The Impact of GPS Interface Design on Driving and Distraction

2011 ◽  
Author(s):  
Audrey W. Fok ◽  
Timothy B. Frischmann ◽  
Ben Sawyer ◽  
Melissa Robin ◽  
Mustapha Mouloua
Keyword(s):  
2021 ◽  
Vol 7 (1) ◽  
Author(s):  
Eugenio Redolfi Riva ◽  
Silvestro Micera

AbstractNeural interfaces are bioelectronic devices capable of stimulating a population of neurons or nerve fascicles and recording electrical signals in a specific area. Despite their success in restoring sensory-motor functions in people with disabilities, their long-term exploitation is still limited by poor biocompatibility, mechanical mismatch between the device and neural tissue and the risk of a chronic inflammatory response upon implantation.In this context, the use of nature-derived materials can help address these issues. Examples of these materials, such as extracellular matrix proteins, peptides, lipids and polysaccharides, have been employed for decades in biomedical science. Their excellent biocompatibility, biodegradability in the absence of toxic compound release, physiochemical properties that are similar to those of human tissues and reduced immunogenicity make them outstanding candidates to improve neural interface biocompatibility and long-term implantation safety. The objective of this review is to highlight progress and challenges concerning the impact of nature-derived materials on neural interface design. The use of these materials as biocompatible coatings and as building blocks of insulation materials for use in implantable neural interfaces is discussed. Moreover, future perspectives are presented to show the increasingly important uses of these materials for neural interface fabrication and their possible use for other applications in the framework of neural engineering.


2017 ◽  
Vol 12 (1) ◽  
pp. 29-34 ◽  
Author(s):  
Mica R. Endsley

The concept of different levels of automation (LOAs) has been pervasive in the automation literature since its introduction by Sheridan and Verplanck. LOA taxonomies have been very useful in guiding understanding of how automation affects human cognition and performance, with several practical and theoretical benefits. Over the past several decades a wide body of research has been conducted on the impact of various LOAs on human performance, workload, and situation awareness (SA). LOA has a significant effect on operator SA and level of engagement that helps to ameliorate out-of-the-loop performance problems. Together with other aspects of system design, including adaptive automation, granularity of control, and automation interface design, LOA is a fundamental design characteristic that determines the ability of operators to provide effective oversight and interaction with system autonomy. LOA research provides a solid foundation for guiding the creation of effective human–automation interaction, which is critical for the wide range of autonomous and semiautonomous systems currently being developed across many industries.


Author(s):  
Dal Vernon C. Reising ◽  
Penelope M. Sanderson

Ecological Interface Design (EID) is a recent philosophy for designing the visual displays of human-machine interfaces. An EID interface displays the higher-order relations and properties of a work domain so that adaptive operator problem solving is better supported for both normal and abnormal system conditions. Previous empirical studies of EID have assumed that the raw data required to derive and communicate the higher-order information would be available and reliable. The present research empirically evaluates the impact of having incomplete data on the effectiveness of an EID interface, compared to a more traditional piping and instrumentation interface. The research also addresses recent criticism directed at previous empirical studies of EID is also addressed. Results suggest that diagnostic performance using an ecological interface is compromised only when the interface is supported by a minimal set of instrumentation. However, an ecological interface supported by maximal instrumentation, on average, leads to the best diagnostic performance.


Author(s):  
Nanda Kumar

This chapter reviews the different types of personalization systems commonly employed by Web sites and argues that their deployment as Web site interface design decisions may have as big an impact as the personalization systems themselves. To accomplish this, this chapter makes a case for treating Human-Computer Interaction (HCI) issues seriously. It also argues that Web site interface design decisions made by organizations, such as the type and level of personalization employed by a Web site, have a direct impact on the communication capability of that Web site. This chapter also explores the impact of the deployment of personalization systems on users’ loyalty towards the Web site, thus underscoring the practical relevance of these design decisions.


2009 ◽  
pp. 212-219
Author(s):  
Nanda Kumar

This chapter reviews the different types of personalization systems commonly employed by Web sites and argues that their deployment as Web site interface design decisions may have as big an impact as the personalization systems themselves. To accomplish this, this chapter makes a case for treating Human-Computer Interaction (HCI) issues seriously. It also argues that Web site interface design decisions made by organizations, such as the type and level of personalization employed by a Web site, have a direct impact on the communication capability of that Web site. This chapter also explores the impact of the deployment of personalization systems on users’ loyalty towards the Web site, thus underscoring the practical relevance of these design decisions.


2020 ◽  
Vol 37 (2) ◽  
pp. 431-456 ◽  
Author(s):  
Dominik Molitor ◽  
Martin Spann ◽  
Anindya Ghose ◽  
Philipp Reichhart
Keyword(s):  

Author(s):  
Elizabeth M. Mersch ◽  
Kyle J. Behymer ◽  
Gloria L. Calhoun ◽  
Heath A. Ruff ◽  
Jared S. Dewey

Video game interfaces featuring multiple distinct icons that enable a player to quickly select specific actions from a larger set of possible actions have the potential to inform the development of interfaces that enable a single operator to control multiple unmanned vehicles (UVs). The goal of this research was to examine the design of a video game inspired interface for delegating actions (called “plays”) to highly autonomous UVs. Specifically, the impact of color coding (by Play Type, by Vehicle Type, and No Color) and icon row assignment (by Play Type, by Vehicle Type, and Random) for a delegation play calling interface was evaluated in terms of participants’ performance in identifying and manually selecting a commanded play icon in an interface depicting a large set of UV plays. Both the objective performance data and subjective ratings indicated that icon row assignment impacted icon selection, whereas color coding did not. Mean icon selection time and subjective ratings were more favorable when the icons were assigned to rows in the Play Calling interface by vehicle type. Suggestions are made for follow-on research.


2014 ◽  
Vol 484-485 ◽  
pp. 902-906
Author(s):  
Yi Zeng ◽  
Jing Ning Liu ◽  
Jian Xi Chen ◽  
Hao Cheng

In this article we extend the application of ISCSI protocol to the data storage field of mobile device. First of all, we describe the implement principles and advantages of ISCSI protocol, and discuss the problems and solutions in the design. Then we implement the interface design based on the Android platform, port the ISCSI kernel-mode module, and design the ISCSI communication interface for multiple layers of Adroid system. After that we propose a local cache policy based on the linear mapping method of Device mapper. At last, we analyze the impact of the cache policy on the improvement of system performance according to the experiment results. In a word, we supply a feasible storage solution to solve the problem that there is not enough storage capacity in the mobile device and satisfy the instant accesses from users.


Sign in / Sign up

Export Citation Format

Share Document