The aim of this paper is to explore the potential of using inexpensive, commercial electronics such as a smartwatch or chest belt to measure human physiological functions while driving in vehicle simulator, both to improve safety and to use these devices in other experiments to facilitate their conduct and replace more complex laboratory equipment. In the first part of the paper, the signs of stress and cognitive load through physiological functions are researched, then the possibilities of measuring these signs are explored. This is followed by an experiment in which two commonly available devices are compared in terms of accuracy and usefulness for measurement during the experiment
This paper describes an in-car non-intrusive bio-potential size device for cause pressure fitness mo...
This paper presents methods for collecting and analyzing physiological data during real world drivin...
Monitoring the driver’s behavior in the cabin of a vehicle is an urgent task for modern automated dr...
The aim of this paper is to explore the potential of using inexpensive, commercial electronics such ...
This paper presents the results from a preliminary study where a wearable consumer electronic device...
It is important to equip future vehicles with an on-board system capable of tracking and analysing d...
This paper describes a driving monitoring system based on a car driving simulator, specifically buil...
In this paper, we designed from scratch, realized, and characterized a six-channel EEG wearable head...
The advancement of in-vehicle technology for driving safety has considerably improved. Current Advan...
The ability to measure drivers’ physiological responses is important for understanding their state a...
Many traffic accidents are caused by, or at least related to, inadequate mental workload, when it is...
Earth-moving vehicles (EMVs) are vital in numerous industries, including construction, forestry, min...
A system for quantifying the physiological features of emotional stress is being developed for use d...
Driver drowsiness, compounded by the high workloads and stress of the ever-increasing complexity of...
Due to the fact that driving vehicles can be complicated or impracticable, a computer simulator is u...
This paper describes an in-car non-intrusive bio-potential size device for cause pressure fitness mo...
This paper presents methods for collecting and analyzing physiological data during real world drivin...
Monitoring the driver’s behavior in the cabin of a vehicle is an urgent task for modern automated dr...
The aim of this paper is to explore the potential of using inexpensive, commercial electronics such ...
This paper presents the results from a preliminary study where a wearable consumer electronic device...
It is important to equip future vehicles with an on-board system capable of tracking and analysing d...
This paper describes a driving monitoring system based on a car driving simulator, specifically buil...
In this paper, we designed from scratch, realized, and characterized a six-channel EEG wearable head...
The advancement of in-vehicle technology for driving safety has considerably improved. Current Advan...
The ability to measure drivers’ physiological responses is important for understanding their state a...
Many traffic accidents are caused by, or at least related to, inadequate mental workload, when it is...
Earth-moving vehicles (EMVs) are vital in numerous industries, including construction, forestry, min...
A system for quantifying the physiological features of emotional stress is being developed for use d...
Driver drowsiness, compounded by the high workloads and stress of the ever-increasing complexity of...
Due to the fact that driving vehicles can be complicated or impracticable, a computer simulator is u...
This paper describes an in-car non-intrusive bio-potential size device for cause pressure fitness mo...
This paper presents methods for collecting and analyzing physiological data during real world drivin...
Monitoring the driver’s behavior in the cabin of a vehicle is an urgent task for modern automated dr...