Scenariot: Spatially Mapping Smart Things Within Augmented Reality Scenes
Authors
The emerging simultaneous localizing and mapping (SLAM) based tracking technique allows the mobile AR device spatial awareness of the physical world. Still, smart things are not fully supported with the spatial awareness in AR. Therefore, we present Scenariot, a method that enables instant discovery and localization of the surrounding smart things while also spatially registering them with a SLAM based mobile AR system. By exploiting the spatial relationships between mobile AR systems and smart things, Scenariot fosters in-situ interactions with connected devices. We embed Ultra-Wide Band (UWB) RF units into the AR device and the controllers of the smart things, which allows for measuring the distances between them. With a one-time initial calibration, users localize multiple IoT devices and map them within the AR scenes. Through a series of experiments and evaluations, we validate the localization accuracy as well as the performance of the enabled spatial aware interactions. Further, we demonstrate various use cases through Scenariot.
Research Questions / Practical Problems
Question signals indexed for this paper.
- 67%
Change Blindness in Proximity-Aware Mobile Interfaces
CHI '18· Context-Aware Computing +1
- 67%
NavigaTone: Seamlessly Embedding Navigation Cues in Mobile Music Listening
CHI '18· AR Navigation & Context Awareness +1
- 67%
SmartObjects: Sixth Workshop on Interacting with Smart Objects
CHI '18· Context-Aware Computing +1
- 67%
Explicating "Implicit Interaction": An Examination of the Concept and Challenges for Research
CHI '19· Context-Aware Computing +1
- 67%
AdHocProx: Sensing Mobile, Ad-Hoc Collaborative Device Formations using Dual Ultra-Wideband Radios
CHI '23· Context-Aware Computing +1
- 67%
Pixel Memories: Do Lifelog Summaries Fail to Enhance Memory but Offer Privacy-Aware Memory Assessments?
CHI '25· Context-Aware Computing +1
- 67%
Vision-Based Multimodal Interfaces: A Survey and Taxonomy for Enhanced Context-Aware System Design
CHI '25· Context-Aware Computing +1
- 67%
Modes of Interaction with Navigation Apps
CHI '25· AR Navigation & Context Awareness +1
- 67%
On the Go with AR: Attention to Virtual and Physical Targets while Varying Augmentation Density
CHI '25· AR Navigation & Context Awareness +1
- 67%
Sensing Noticeability in Ambient Information Environments
CHI '25· AR Navigation & Context Awareness +1
Based on Jaccard similarity of research subtopics & professions (≥60%)