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Modeling and Analysis of Energy Harvesting and Smart Grid-Powered Wireless Communication Networks: A Contemporary Survey

机译:能量收集和智能电网供电的建模与分析无线通信网络:当代调查

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The advancements in smart power grid and the advocation of “green communications” have inspired the wireless communication networks to harness energy from ambient environments and operate in an energy-efficient manner for economic and ecological benefits. This article presents a contemporary review of recent breakthroughs on the utilization, redistribution, trading and planning of energy harvested in future wireless networks interoperating with smart grids. This article starts with classical models of renewable energy harvesting technologies. We embark on constrained operation and optimization of different energy harvesting wireless systems, such as point-to-point, multipoint-to-point, multipoint-to-multipoint, multi-hop, and multi-cell systems. We also review wireless power and information transfer technologies which provide a special implementation of energy harvesting wireless communications. A significant part of the article is devoted to the redistribution of redundant (unused) energy harvested within cellular networks, the energy planning under dynamic pricing when smart grids are in place, and two-way energy trading between cellular networks and smart grids. Applications of different optimization tools, such as convex optimization, Lagrangian dual-based method, subgradient method, and Lyapunov-based online optimization, are compared. This article also collates the potential applications of energy harvesting techniques in emerging (or upcoming) 5G/B5G communication systems. It is revealed that an effective redistribution and two-way trading of energy can significantly reduce the electricity bills of wireless service providers and decrease the consumption of brown energy. A list of interesting research directions are provided, requiring further investigation.
机译:智能电网的进步和“绿色通信”的倡导使无线通信网络从环境环境中利用能量,以节能的经济和生态效益运行。本文提出了当代回顾近期利用,再分配,贸易和规划在与智能电网互操作的未来无线网络中收获的能源的利用率,再分配,贸易和规划的突破。本文始于可再生能源收集技术的经典模型。我们踏上不同能量收集无线系统的受限操作和优化,例如点对点,多点对点,多点对多点,多跳和多小区系统。我们还审查提供无线电力和信息传输技术,该技术提供了能量收集无线通信的特殊实施。该物品的一部分致力于在蜂窝网络中收获的冗余(未使用)能量的重新分配,当智能电网到位时动态定价的能量规划,蜂窝网络和智能电网之间的双向能源交易。比较了不同优化工具的应用,如凸优化,拉格朗日双基方法,子缩放方法和基于Lyapunov的在线优化。本文还在新兴(或即将到来)5G / B5G通信系统中,整理能量收集技术的潜在应用。据透露,有效的再分配和能源的双向交易可以大大减少无线服务提供商的电费,并降低棕色能量的消耗。提供有趣的研究方向列表,需要进一步调查。

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