Tangible Privacy: Towards User-Centric Sensor Designs for Bystander Privacy
Imtiaz Ahmad, Rosta Farzan, Apu Kapadia, Adam J. Lee
Abstract
Sensor-enabled computers in the form of 'IoT' devices such as home security cameras and voice assistants are increasingly becoming pervasive in our environment. With the embedded cameras and microphones in these devices, this 'invasion' of our everyday spaces can pose significant threats to the privacy of bystanders. Because of their complex functionality, even when people attempt privacy measures (such as asking the owner to "turn the camera off"), these devices may still record information because of the lack of a 'real' off button. With the ambiguities of current designs, a bystander's perceived privacy can diverge from their actual privacy. Indeed, being able to assess one's actual privacy is a key aspect in managing one's privacy according to Altman's theory of boundary regulation, and current designs fall short in assuring people of their privacy. To understand how people as bystanders manage their privacy with IoT devices, we conducted an interview study about people's perceptions of and behaviors around current IoT devices. We find that although participants' behaviors line up with Altman's theory of boundary regulation, in the face of uncertainty about their privacy, they desire or engage in various 'tangible' workarounds. Based on our findings, we identify and introduce the concept of 'tangible privacy' as being essential to boundary regulation with IoT devices. We argue that IoT devices should be designed in a way that clearly and unambiguously conveys sensor states to people around them and make actionable design recommendations to provide strong privacy assurances to bystanders.
• Human-centered computing → Empirical studies in ubiquitous and mobile computing.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 78b1240a-9d4b-4b71-8236-7dc626fc1cc3Cited by top-tier papers37
- Privacy-Enhancing Technology and Everyday Augmented Reality: Understanding Bystanders' Varying Needs for Awareness and ConsentJoseph O'Hagan, Pejman Saeghe, Jan Gugenheimer, Daniel Medeiros et al.UbiComp 2023 · 102 citations
- Eyecam: Revealing Relations between Humans and Sensing Devices through an Anthropomorphic WebcamMarc Teyssier, Marion Koelle, Paul Strohmeier, Bruno Fruchard et al.CHI 2021 · 76 citations
- Monitoring Pets, Deterring Intruders, and Casually Spying on Neighbors: Everyday Uses of Smart Home CamerasNeilly H. Tan, Richmond Y. Wong, Audrey Desjardins, Sean A. Munson et al.CHI 2022 · 61 citations
- "It would probably turn into a social faux-pas": Users' and Bystanders' Preferences of Privacy Awareness Mechanisms in Smart HomesParth Kirankumar Thakkar, Shijing He, Shiyu Xu, Danny Yuxing Huang et al.CHI 2022 · 49 citations
- MARS: Nano-Power Battery-free Wireless Interfaces for Touch, Swipe and Speech InputNivedita Arora, Ali Mirzazadeh, Injoo Moon, Charles Ramey et al.UIST 2021 · 42 citations
Related papers
- Tangible Privacy for Smart Voice Assistants: Bystanders' Perceptions of Physical Device ControlsImtiaz Ahmad, Taslima Akter, Zachary Buher, Rosta Farzan et al.CSCW 2022 · 20 citations
- Investigating Tangible Privacy-Preserving Mechanisms for Future Smart HomesMaximiliane Windl, Albrecht Schmidt, Sebastian S. FegerCHI 2023 · 39 citations
- "If sighted people know, I should be able to know: " Privacy Perceptions of Bystanders with Visual Impairments around Camera-based TechnologyYuhang Zhao, Yaxing Yao, Jiaru Fu, Nihan ZhouUSENIX Security 2023
- OurData: Understanding Family Privacy in Sensor-Rich HomesHyunsoo Lee, Reza Ghaiumy Anaraky, Oded Nov, Uichin LeeUbiComp 2026
- Privacy & Safety Challenges of On-Body Interaction TechniquesDañiel Gerhardt, Divyanshu Bhardwaj, Ashwin Ram, André Zenner et al.CHI 2026 · 1 citation
