Submitted:
03 September 2025
Posted:
05 September 2025
You are already at the latest version
Abstract
Keywords:
1. Introduction
2. Method
2.1. Study Settings
2.1.1. Case Study 1
2.1.2. Case Study 2
2.2. Behavioural Observation
2.2.1. Procedure
2.3. Objective Measurements
2.3.1. Procedure
2.4. Participants
3. Results
3.1. Interviews
3.2. Surveys
4. Discussion
5. Conclusion
Appendix 1
| Route ID | Average width of streets (m) | Average illuminance on pavements (lux) | Average distance between light poles (m) | Lamp type |
Average height of light poles (m) | Used at night? |
| 1 | 7.5 | 7 | 12 | HPS | 10 | Yes |
| 2 | 14 | 3 | 12 | HPS & MH | 10 | Yes |
| 3 | 9 | 5 | 10.0- 15.0 | HPS & MH | 10 | Yes |
| 4 | 16.5 | 14.5 | 12.0-15.0 | HPS | 10 | Yes |
| 5 | 10 | 2 | 12 | MH | 12 | No |
| 6 | 5.6 | 3.5 | 11 | HPS | 10 | No |
| 7 | 5.6 | 3.5 | 11 | HPS | 10 | No |
| 8 | 7.5 | 7 | 12 | HPS | 10 | No |
| 9 | 7.9 | 1.5 | 10 | MH | 10 | No |
| 10 | 5.9 | 2 | 12 | HPS & MH | 10 | No |
| 11 | 16.5 | 14 | 10 | HPS | 10 | No |
| 12 | 16 | 1 | 15 | MH | 10 | No |
| 13 | 14 | 14 | 10 | HPS | 10 | No |
| 14 | 7.5 | 4 | 12 | HPS | 10 | No |
| Route ID | Average width of streets (m) | Average illuminance on pavements (lux) | Average distance between light poles (m) | Lamp type |
Average height of light poles (m) | Used at night? |
| 15 | 18.2 | 8 | 10 | HPS & MH | 12 | Yes |
| 16 | 14 | 6 | 10 | HPS | 12 | Yes |
| 17 | 18.3 | 8 | 12 | HPS & MH | 10 | Yes |
| 18 | 14 | 6 | 10 | HPS | 12 | Yes |
| 19 | 16 | 10 | 15 | HPS | 10 | Yes |
| 20 | 18.3 | 8 | 12 | HPS & MH | 10 | Yes |
| 21 | 16 | 10 | 15 | HPS | 10 | Yes |
| 22 | 16 | 10 | 15 | HPS | 10 | Yes |
| 23 | 16 | 10 | 15 | HPS | 10 | Yes |
| 24 | 18.2 | 4 | 12 | HPS & MH | 10 | Yes |
| 25 | 16 | 5 | 12 | MH | 10 | No |
| 26 | 16 | 4 | 12 | HPS | 10 | No |
| 27 | 18.2 | 8 | 12 | MH | 10 | No |
| 28 | 18.2 | 6 | 10 | HPS | 12 | No |
References
- Badland, Hannah M, & Schofield, Grant M. (2005). The built environment and transport-related physical activity: what we do and do not know. Journal of Physical Activity and Health, 2(4), 433-442. [CrossRef]
- Bassett, David R, Pucher, John, Buehler, Ralph, Thompson, Dixie L, & Crouter, Scott E. (2008). Walking, cycling, and obesity rates in Europe, North America, and Australia. J Phys Act Health, 5(6), 795-814. [CrossRef]
- Bernhoft, Inger Marie, & Carstensen, Gitte. (2008). Preferences and behaviour of pedestrians and cyclists by age and gender. Transportation Research Part F: Traffic Psychology and Behaviour, 11(2), 83-95. [CrossRef]
- Bopp, Melissa, Wilcox, Sara, Laken, Marilyn, Butler, Kimberly, Carter, Rickey E, McClorin, Lottie, & Yancey, Antronette. (2006). Factors associated with physical activity among African-American men and women. American journal of preventive medicine, 30(4), 340-346. [CrossRef]
- Boyce, Peter R, Eklund, Neil H, Hamilton, Barbara J, & Bruno, Lisa D. (2000). Perceptions of safety at night in different lighting conditions. Lighting Research and Technology, 32(2), 79-91. [CrossRef]
- Boyce, PR, Eklund, NH, Hamilton, BJ, & Bruno, LD. (2000). Perceptions of safety at night in different lighting conditions. Lighting Research and Technology, 32(2), 79-91. [CrossRef]
- Cao, Xinyu, Handy, Susan L, & Mokhtarian, Patricia L. (2006). The influences of the built environment and residential self-selection on pedestrian behavior: evidence from Austin, TX. Transportation, 33(1), 1-20. [CrossRef]
- Cervero, Robert, & Kockelman, Kara. (1997). Travel demand and the 3Ds: density, diversity, and design. Transportation Research Part D: Transport and Environment, 2(3), 199-219.
- Ciminero, Anthony R, Calhoun, Karen S, & Adams, Henry E. (1986). Handbook of behavioral assessment: Wiley New York.
- Craig, Cora L, Brownson, Ross C, Cragg, Sue E, & Dunn, Andrea L. (2002). Exploring the effect of the environment on physical activity: a study examining walking to work. American journal of preventive medicine, 23(2), 36-43.
