Department of Agricultural Sciences, University of Sassari, Viale Italia 39A, 07100, Sassari, Italy.
Sci Rep. 2022 Sep 21;12(1):15729. doi: 10.1038/s41598-022-20154-2.
Smart glasses for augmented reality are digital technology under investigation in the agricultural sector. The potential of augmented reality was underlined, in some scientific contributions, as a support tool for farmers' activities and for the decision-making process. One of the most practical applications studied for augmented reality was in maintenance operations, where the use of smart glasses showed high capability. This work focuses on the evaluation of the performance and applicability of smart glasses with a video see-through display system and testing the device's available functions in agricultural frameworks. In addition, an augmented assistance scenario describing the main steps involved in the functioning of the maintenance operation was developed for milking machine inspection. The audio-video quality, battery life, detection capabilities of markers, and voice control interaction system were evaluated. The results showed the capabilities of smart glasses to reach augmented information from a long distance in a short time interval and to transmit audio and video with a high level of detail, allowing discrimination of small objects during remote assistance with reduced delay. The built maintenance scenario represents an example of augmented reality digital assistance application in the inspection and maintenance of the milking machine. The device performance and the proposed maintenance scenario underline the potential that augmented reality could have in the agricultural sector to assist and guide both farmers and technicians to timely problem solving. This solution fits into the agriculture 4.0 perspective, which is increasingly focused on digital transformation to improve farms' efficiency and sustainability.
智能增强现实眼镜是农业领域正在研究的数字技术。一些科学文献强调了增强现实的潜力,认为它是农民活动和决策过程的支持工具。增强现实最实用的应用之一是在维护操作中,智能眼镜在这方面表现出了很高的能力。这项工作侧重于评估具有视频透视显示系统的智能眼镜的性能和适用性,并测试该设备在农业框架中的可用功能。此外,还开发了一个增强辅助场景,描述了在挤奶机检查过程中维护操作所涉及的主要步骤。评估了音频-视频质量、电池寿命、标记物的检测能力以及语音控制交互系统。结果表明,智能眼镜能够在短时间间隔内从远距离获取增强信息,并以高细节水平传输音频和视频,从而允许在远程协助中区分小物体,延迟时间较短。构建的维护场景代表了在挤奶机检查和维护中应用增强现实数字辅助的一个示例。设备性能和提出的维护场景强调了增强现实在农业领域的潜力,可以帮助和指导农民和技术人员及时解决问题。该解决方案符合农业 4.0 的观点,该观点越来越注重数字化转型,以提高农场的效率和可持续性。