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A protocooperation-based sleep-wake architecture for next generation green cellular access networks

机译:基于协议合作的下一代绿色蜂窝接入网的睡眠唤醒架构

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The rapidly increasing contribution towards global warming from the information communication technology (ICT) sector is a clear indication of the need for energy efficient green communication networks. For instance, in the case of cellular networks, over 80% of the total energy is consumed at the access network. On the other hand, incorporating self-sustainability and autonomy in its operation, control, and maintenance is significantly vital due to relatively larger sizes, higher complexities, and dynamic behaviors of future networks than those of current networks. In this paper, with the inspiration from the ecological principle of protocooperation, a novel energy efficient cellular access network architecture is proposed. With the adoption of the wake-up technology, base transceiver stations (BTSs) are made to protocooperate with each other to achieve higher energy efficiency within a cellular access network. Protocooperation is one of the ecological interactions by which two interacting species gain benefit through cooperation. However, this type of cooperation is not compulsory for the survival of any of these two species. To accomplish less energy consumption and higher self-sustainability at the access network, BTSs cooperatively and dynamically switch between active and sleep modes depending on the current traffic situation. The extent of self-sustainability incorporated in the proposed architecture is studied and analyzed. As per the result, our proposed architecture and algorithm are capable of achieving a significant amount of energy saving, which is an important step towards a self-sustainable green communication system.
机译:信息通信技术(ICT)部门对全球变暖的快速增长的贡献清楚地表明了对节能绿色通信网络的需求。例如,在蜂窝网络的情况下,接入网络消耗了总能量的80%以上。另一方面,由于未来网络的规模,复杂性和动态行为都比当前网络要大,因此在其操作,控制和维护中纳入自我可持续性和自主性至关重要。本文在协议合作的生态学原理的启发下,提出了一种新型的节能蜂窝接入网架构。随着唤醒技术的采用,使基站收发信机(BTS)彼此进行协议合作,以在蜂窝接入网络内实现更高的能源效率。原始合作是生态相互作用之一,两个相互作用的物种通过这种相互作用而获得利益。但是,对于这两个物种中的任何一个物种的生存,这种合作都不是强制性的。为了在接入网络上实现更少的能耗和更高的自我可持续性,BTS会根据当前的流量情况,在动态模式和睡眠模式之间进行协作和动态切换。研究并分析了提出的体系结构中包含的自我可持续性的程度。根据结果​​,我们提出的体系结构和算法能够实现大量的节能,这是朝着自我可持续的绿色通信系统迈出的重要一步。

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