2023
Research Regarding Different Types of Headlights on Selected Passenger Vehicles when Using Sensor-Related Equipment
STOPKA, Ondrej, Mária STOPKOVÁ, Jozef PALO, Martin MICHALSKY, Paweł DROŹDZIEL et. al.Basic information
Original name
Research Regarding Different Types of Headlights on Selected Passenger Vehicles when Using Sensor-Related Equipment
Name in Czech
Výzkum týkající se různých typů světlometů u vybraných osobních vozidel za použítí techniky související se senzory
Authors
STOPKA, Ondrej (703 Slovakia, belonging to the institution), Mária STOPKOVÁ (703 Slovakia, belonging to the institution), Jozef PALO (703 Slovakia), Martin MICHALSKY (703 Slovakia), Paweł DROŹDZIEL (616 Poland) and Jan VRABEL (703 Slovakia)
Edition
Sensors, Basel, Switzerland, Multidisciplinary Digital Publishing Institute, St. Alban-Anlage 66, 4052 Basel, Switzerland, 2023, 1424-3210
Other information
Language
English
Type of outcome
Article in a journal
Field of Study
50703 Transport planning and social aspects of transport
Country of publisher
Switzerland
Confidentiality degree
is not subject to a state or trade secret
References:
RIV identification code
RIV/75081431:_____/23:00002503
Organization unit
Institute of Technology and Business in České Budějovice
Keywords (in Czech)
bezpečnost provozu; světlomet; rozsah viditelnosti; světelný kužel; oslnění; technika související se senzory
Keywords in English
traffic safety; headlight; range of visibility; light cone; dazzlement; sensor-related equipment
Changed: 16/3/2023 13:25, Barbora Kroupová
V originále
Statistical surveys show that the majority of traffic accidents occur due to low visibility, highlighting the need to delve into innovative car lighting technologies. A car driver must not only be able to see but also to be seen. The issue of headlight illumination is vital, especially during the dark hours of the night. Therefore, the focus of this article is determining the range of visibility of dipped (low-beam) headlights under specific experimental conditions. We also designed a methodical guideline aimed at identifying the distance at which dipped headlights illuminate the road while a vehicle is in motion. Research conducted on various classes of road confirmed that the Hyundai i40 is best used on higher-class roads, while the Dacia Sandero is better used on lower-class roads due to the shape and spreading out of its light cone. Furthermore, the pros and cons of the distribution of light cones on several classes of road are presented. Sensor-related equipment was also used to investigate light beam afterglow. In particular, an LX-1108 light meter was applied to determine the obstacle illumination intensity, the properties of which enable recording of low lighting values, and a DJI Mavic AIR 2 unmanned aerial vehicle (UAV; drone) was utilized to record the data related to the location of the examined vehicle, as well as light afterglow at night; relevant data evaluation was carried out using Inkscape software.