How Subtle Can It Get?: A Trimodal Study of Ring-sized Interfaces for One-Handed Drone Control
Yui-Pan Yau, Lik Hang Lee, Zheng Li, Tristan Braud, Yi-Hsuan Ho, Pan Hui
Abstract
Flying drones have become common objects in our daily lives, serving a multitude of purposes. Many of these purposes involve outdoor scenarios where the user combines drone control with another activity. Traditional interaction methods rely on physical or virtual joysticks that occupy both hands, thus restricting drone usability. In this paper, we investigate one-handed human-to-drone-interaction by leveraging three modalities: force, touch, and IMU. After prototyping three different combinations of these modalities on a smartphone, we evaluate them against the current commercial standard through two user experiments. These experiments help us to find the combination of modalities that strikes a compromise between user performance, perceived task load, wrist rotation, and interaction area size. Accordingly, we select a method that achieves faster task completion times than the two-handed commercial baseline by 16.54% with the merits of subtle user behaviours inside a small-size ring-form device and implements this method within the ring-form device. The last experiment involving 12 participants shows that thanks to its small size and weight, the ring device displays better performance than the same method implemented on a mobile phone. Furthermore, users unanimously found the device useful for controlling a drone in mobile scenarios (AVG = 3.92/5), easy to use (AVG = 3.58/5) and easy to learn (AVG = 3.58/5). Our findings give significant design clues in search of subtle and effective interaction through finger augmentation devices with drone control. The users with our prototypical system and a multi-modal on-finger device can control a drone with subtle wrist rotation (pitch gestures: 43.24° amplitude and roll gestures: 46.35° amplitude) and unnoticeable thumb presses within a miniature-sized area of (1.08 * 0.61 cm2).
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get 5d2719c0-715f-4cf5-b003-d15c890706d6Cited by top-tier papers7
- A2W: Context-Aware Recommendation System for Mobile Augmented Reality Web BrowserKit-Yung Lam, Lik Hang Lee, Pan HuiACM MM 2021 · 38 citations
- GestuRING: A Web-based Tool for Designing Gesture Input with Rings, Ring-Like, and Ring-Ready DevicesRadu-Daniel Vatavu, Laura-Bianca BiliusUIST 2021 · 36 citations
- DRG-Keyboard: Enabling Subtle Gesture Typing on the Fingertip with Dual IMU RingsChen Liang, Chi Hsia, Chun Yu, Yukang Yan et al.UbiComp 2023 · 33 citations
- Computing with Smart Rings: A Systematic Literature ReviewZeyu Wang, Ruotong Yu, Xiangyang Wang, Jiexin Ding et al.UbiComp 2025 · 14 citations
- One Ring to Rule Them All: An Empirical Understanding of Day-to-Day Smartring Usage Through In-Situ Diary StudySandra Bardot, Bradley Rey, Lucas Audette, Kevin Fan et al.UbiComp 2022 · 12 citations
Related papers
- Keep the Phone in Your Pocket: Enabling Smartphone Operation with an IMU Ring for Visually Impaired PeopleGuanhong Liu, Yizheng Gu, Yiwen Yin, Chun Yu et al.UbiComp 2020 · 15 citations
- DualRing: Enabling Subtle and Expressive Hand Interaction with Dual IMU RingsChen Liang, Chun Yu, Yue Qin, Yuntao Wang et al.UbiComp 2021 · 69 citations
- Z-Ring: Single-Point Bio-Impedance Sensing for Gesture, Touch, Object and User RecognitionAnandghan Waghmare, Youssef Ben Taleb, Ishan Chatterjee, Arjun Narendra et al.CHI 2023 · 42 citations
- Wrist2Finger: Sensing Fingertip Force for Force-Aware Hand Interaction with a Ring-Watch WearableYingjing Xiao, Zhichao Huang, Junbin Ren, Yuting Bai et al.UIST 2025 · 5 citations
- TwinSpin: A Virtual Ball in a VR Controller Enabling In-Hand 3DoF RotationChangsung Lim, Taejun Kim, Geehyuk LeeUIST 2025
