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Development of a Remote-Controlled Drone System by Using Only Eye Movements: Design of a Control Screen Considering Operability and Microsaccades

机译:仅使用眼睛运动开发远程控制的无人机系统:考虑可操作性和MicroSCADES的控制屏幕设计

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In recent years, the number of bedridden patients, including amyotrophic lateral sclerosis (ALS) patients, has been increasing with the aging of the population, owing to advances in medical and long-term care technology. Eye movements are physical functions that are relatively difficult to be affected, even if the symptoms of ALS progress. Focusing on this point, in this paper, in order to improve the quality of life (QOL) of bedridden patients, including ALS patients, we propose a drone system connected to the Internet that can be remotely controlled using only their eyes. In order to control the drone by using only their eyes, a control screen and an eye-tracking device were used in this system. By using this system, for example, the patients in New York can operate the drone in Kyoto using only their eyes, enjoy the scenery, and talk with people in Kyoto. In this drone system, since a time delay could occur depending on the Internet usage environment, agile operation is required for remotely controlling the drone. Therefore, we introduce the design of the control screen focused on remote control operability and human eye movements (microsaccades). Furthermore, considering the widespread future use of this system, it is desirable to use a commercial drone. Accordingly, we describe the design of a joystick control device to physically control the joysticks of various drone controllers. Finally, we present experimental results to verify the effectiveness of this system, including the control screen and the joystick control device.
机译:近年来,由于医疗和长期护理技术的进步,包括肌萎缩侧索硬化症(ALS)患者在内的卧床患者数量随着人口老龄化而增加。眼球运动是一种身体机能,即使ALS的症状有所进展,也相对难以受到影响。围绕这一点,在本文中,为了提高卧床不起患者(包括ALS患者)的生活质量(QOL),我们提出了一种连接到互联网的无人机系统,该系统可以仅用他们的眼睛进行远程控制。为了只用眼睛控制无人机,该系统使用了一个控制屏幕和一个眼睛跟踪装置。例如,通过使用这个系统,纽约的患者可以只用眼睛在京都操作无人机,欣赏风景,与京都的人们交谈。在这种无人机系统中,由于根据互联网使用环境可能会出现时间延迟,因此远程控制无人机需要灵活操作。因此,我们将重点介绍遥控操作性和人眼运动(microsaccades)控制屏幕的设计。此外,考虑到该系统未来的广泛使用,最好使用商用无人机。因此,我们描述了操纵杆控制装置的设计,以实际控制各种无人机控制器的操纵杆。最后,我们给出了实验结果来验证该系统的有效性,包括控制屏幕和操纵杆控制装置。

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