面向停电感知可持续蜂窝网络的分布式能源银行优化

IF 3 3区 计算机科学 Q2 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Ashutosh Balakrishnan;Swades De;Li-Chun Wang
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引用次数: 0

摘要

电网连接和太阳能基站(BSs)作为分布式能源正日益成为移动运营商的流行解决方案。由于能量收获和BS流量的时空变化,这些网络具有双重随机性。因此,准确、高效地估计绿色能源网络中的停电情况是一项具有挑战性的任务。本文提出了一种基于协同能量转移的分布式能源银行策略,以缓解绿色能源中断和设计能源可持续网络。首先,我们开发了低复杂度的马尔可夫框架,分别估算了独立BS无能源合作(WEC)和多BS能源合作(EC)环境下的绿色能源中断。对于WEC系统,我们提出了一个计算效率高的三状态离散时间马尔可夫统计模型,而多bs EC框架则是一个两状态马尔可夫模型。能源中断作为资本支出(CAPEX)的函数进行了研究,从服务提供商的角度体现了工程洞察力。随后,对于EC框架,我们通过联合优化BS集群规模和单个BS上的太阳能供应来制定CAPEX优化问题。我们的研究结果表明,拟议的EC框架显著缓解了绿色能源中断,提供了计算效率的提高和资本支出的节省,超过了最先进的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed Energy Bank Optimization Towards Outage Aware Sustainable Cellular Networks
Grid connected and solar powered base stations (BSs) acting as distributed energy sources are increasingly becoming a popular solution to mobile operators. These networks experience double stochasticity due to the space-time variations in energy harvest and BS traffic. Hence, accurate and efficient green energy outage estimation in such networks is a challenging task. In this work, we propose a complutationally efficient cooperative energy transfer based distributed energy bank strategy to alleviate green energy outage and design energy sustainable networks. We first develop low-complexity Markovian frameworks to estimate green energy outage in a standalone BS without energy cooperation (WEC) and a multi-BS energy-cooperative (EC) setting, respectively. For the WEC system, we present a computationally efficient three-state discrete time Markovian statistical model, while the multi-BS EC framework is characterized by a two-state Markov model. The energy outage is studied as a function of capital expenditure (CAPEX), manifesting engineering insights from a service provider's perspective. Subsequently for the EC framework, we formulate a CAPEX optimization problem by jointly optimizing the BS cluster size and solar provisioning on individual BSs. Our results demonstrate that the proposed EC framework alleviates the green energy outage significantly, providing computational efficiency gains and CAPEX savings over the state-of-art approaches.
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来源期刊
IEEE Transactions on Sustainable Computing
IEEE Transactions on Sustainable Computing Mathematics-Control and Optimization
CiteScore
7.70
自引率
2.60%
发文量
54
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