helpResearch questionAttention Orchestration in Multi-Device Environments
How can fluid rheological properties (viscosity, stress, etc.) be detected and analyzed at low cost?Direction: General AI Systems and Interaction Design
Attention Orchestration in Multi-Device Environments
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helpResearch questionAttention Orchestration in Multi-Device Environments
How can time-varying fluid properties be accurately sensed and quantified in dynamic environments?helpResearch questionAttention Orchestration in Multi-Device Environments
Can dimensionality reduction algorithms transform multidimensional fluid data into intuitive visual representations?lightbulbPractical problemAttention Orchestration in Multi-Device Environments
Engineers and designers struggle to analyze complex fluid material properties at low cost.helpResearch questionAttention Orchestration in Multi-Device Environments
How do dynamic conditions such as walking affect reading speed and experience during mobile reading?helpResearch questionAttention Orchestration in Multi-Device Environments
How do automatic font adjustment and user-customized adjustment differ in effects on reading speed, comprehension, workload, and preference?helpResearch questionAttention Orchestration in Multi-Device Environments
Can a hybrid mechanism combining system suggestions and user participation improve reading experience in dynamic environments?lightbulbPractical problemAttention Orchestration in Multi-Device Environments
Users have poor reading experience and reduced efficiency when reading on phones while walking.helpResearch questionAttention Orchestration in Multi-Device Environments
How does vehicle motion affect spatial interaction performance using head-mounted displays (HMDs) in dynamic car environments?helpResearch questionAttention Orchestration in Multi-Device Environments
How do four interaction methods (Gaze&Pinch, DirectTouch, Handray, HeadGaze) perform across different road types and path environments?helpResearch questionAttention Orchestration in Multi-Device Environments
How can HMD interaction in dynamic environments be optimized for accuracy, efficiency, and usability?lightbulbPractical problemAttention Orchestration in Multi-Device Environments
Passengers using HMDs in moving cars have poor experience, low efficiency, and frequent errors.helpResearch questionAttention Orchestration in Multi-Device Environments
How can ear-worn devices use frictional acoustic signals for efficient and secure biometric authentication?UbiComp '24EarSlide: a Secure Ear Wearables Biometric Authentication Based on Acoustic Fingerprint
helpResearch questionAttention Orchestration in Multi-Device Environments
Are acoustic fingerprints (frictional acoustic features) more resistant to spoofing attacks than existing authentication methods?UbiComp '24EarSlide: a Secure Ear Wearables Biometric Authentication Based on Acoustic Fingerprint
helpResearch questionAttention Orchestration in Multi-Device Environments
Can acoustic signals in the tragus region maintain authentication accuracy in dynamic environments?UbiComp '24EarSlide: a Secure Ear Wearables Biometric Authentication Based on Acoustic Fingerprint
lightbulbPractical problemAttention Orchestration in Multi-Device Environments
Ear-worn device verification methods have poor security and are easily spoofed.UbiComp '24EarSlide: a Secure Ear Wearables Biometric Authentication Based on Acoustic Fingerprint
helpResearch questionAttention Orchestration in Multi-Device Environments
How can WiFi-CSI differential operations effectively remove static signal components to improve Doppler velocity estimation accuracy?helpResearch questionAttention Orchestration in Multi-Device Environments
How can high-precision passive target velocity estimation be achieved with as few as three CSI samples?helpResearch questionAttention Orchestration in Multi-Device Environments
How can WiFi-CSI differential models adapt to diverse target velocities in dynamic environments?lightbulbPractical problemAttention Orchestration in Multi-Device Environments
Existing WiFi sensing struggles to efficiently estimate target velocity and interferes with communication.helpResearch questionAttention Orchestration in Multi-Device Environments
How do cyclists choose and use technological devices in dynamic environments?helpResearch questionAttention Orchestration in Multi-Device Environments
How do cyclists prepare for and complete technological interactions through body movements?helpResearch questionAttention Orchestration in Multi-Device Environments
How does handlebar zone partitioning affect cycling technology design?lightbulbPractical problemAttention Orchestration in Multi-Device Environments
Using phones or devices while cycling may affect safety and experience.helpResearch questionAttention Orchestration in Multi-Device Environments
How can experts' spatial memory be leveraged to simplify remote guidance in mixed reality environments?helpResearch questionAttention Orchestration in Multi-Device Environments
