Factors of Haptic Experience across Multiple Haptic Modalities
Ahmed Anwar, Tianzheng Shi, Oliver Schneider
Abstract
Haptic Experience (HX) is a proposed set of quality criteria useful to haptics, with prior evidence for a 5-factor model with vibrotactile feedback. We report on an ongoing process of scale development to measure HX, and explore whether these criteria hold when applied to more diverse devices, including vibrotactile, force feedback, surface haptics, and mid-air haptics. From an in-person user study with 430 participants, exploratory factor analysis (EFA), and confirmatory factor analysis (CFA), we extract an 11-item and 4-factor model (Realism, Harmony, Involvement, Expressivity) with only a partial overlap to the previous model. We compare this model to the previous vibrotactile model, finding that the new 4-factor model is more generalized and can guide attributes or applications of new haptic systems. Our findings suggest that HX may vary depending on the modalities used in an application, but these four factors are general constructs that might overlap with modalityspecific concepts of HX. These factors can inform designers about the right quality criteria to use when designing or evaluating haptic experiences for multiple modalities.
• Human-centered computing → HCI design and evaluation methods.
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.
Cited by top-tier papers3
- HapticGen: Generative Text-to-Vibration Model for Streamlining Haptic DesignYoujin Sung, Kevin John, Sang Ho Yoon, Hasti SeifiCHI 2025 · 17 citations
- Next Generation Wearable Haptics Should Balance Virtual & Real-world FidelityShan-Yuan Teng, Yudai Tanaka, Alex Mazursky, Pedro LopesCHI 2026 · 2 citations
- Which is Warmer, the Cake or the Oven? Unlocking Thermal Conductivity for Virtual Reality InteractionDevbrat Anuragi, Ahmed Farooq, Richa Singh, Mina Honarmandmozafari et al.CHI 2026 · 2 citations
Builds on5
- Defining Haptic Experience: Foundations for Understanding, Communicating, and Evaluating HXErin Kim, Oliver SchneiderCHI 2020 · 96 citations
- The Development and Validation of the Technology-Supported Reflection InventoryMarit Bentvelzen, Jasmin Niess, Mikolaj P. Wozniak, Pawel W. WozniakCHI 2021 · 68 citations
- Juicy Haptic Design: Vibrotactile Embellishments Can Improve Player Experience in GamesTanay Singhal, Oliver SchneiderCHI 2021 · 65 citations
- Haptic Fidelity Framework: Defining the Factors of Realistic Haptic Feedback for Virtual RealityThomas Muender, Michael Bonfert, Anke Verena Reinschlüssel, Rainer Malaka et al.CHI 2022 · 61 citations
- Building and Validating a Scale for Secure Software Development Self-EfficacyDaniel Votipka, Desiree Abrokwa, Michelle L. MazurekCHI 2020 · 35 citations
Related papers
- Development and Initial Validation of the Haptic Experience Inventory (HXI)Tianzheng Shi, Oliver SchneiderCHI 2025 · 14 citations
- Affective Wearable Haptic Interventions: A Systematic Literature ReviewJueun Lee, Tobias Röddiger, Sarah Makarem, Till Riedel et al.UbiComp 2026 · 2 citations
- Better Because It's New: The Impact of Perceived Novelty on the Added Value of Mid-Air Haptic FeedbackIsa Rutten, David GeertsCHI 2020 · 18 citations
- Ultrasonic Mid-Air Haptics on the Face: Effects of Lateral Modulation Frequency and Amplitude on Users' ResponsesRuiheng Lan, Xu Sun, Qingfeng Wang, Bingjian LiuCHI 2024 · 10 citations
- Can we crowdsource Tacton similarity perception and metaphor ratings?Dong-Jae Kwon, Ramzi Abou Chahine, Chungman Lim, Hasti Seifi et al.CHI 2023 · 10 citations
