从自我可持续的绿色移动网络到增强与智能电网的互动

Daniela Renga, M. Meo
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引用次数: 4

摘要

由于移动通信流量的惊人增长,移动网络运营商(MNOs)面临着巨大的电力供应成本。可再生能源为基站供电是一种很有前途的解决方案,但其间歇性可能会影响服务的连续性和系统的自给自足。此外,在以智能电网为主导的新能源市场中,移动运营商在需求响应(DR)框架下出现了新的潜力,因为他们可以根据SG请求动态调节移动网络的能源需求,从而获得可观的回报。本文提出了各种随机模型,以可靠、准确地表征绿色移动网络的可再生能源生产和运行,并分析了参数量化对模型性能的影响。研究了可再生能源系统的尺寸,权衡了成本节约和可行性约束,并评估了按需资源(RoD)策略的影响,这些策略允许实现40%以上的成本降低。最后,通过利用RoD和WiFi卸载技术,设计了各种能源管理政策,以增强绿色移动网络与DR框架下SG的互动,从而完全消除能源账单,甚至获得正收益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From Self-Sustainable Green Mobile Networks to Enhanced Interaction with the Smart Grid
Due to the staggering increase of mobile traffic, Mobile Network Operators (MNOs) are facing considerable operational cost due to power supply. Renewable Energy (RE) sources to power Base Stations (BSs) represent a promising solution to lower the energy bill, but their intermittent nature may affect the service continuity and the system self-sufficiency. Furthermore, in the new energy market dominated by the Smart Grid, new potentialities arise for MNOs in a Demand Response (DR) framework, since they can dynamically modulate the mobile network energy demand in accordance with SG requests, thus obtaining significant rewards. This work proposes various stochastic models to reliably and accurately characterize the RE production and the operation of a green mobile network, also analyzing the impact of parameter quantization on the model performance. The RE system dimensioning is investigated, trading off cost saving and feasibility constraints, and evaluating the impact of Resource on Demand (RoD) strategies, that allow to achieve more than 40% cost reduction. Finally, by exploiting RoD and WiFi offloading techniques, various energy management policies are designed to enhance the interaction of a green mobile network with the SG in a DR framework, leading to fully erase the energy bill and even gain positive revenues.
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