPs). Each EH-SAP forms a personal cell that is active (and is available to serve others) only when its own priority user requests service and its battery contains sufficient energy to transmit. By modeling the battery dynamics of an EH-SAP as a discrete-time Markov chain and by considering a practical power consumption model, the rate coverage, network throughput, and energy efficiency are derived as functions of the PG-BS and EH-SAP densities, transmission powers, cell association biases, and energy harvesting capabilities. Cell association biases control the traffic load among different tiers and transmission powers affect EH-SAPs’ probability of being active. Exact expressions of the performance metrics are first derived for the general multitier scenario and are then used to obtain approximate closed-form expressions for two-tier networks using the mean load approximation. The analytic results of the two-tier network provide valuable insights on the achievable performance and the choice of system parameters, and are further validated with numerical results.
机译:这项工作开发了一个易于处理的模型,以分析具有电源并网连接基站(PG-BS)和能量收集小蜂窝接入点(EH-SAP)的下行链路异构蜂窝网络(HCN)的性能。每个EH-SAP组成一个个人小区,只有当其自己的优先级用户请求服务且其电池包含足够的能量来传输时,该个人小区才处于活动状态(并可以为其他人服务)。通过将EH-SAP的电池动力学建模为离散时间马尔可夫链并考虑实际的功耗模型,得出速率覆盖率,网络吞吐量和能源效率是PG-BS和EH-SAP密度的函数,传输功率,小区关联偏差和能量收集功能。小区关联偏差控制着不同层之间的流量负载,而传输功率会影响EH-SAP活跃的可能性。首先为一般的多层方案导出性能指标的精确表达式,然后使用平均负载近似将其用于获得两层网络的近似封闭式表达式。两层网络的分析结果为可实现的性能和系统参数的选择提供了宝贵的见解,并用数值结果进一步进行了验证。

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