How does UnMapped interface efficiency compare to traditional mapped interfaces in single-use and repeated-use environments?helpResearch questionAttention Orchestration in Multi-Device Environments
How does the UnMapped system affect experts' cognitive load and communication efficiency?lightbulbPractical problemAttention Orchestration in Multi-Device Environments
Experts are overburdened by dynamic environment observation in remote guidance, resulting in low efficiency.helpResearch questionAttention Orchestration in Multi-Device Environments
How can wireless energy transfer efficiency for multiple devices be improved in backscatter networks?UbiComp '22C-Cube: Rethinking Distributed Beamforming for Concurrent Charging in Backscatter Networks
helpResearch questionAttention Orchestration in Multi-Device Environments
How does distributed beamforming optimize performance when simultaneously charging multiple battery-free devices?UbiComp '22C-Cube: Rethinking Distributed Beamforming for Concurrent Charging in Backscatter Networks
helpResearch questionAttention Orchestration in Multi-Device Environments
Can relative-power-based beamforming metrics effectively support energy transfer in dynamic environments?UbiComp '22C-Cube: Rethinking Distributed Beamforming for Concurrent Charging in Backscatter Networks
lightbulbPractical problemAttention Orchestration in Multi-Device Environments
Low-power devices struggle to efficiently harvest energy from wireless networks simultaneously.UbiComp '22C-Cube: Rethinking Distributed Beamforming for Concurrent Charging in Backscatter Networks
helpResearch questionAttention Orchestration in Multi-Device Environments
How can user attention be dynamically guided in multimodal cyber-physical environments to adapt to complex dynamic scenes?helpResearch questionAttention Orchestration in Multi-Device Environments
What challenges must be addressed to build a device selection method that adjusts in real time based on environmental information?helpResearch questionAttention Orchestration in Multi-Device Environments
How can switching stability across devices be balanced with attention-guidance efficiency in dynamic environments?lightbulbPractical problemAttention Orchestration in Multi-Device Environments
Users struggle to efficiently attend to important targets while avoiding distraction in complex environments.helpResearch questionAttention Orchestration in Multi-Device Environments
How can a system be designed so designers without technical backgrounds can integrate technology into avant-garde fashion?helpResearch questionAttention Orchestration in Multi-Device Environments
How can such a system support rapid prototyping to enhance designers' creativity?helpResearch questionAttention Orchestration in Multi-Device Environments
How does the system perform in dynamic environments such as fashion show backstages?lightbulbPractical problemAttention Orchestration in Multi-Device Environments
Fashion designers lack technical capability and struggle to integrate technology into avant-garde fashion.helpResearch questionAttention Orchestration in Multi-Device Environments
Which types of availability information (e.g., attention, responsiveness, interruptibility) do users prefer to share?helpResearch questionAttention Orchestration in Multi-Device Environments
How do users prefer these availability information types to be presented (e.g., text, graphics, numerical)?lightbulbPractical problemAttention Orchestration in Multi-Device Environments
IM apps' online status cannot accurately reflect user availability, easily causing misunderstanding or interruption.Related papers
CHI 2025
RheoMap: Mapping Inks, Gels, Pastes, and Slurries within a Rheological Embedding Space using Retraction-Extrusion Pressure Sensor Vectors
Hoang Vuong, Cesar Torres
CHI 2025
Supporting Mobile Reading While Walking with Automatic and Customized Font Size Adaptations
Junhan Kong, Jacob O. Wobbrock, Tianyuan Cai
CHI 2025
Bumpy Ride? Understanding the Effects of External Forces on Spatial Interactions in Moving Vehicles
Markus Sasalovici, Albin Zeqiri, Robin Connor Schramm
UbiComp 2024
WiFi-CSI Difference Paradigm: Achieving Efficient Doppler Speed Estimation for Passive Tracking
Wenwei Li, Ruiyang Gao, Jie Xiong
CHI 2023
Cyclists’ Use of Technology While on their Bike
Martin Porcheron, Leigh Clark, Stuart Alan Nicholson
CHI 2023
UnMapped: Leveraging Experts' Situated Experiences to Ease Remote Guidance in Collaborative Mixed Reality
Janet G Johnson, Tommy Sharkey, Iramuali Cynthia Butarbutar
IUI 2021
Multi-modal Multi-scale Attention Guidance in Cyber-Physical Environments
Guillermo Reyes, Alexandra Alles
CHI 2021
Rethinking the Runway: Using Avant-Garde Fashion To Design a System for Wearables
Teddy Seyed, James Devine, Joe Finney
CHI 2021
IM Receptivity and Presentation-type Preferences among Users of a Mobile App with Automated Receptivity-status Adjustment
Ting-Wei Wu, Yu-Ling Chien, Hao-Ping Lee
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