arXiv:2608.20626cs.HCcs.RO2026-08

用流体逻辑环振电路减少穿戴式触觉设备的气动输入需求

Pneumatic Units for Logic-based Sequential Excitation (PULSE) in Wearable Haptic Devices

论文配图:Pneumatic Units for Logic-based Sequential Excitation (PULSE) in Wearable Haptic Devices
图 1 · 摘自论文原文
  • 设计可编织的流体逻辑气动单元,通过环振结构减少气路控制复杂度
  • 使手臂套件仅需60%的气动输入即可实现多向触觉刺激,实测精度达93.3%
  • 适合远程康复、虚拟现实等需轻便、可穿戴触觉反馈的应用场景

柔性可穿戴机器人设备可为扩展现实、技能训练和康复提供触觉反馈。气动驱动具有重量轻、柔顺性强、可集成于织物中的优势,适用于可穿戴场景。但传统软性气动装置通常每个执行器需独立阀门与输入,难以实现全便携化。本文提出一种基于流体逻辑的顺序激励气动单元(PULSE),其为平面纺织结构,内置流体逻辑元件。通过优化设计变量构建流体环形振荡器,将触觉臂套所需的气动输入数量降低60%,且具备可扩展性。实验中实现了周期1.16至1.56秒、力值1.07至2.04牛的触觉刺激。用户研究显示,该臂套能生成可区分、舒适且连续的触觉提示,成功引导用户对准腕部目标角度,反应快、超调小,平均初始方向准确率达93.3%。

原文摘要 · Abstract (English)

Soft, wearable robotic devices can deliver haptic feedback to support a wide range of tasks, such as extended reality, training various skills, and rehabilitation. Pneumatic actuation can deliver complex haptic feedback, is lightweight and compliant, and can be incorporated into textiles, making it promising for wearable applications. These soft pneumatic devices, however, typically require a valve and input for each pneumatic actuator, making it challenging to develop fully portable devices for at-home use. In this work we present a pneumatic unit for logic-based sequential excitation (PULSE). The PULSE is a flat, textile-based pneumatic actuator with embedded fluidic logic. By combining these actuators into a fluidic ring oscillator, we decreased the typical amount of required pneumatic inputs for a haptic forearm sleeve by 60%, with the ability to scale. We built the ring oscillator by optimizing design variables to reach desired periods of oscillation. We demonstrated a set of tactile stroking cues with periods ranging from 1.16 to 1.56 s and forces ranging from 1.07 to 2.04 N. We assessed the sleeve's ability to render differentiable, pleasant, and continuous haptic cues in a user study. The forearm sleeve containing PULSEs successfully delivered four directional cues and guided users to target wrist angles with fast reaction times, low overshoot amounts, and a 93.3% average accuracy of correct initial directions.

触觉反馈气动驱动可穿戴设备

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