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스위치의 햅틱프로파일 설계변수가 피드백 명확성에 미치는 영향Effects of Design Parameters of Haptic Profiles on the Feedback Clarity at a Switch

Other Titles
Effects of Design Parameters of Haptic Profiles on the Feedback Clarity at a Switch
Authors
형준호이재환
Issue Date
Jun-2021
Publisher
대한인간공학회
Keywords
Haptic profile; Drop force; Drop size; Feedback clarity; Acceleration
Citation
대한인간공학회지, v.40, no.3, pp 161 - 171
Pages
11
Indexed
KCI
Journal Title
대한인간공학회지
Volume
40
Number
3
Start Page
161
End Page
171
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/108279
DOI
10.5143/JESK.2021.40.3.161
ISSN
1229-1684
2093-8462
Abstract
Objective: This study aims at investigating the major design parameter of haptic profile associated with perceived feedback clarity during operation the clicky switches. Background: A feeling of feedback clarity plays an important role in PUI to improve the user satisfaction and usability. Appropriate level of feedback clarity needs to be revealed when operating a PUI in the context of product use. The feedback clarity is associated with the 'drop force' which is observable in the haptic profile. Also, it is associated with the 'acceleration' resulting from physical interaction between the controller and the body. But detailed physical properties of controller effect on the acceleration and the perceived feedback clarity has not been revealed yet. The haptic profile is useful method to define the design parameters of controller in quantitative manner. Method: Two design parameters, Drop Size and Drop Rate, both are composing the 'drop force' at the haptic profile are defined. Drop size means that the quantities of a dropped force and the Drop Rate mean that the slope of drop curve. Ten experimental switches having different design parameters are designed and manufactured. A separate experiment, measuring the acceleration and perceived feedback clarity has performed respectively. Results: A strong correlation (r=0.957) was observed between the Drop Size and the feedback clarity. However, relatively moderate correlation (r=0.673) was observed between the Drop Rate and feedback clarity. It is means that the feedback clarity strongly affected by the Drop Size rather than the Drop Rate. Meanwhile, the correlation between the feedback clarity and the acceleration was almost perfect (r=0.984) which means the increased acceleration directly affecting the feeling of feedback clarity. Conclusion: This study suggests design strategies of PUI to achieve the preferred feedback clarity level by changing of haptic profile. Application: The results contribute to the design a PUI having satisfied level of feedback clarity.
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