Related Experiment Video
Updated: Mar 25, 2026

Tactile Vibrating Toolkit and Driving Simulation Platform for Driving-Related Research
Published on: December 18, 2020
Driver-centred vehicle automation: using network analysis for agent-based modelling of the driver in highly automated
Victoria A Banks1, Neville A Stanton1
1a Engineering Centre of Excellence , Transportation Research Group, University of Southampton , Southampton , UK.
Abstract:
To the average driver, the concept of automation in driving infers that they can become completely 'hands and feet free'. This is a common misconception, however, one that has been shown through the application of Network Analysis to new Cruise Assist technologies that may feature on our roads by 2020. Through the adoption of a Systems Theoretic approach, this paper introduces the concept of driver-initiated automation which reflects the role of the driver in highly automated driving systems. Using a combination of traditional task analysis and the application of quantitative network metrics, this agent-based modelling paper shows how the role of the driver remains an integral part of the driving system implicating the need for designers to ensure they are provided with the tools necessary to remain actively in-the-loop despite giving increasing opportunities to delegate their control to the automated subsystems. Practitioner Summary: This paper describes and analyses a driver-initiated command and control system of automation using representations afforded by task and social networks to understand how drivers remain actively involved in the task. A network analysis of different driver commands suggests that such a strategy does maintain the driver in the control loop.
More Related Videos
Related Concept Videos
Multi-input and Multi-variable systems
In the absence of...
Hierarchy of Motor Control
PD Controller: Design
Designing a continuous-data controller requires selecting and linking components like adders and integrators, which are fundamental in Proportional,...
Modeling with Differential Equations
Automatic Processing and Automatic Social Behavior
Distributed Loads: Problem Solving

