EI、Scopus 收录
中文核心期刊
邹鸿翔, 苏昌胜, 赵林川, 张文明, 魏克湘. 波浪能量采集及自供能海洋无人机电系统研究进展. 力学学报, 2023, 55(10): 2115-2131. DOI: 10.6052/0459-1879-23-334
引用本文: 邹鸿翔, 苏昌胜, 赵林川, 张文明, 魏克湘. 波浪能量采集及自供能海洋无人机电系统研究进展. 力学学报, 2023, 55(10): 2115-2131. DOI: 10.6052/0459-1879-23-334
Zou Hongxiang, Su Changsheng, Zhao Linchuan, Zhang Wenming, Wei Kexiang. Research progress of wave energy harvesting and self-powered marine unmanned electromechanical system. Chinese Journal of Theoretical and Applied Mechanics, 2023, 55(10): 2115-2131. DOI: 10.6052/0459-1879-23-334
Citation: Zou Hongxiang, Su Changsheng, Zhao Linchuan, Zhang Wenming, Wei Kexiang. Research progress of wave energy harvesting and self-powered marine unmanned electromechanical system. Chinese Journal of Theoretical and Applied Mechanics, 2023, 55(10): 2115-2131. DOI: 10.6052/0459-1879-23-334

波浪能量采集及自供能海洋无人机电系统研究进展

RESEARCH PROGRESS OF WAVE ENERGY HARVESTING AND SELF-POWERED MARINE UNMANNED ELECTROMECHANICAL SYSTEM

  • 摘要: 海洋环境传感器、航行器/机器人等无人机电系统可用于海洋军事侦察、资源探测、生态监测、海洋大型设备设施状态监测等, 有益于海洋生态保护、海洋经济发展和海洋权益维护. 长期有效供能是制约海洋无人机电系统在辽阔海域作业的瓶颈难题. 电池电量有限且污染环境, 线缆供电成本高且限制了海洋机电系统的机动性. 波浪能是最丰富并且可以被大规模利用的可再生能源之一. 将波浪能量转换为电能, 可以实现海洋环境机电系统的自供能传感、控制与驱动, 具备可持续、灵活便捷和节能环保的优势, 有望破解海洋无人机电系统供能瓶颈难题. 此外, 随着化石能源面临着枯竭和严重的环境问题, 开发海洋能源能够缓解能源危机、减少环境污染并促进经济发展. 文章全面论述波浪能量采集、基于波浪能量采集的自供能海洋无人机电系统和海洋无人机电系统的研究进展, 讨论目前自供能海洋无人机电系统面临的关键挑战并进行展望, 为解决海洋无人机电系统长期有效供能难题提供多维度参考, 推动自供能传感、控制与驱动等技术的发展与应用, 助力海洋无人机电系统应用于深海远海.

     

    Abstract: Marine unmanned electromechanical systems such as marine environment sensors and vehicle/robots can be used for marine military reconnaissance, resource exploration, ecological monitoring, and status monitoring of large marine equipment and facilities, which is beneficial to marine ecological protection, marine economic development and protection of marine rights and interests. Long term effective energy supply is a bottleneck problem that restricts the operation of marine unmanned electromechanical systems in vast sea areas. The battery has limited power and pollutes the environment, while cable power supply not only has high costs but also limits the mobility of marine unmanned electromechanical systems. Wave energy is one of the most abundant renewable energy sources. The conversion of wave energy into electrical energy can be used for self-powered sensing, control, and driving of marine environmental electromechanical systems. It has the advantages of sustainability, flexibility, convenience, energy conservation, and environmental protection, and is expected to break the energy supply bottleneck of marine unmanned electromechanical systems. In addition, as fossil fuels face depletion and serious environmental problems, the development of marine energy can alleviate energy crises, reduce environmental pollution, and promote economic development. This paper comprehensively discusses the research progress of wave energy harvesting, self-powered marine unmanned electromechanical system based on wave energy harvesting and marine unmanned electromechanical system, discusses the key challenges and looks forward to it, provides a multi-dimensional reference for solving the long-term effective energy supply problem of marine unmanned electromechanical system, promotes the development and application of self-powered sensing, control and drive technologies, and helps the application of marine unmanned electromechanical systems in far-reaching sea areas.

     

/

返回文章
返回