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Review and analysis of energy harvesting technologies in roadway transportation

机译:巷道运输能源收集技术的回顾与分析

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摘要

The adjustment of energy supply for roadway transportation from traditional fossil-dominated energy to sustainable energy is vital for maintaining energy security and constructing a smart and environment friendly city. Energy harvesting technology as one of the most promising techniques for renewable energy supply was developed in roadway successfully. However, some limitations still exist to be investigated further, including relatively low energy output, poor compatibility with whole structure, long-term durability. We present a comprehensive analysis of this technology to understand the state-ofthe-art progress and required future works for energy harvesting technologies in roadway transportation. Two types of energy harvesting technologies for roadway transportation are categorized and reviewed in this paper, namely energy harvesting from the road and from vehicles. The principles, research focus and applications, existing problems, and further suggestions for each energy harvesting technology are elaborated in detail. In addition, the different energy harvesting technologies are compared in terms of energy output, cost, cost-benefit ratio, and technology readiness level to demonstrate the most probable applications. Moreover, future works on energy harvesting technologies are recommended. According to the current energy output, the most probable future applications are PV cell for driving, mechanical energy for sensors, SC system and GEH for special situations. Multiple technology hybridization and multifunctionality materials, local condition-based and demand-oriented design and overall coordination are three directions should be focused in the future. (C) 2020 Published by Elsevier Ltd.
机译:从传统化石统治能源到可持续能源的巷道运输能源供应对维护能源安全和建造智能环境友好友好城市的能源供应至关重要。能源收集技术作为可再生能源供应最有前途的技术之一,成功地发展道路。然而,仍有一些限制仍然存在进一步调查,包括相对较低的能量输出,与整个结构的较差差,长期耐久性。我们对这项技术进行了全面的分析,以了解艺术状态的进步和所需的未来工程,为道路运输中的能源收集技术。本文分类和审查了两种类型的巷道运输能源收集技术,即从道路和车辆中收集的能量收获。详细阐述了每个能量收集技术的原则,研究重点和应用,存在的问题和进一步的建议。此外,在能量输出,成本,成本效益比和技术准备水平方面比较了不同的能量收集技术,以展示最可能的应用。此外,建议使用未来的能源收集技术。根据当前的能量输出,最可能的未来应用是用于驱动的​​光伏电池,用于传感器,SC系统和特殊情况的机械能量。多种技术杂交和多功能材料,当地条件为基础和需求为导向的设计和整体协调是未来应专注于三个方向。 (c)2020由elestvier有限公司发布

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