基于增强现实技术的风车故障检测

Jayabala Pradeep, P. Arunagiri, M. Harikrishnan, L. Martin
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引用次数: 0

摘要

风能是一种非传统的、可持续的可再生资源,它通过风力涡轮机叶片的旋转产生风力冲击,从而提供电能。为了确保这种资源的可持续性,风力涡轮机的维护是必不可少的。将新兴技术结合到繁琐的过程中,可以提高系统性能的质量。增强现实技术将3D数字内容增强到现实世界之上,可以通过提供用户友好的环境来利用风力涡轮机维护的繁琐过程。利用增强现实技术可以深入了解风力涡轮机特定部件出现的问题,从而减轻现场工作人员的复杂性。目标是创建一个增强现实环境,以监测风力涡轮机的正常功能并准确检测故障。利用AR可以帮助提供更好的维护服务,从而增加风力涡轮机的使用寿命。
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Fault Detection in Windmills Using Augmented Reality
Wind energy, being a non-conventional and sustainable renewable resource, provides electrical energy through the rotation of the blades of a wind turbine caused by wind impact. To ensure the sustainability of this resource, maintenance of the wind turbines is essential. The incorporation of emerging technologies into the tedious processes has enabled quality improvement in the performance of systems. Augmented reality, which enhances the 3D digital content over the real world, may be used to leverage the tedious process of wind turbine maintenance by providing a user-friendly environment. AR utilization provides great insights into the problems occurring in specific parts of a wind turbine, thereby easing out the complexity of field workers. The objective is to create an augmented reality environment to monitor the proper functioning and detect the faultiness in a wind turbine with accuracy. AR utilization can help facilitate better maintenance service, thereby increasing the life of a wind turbine.
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来源期刊
International Journal of Sensors, Wireless Communications and Control
International Journal of Sensors, Wireless Communications and Control Engineering-Electrical and Electronic Engineering
CiteScore
2.20
自引率
0.00%
发文量
53
期刊介绍: International Journal of Sensors, Wireless Communications and Control publishes timely research articles, full-length/ mini reviews and communications on these three strongly related areas, with emphasis on networked control systems whose sensors are interconnected via wireless communication networks. The emergence of high speed wireless network technologies allows a cluster of devices to be linked together economically to form a distributed system. Wireless communication is playing an increasingly important role in such distributed systems. Transmitting sensor measurements and control commands over wireless links allows rapid deployment, flexible installation, fully mobile operation and prevents the cable wear and tear problem in industrial automation, healthcare and environmental assessment. Wireless networked systems has raised and continues to raise fundamental challenges in the fields of science, engineering and industrial applications, hence, more new modelling techniques, problem formulations and solutions are required.
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