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Power Consumption Modeling in Integrated Optical-Wireless Access Network

机译:集成光学无线接入网中的功耗建模

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Access segment of both optical and wireless networks are well known for their domination over total network power consumption. Therefore, the study on energy consumption particularly in the integrated optical-wireless access network is crucial as the energy consumption issue is increasingly vital nowadays. In this paper, the total power consumption and energy efficiency of integrated Gigabit Passive Optical Network (GPON) and two different wireless technologies namely, Worldwide Interoperability for Microwave Access (WiMAX) and Long-Term Evolution (LTE) is evaluated. A semi-analytical power consumption model is employed and applied in the simulation model for the energy performance assessment. Also, various parameters that may affect the energy performance such as split ratio, femtocell base station (FBS) range, broadcast factor and modulation scheme are analyzed. It was found that, GPON-LTE has the worst energy efficiency performance compared to GPON-WiMAX even though it offers the highest data rates.
机译:光网络和无线网络的接入段以其在总网络功耗上的优势而著称。因此,由于当今的能源消耗问题变得越来越重要,因此对能源消耗的研究尤其是在集成的无线接入网络中至关重要。本文评估了集成千兆无源光网络(GPON)和两种不同的无线技术,即微波接入全球互通性(WiMAX)和长期演进(LTE)的总功耗和能效。采用半分析功耗模型,并将其应用于仿真模型中以进行能源绩效评估。此外,分析了可能影响能源性能的各种参数,例如分流比,毫微微小区基站(FBS)范围,广播因子和调制方案。结果发现,即使GPON-LTE提供最高的数据速率,其能效性能也比GPON-WiMAX差。

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