Ye Weikang, Zhao Lin, Luo Xuan, Guo Junxian, Liu Xiangjiang
College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou 310058, China.
College of Mechanical Engineering, Xinjiang Agricultural University, Urumqi 830052, China.
Sensors (Basel). 2023 Sep 15;23(18):7905. doi: 10.3390/s23187905.
As consumers demand ever-higher quality standards for agricultural products, the inspection of such goods has become an integral component of the agricultural production process. Unfortunately, traditional testing methods necessitate the deployment of numerous bulky machines and cannot accurately determine the quality of produce prior to harvest. In recent years, with the advancement of soft robot technology, stretchable electronic technology, and material science, integrating flexible plant wearable sensors on soft end-effectors has been considered an attractive solution to these problems. This paper critically reviews soft end-effectors, selecting the appropriate drive mode according to the challenges and application scenarios in agriculture: electrically driven, fluid power, and smart material actuators. In addition, a presentation of various sensors installed on soft end-effectors specifically designed for agricultural applications is provided. These sensors include strain, temperature, humidity, and chemical sensors. Lastly, an in-depth analysis is conducted on the significance of implementing soft end-effectors in agriculture as well as the potential opportunities and challenges that will arise in the future.
随着消费者对农产品质量标准的要求越来越高,此类商品的检验已成为农业生产过程中不可或缺的一部分。不幸的是,传统检测方法需要部署大量笨重的机器,并且无法在收获前准确测定农产品的质量。近年来,随着软机器人技术、可拉伸电子技术和材料科学的进步,将柔性植物可穿戴传感器集成到软末端执行器上被认为是解决这些问题的一个有吸引力的方案。本文对软末端执行器进行了批判性综述,根据农业中的挑战和应用场景选择合适的驱动模式:电动驱动、流体动力和智能材料致动器。此外,还介绍了安装在专门为农业应用设计的软末端执行器上的各种传感器。这些传感器包括应变、温度、湿度和化学传感器。最后,对在农业中应用软末端执行器的意义以及未来将出现的潜在机遇和挑战进行了深入分析。