Heterogeneous network (HetNet) is a specified cellular platform to tackle the rapidly growing anticipated data traffic. From communications perspective, data loads can be mapped to energy loads that are generally placed on the operator networks. Meanwhile, renewable energy aided networks offer to curtail fossil fuel consumption, so to reduce environmental pollution. This paper proposes a renewable energy based power supply architecture for off-grid HetNet using a novel energy sharing model. Solar photovoltaic (PV) along with sufficient energy storage devices are used for each macro, micro, pico, or femto base station (BS). Additionally, biomass generator (BG) is used for macro and micro BSs. The collocated macro and micro BSs are connected through end-to-end resistive lines. A novel weighted proportional-fair resource-scheduling algorithm with sleep mechanisms is proposed for non-real time (NRT) applications by trading-off the power consumption and communication delays. Furthermore, the proposed algorithm with extended discontinuous reception (eDRX) and power saving mode (PSM) for narrowband internet of things (IoT) applications extends battery lifetime for IoT devices. HOMER optimization software is used to perform optimal system architecture, economic, and carbon footprint analyses while Monte-Carlo simulation tool is used for evaluating the throughput and energy efficiency performances. The proposed algorithms are valid for the practical data of the rural areas. We demonstrate the proposed power supply architecture is energy-efficient, cost-effective, reliable, and eco-friendly.
翻译:热电网(HetNet)是一个特定的蜂窝平台,用于应对快速增长的预期数据流量。从通信的角度来看,数据负荷可以映射到通常由运营商网络承担的能源负荷。与此同时,可再生能源辅助网络可以减少化石燃料消耗,从而减少环境污染。本文建议使用一个新的能源共享模式为离网热网(Netnet)建立一个基于可再生能源的电力供应结构,使用新型能源共享模式;太阳能光伏(PV)以及足够的能源储存装置,用于每个宏观、微观、皮科或Femto基站。此外,生物量友好型发电机(BG)用于宏观和微型BS。同时,混合配置的宏观和微型BS通过终端至终端阻力线路连接起来。一个新的加权公平资源配置算法与睡眠机制相结合,通过交换电力消耗和通信延迟。此外,拟议用于狭窄频接收(eDRX)和节能保存模式(PSMSM)的计算法,用于宏观和微型BS(IOT)应用程序延长电池使用寿命,同时对IO-S-CSimimal 系统进行最佳成本分析。Mestal-Alsimal 系统进行最佳能源成本分析。使用软软件。