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Author Laze, K.
Title Assessing Public Perceptions about Road Lighting in five Neighborhoods of Tirana, Albania Type (up) Journal Article
Year 2019 Publication Abbreviated Journal
Volume Issue Pages
Keywords Public Safety; Psychology; Roadway lighting; Albania; Europe
Abstract Lighting is essential for sight, human health and well-being, emerging the need for assessing exterior lighting to better understand how far public is satisfied about exterior lighting. Exterior lighting was assessed in five major roads of the capital city of Tirana, Albania, in November 2017. Security, obstacle detection and visibility were evaluated using questionnaires for road lighting. The approximately 87 and 60 percent of respondents, respectively, were not able to detect a pavement obstacle after-dark and to distinguish a

familiar face at a distance of 5 m and 10 m along roads. Road lighting after-dark was unsatisfactory to 60 percent of respondents. These findings identified road lighting could be inadequate for users, requiring further investigation and new data collection of road lighting in neighborhoods of Tirana.
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Notes Approved no
Call Number IDA @ intern @ Serial 2651
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Author Marchant, P.
Title Do brighter, whiter street lights improve road safety? Type (up) Journal Article
Year 2019 Publication Significance Abbreviated Journal Significance
Volume 16 Issue 5 Pages 8-9
Keywords Public Safety; Lighting; Statistics
Abstract Would a billion‐dollar investment in improved street lighting make Australian roads safer at night? Paul Marchant finds the evidence wanting
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ISSN 1740-9705 ISBN Medium
Area Expedition Conference
Notes Approved no
Call Number GFZ @ kyba @ Serial 2686
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Author DeCoursey, W., Braun, D., & Oza, J.
Title Pedestrian Lighting, Acceptable Levels of Light: A Pilot Project Type (up) Journal Article
Year 2019 Publication Institute for Public Administration Abbreviated Journal
Volume Issue Pages
Keywords Lighting; Public Safety; Security
Abstract This pilot project study was intended to demonstrate that assessing the adequacy of an area’s pedestrian lighting need not be an expensive, time-consuming, or overly complicated process. Though the discussion of methods of pedestrian lighting can become quite technical and involved, as demonstrated in a 2016 IPA report on the topic, “Delaware Transportation Lighting Inventory & Assessment” (http://www.ipa.udel.edu/publications/transportationlighting-2016.pdf), simply observing and recording light levels in a given study area is quite straightforward.
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Notes Approved no
Call Number IDA @ intern @ Serial 2710
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Author Wood, J.M.
Title Nighttime driving: visual, lighting and visibility challenges Type (up) Journal Article
Year 2019 Publication Ophthalmic & Physiological Optics : the Journal of the British College of Ophthalmic Opticians (Optometrists) Abbreviated Journal Ophthalmic Physiol Opt
Volume Issue Pages in press
Keywords Review; Public Safety; headlights; nighttime driving; older drivers; pedestrians and cyclists; streetlights; visual performance
Abstract PURPOSE: Nighttime driving is dangerous and is one of the most challenging driving situations for most drivers. Fatality rates are higher at night than in the day when adjusted for distances travelled, particularly for crashes involving pedestrians and cyclists. Although there are multiple contributory factors, the low light levels at night are believed to be the major cause of collisions with pedestrians and cyclists at night, most likely due to their reduced visibility. Understanding the visibility problems involved in nighttime driving is thus critical, given the increased risk to road safety. RECENT FINDINGS: This review discusses research that highlights key differences in the nighttime road environment compared to the day and how this affects visual function and driving performance, together with an overview of studies investigating how driver age and visual status affect nighttime driving performance. Research that has focused on the visibility of vulnerable road users at nighttime (pedestrians and cyclists) is also included. SUMMARY: Collectively, the research evidence suggests that visual function is reduced under the mesopic lighting conditions of night driving and that these effects are exacerbated by increasing age and visual impairment. Light and glare from road lighting and headlights have significant impacts on vision and night driving and these effects are likely to change with evolving technologies, such as LED streetlighting and headlights. Research also highlights the importance of the visibility of vulnerable road users at night and the role of retroreflective clothing in the 'biomotion' configuration for improving their conspicuity and hence safety.
Address School of Optometry and Vision Science and Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane, Australia
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Language English Summary Language Original Title
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ISSN 0275-5408 ISBN Medium
Area Expedition Conference
Notes PMID:31875993 Approved no
Call Number GFZ @ kyba @ Serial 2803
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Author Wood, J.M.; Tyrrell, R.A.; Carberry, T.P.
Title Limitations in drivers' ability to recognize pedestrians at night Type (up) Journal Article
Year 2005 Publication Human Factors Abbreviated Journal Hum Factors
Volume 47 Issue 3 Pages 644-653
Keywords Vision; Public Safety; Adult; Age Factors; Aged; *Automobile Driving/psychology; Clothing; *Darkness; Female; Humans; Male; Middle Aged; Reaction Time; Task Performance and Analysis; Visual Perception
Abstract This study quantified drivers' ability to recognize pedestrians at night. Ten young and 10 older participants drove around a closed road circuit and responded when they first recognized a pedestrian. Four pedestrian clothing and two beam conditions were tested. Results demonstrate that driver age, clothing configuration, headlamp beam, and glare all significantly affect performance. Drivers recognized only 5% of pedestrians in the most challenging condition (low beams, black clothing, glare), whereas drivers recognized 100% of the pedestrians who wore retroreflective clothing configured to depict biological motion (no glare). In the absence of glare, mean recognition distances varied from 0.0 m (older drivers, low beam, black clothing) to 220 m (722 feet; younger drivers, high beam, retroreflective biomotion). These data provide new motivation to minimize interactions between vehicular and pedestrian traffic at night and suggest garment designs to maximize pedestrian conspicuity when these interactions are unavoidable.
Address Center for Eye Research, Queensland University of Technology, Brisbane, Australia. j.wood@qut.edu.au
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Language English Summary Language Original Title
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ISSN 0018-7208 ISBN Medium
Area Expedition Conference
Notes PMID:16435703 Approved no
Call Number GFZ @ kyba @ Serial 2804
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