- Ferrer, Sheila, Ruiz, Tomás, & Mars, Lidón. (2015). A qualitative study on the role of the built environment for short walking trips. Transportation research part F: traffic psychology and behaviour, 33, 141-160. [CrossRef]
- Fotios, Steve, Unwin, Jemima, & Farrall, Stephen. (2014). Road lighting and pedestrian reassurance after dark: A review. Lighting Research and Technology, 1477153514524587. [CrossRef]
- Frank, Lawrence D, & Engelke, Peter O. (2001). The built environment and human activity patterns: exploring the impacts of urban form on public health. Journal of Planning Literature, 16(2), 202-218. [CrossRef]
- Frank, Lawrence D, & Pivo, Gary. (1994). Impacts of mixed use and density on utilization of three modes of travel: single-occupant vehicle, transit, and walking. Transportation research record, 44-44.
- Haans, Antal, & de Kort, Yvonne AW. (2012). Light distribution in dynamic street lighting: Two experimental studies on its effects on perceived safety, prospect, concealment, and escape. Journal of Environmental Psychology, 32(4), 342-352.
- Handy, Susan L, & Clifton, Kelly J. (2001). Local shopping as a strategy for reducing automobile travel. Transportation, 28(4), 317-346. [CrossRef]
- Heath, Gregory W, Brownson, Ross C, Kruger, Judy, Miles, Rebecca, Powell, Kenneth E, Ramsey, Leigh T, & Services, Task Force on Community Preventive. (2006). The effectiveness of urban design and land use and transport policies and practices to increase physical activity: a systematic review. Journal of Physical Activity & Health, 3, S55. [CrossRef]
- Herzog, Thomas R, & Flynn-Smith, Jennifer A. (2001). Preference and perceived danger as a function of the perceived curvature, length, and width of urban alleys. Environment and Behavior, 33(5), 653-666. [CrossRef]
- Kaparias, Ioannis, Bell, Michael GH, Miri, Ashkan, Chan, Carol, & Mount, Bill. (2012). Analysing the perceptions of pedestrians and drivers to shared space. Transportation research part F: traffic psychology and behaviour, 15(3), 297-310. [CrossRef]
- Knight, C. (2009). Effect of lamp spectrum on perception of comfort and safety. Paper presented at the Proceedings of experiencing light 2009: International conference on the effects of light on wellbeing.
- Lee, I-Min, & Buchner, David M. (2008). The importance of walking to public health. Medicine and science in sports and exercise, 40(7 Suppl), S512-518. [CrossRef]
- Pain, Rachel, MacFarlane, Robert, Turner, Keith, & Gill, Sally. (2006). ‘When, where, if, and but’: qualifying GIS and the effect of streetlighting on crime and fear. Environment and Planning A, 38(11), 2055-2074. [CrossRef]
- Piatkowski, Daniel P, Krizek, Kevin J, & Handy, Susan L. (2015). Accounting for the short term substitution effects of walking and cycling in sustainable transportation. Travel Behaviour and Society, 2(1), 32-41. [CrossRef]
- Pikora, Terri, Giles-Corti, Billie, Bull, Fiona, Jamrozik, Konrad, & Donovan, Rob. (2003). Developing a framework for assessment of the environmental determinants of walking and cycling. Social science & medicine, 56(8), 1693-1703. [CrossRef]
- Rea, MS, Bullough, JD, & Brons, JA. (2015). Parking lot lighting based upon predictions of scene brightness and personal safety. Lighting Research and Technology, 1477153515603758. [CrossRef]
- Rodrı́guez, Daniel A, & Joo, Joonwon. (2004). The relationship between non-motorized mode choice and the local physical environment. Transportation Research Part D: Transport and Environment, 9(2), 151-173. [CrossRef]
- Saelens, Brian E, & Handy, Susan L. (2008). Built environment correlates of walking: a review. Medicine and science in sports and exercise, 40(7 Suppl), S550.



| Female | Male | Number of participants over the age of 50 | Average age | |
| Site 1 | 7 | 7 | 5 | 41.3 |
| Site 2 | 9 | 5 | 6 | 45.5 |
| Number of participants | Walk destinations | |||
| Changed routes | Unchanged routes | Using cars at night | ||
| Site 1 | 6 | 4 | 4 | Local bakery, grocery shops, take-away shops, work, school, bank, park, pharmacy, relatives/friends’ house |
| Site 2 | 2 | 10 | 2 | Grocery shops, taxi ranks, take-away shops, local mosque, banks, shopping centre, relatives/friends’ house |
| Number of participants mentioned | |||||
| Presence of other people | Street lighting | Trip hazards | Width of streets | Face recognition | |
| Site 1 | 8 | 11 | 2 | 6 | 1 |
| Site 2 | 8 | 8 | 2 | 6 | 0 |
| Number of participants using cars at night | Number of participants changing routes or not walking at night | |||
| Total | Over 50 years of age | Total | Over 50 years of age | |
| Case Study 1 | 4 | 2 | 10 | 4 |
| Case Study 2 | 2 | 2 | 4 | 3 |
| Routes | Changed or not used at all | Not changed | Changed (only) | Night routes | |
| Case Study 1 | Average illuminance on pavements (lux) | 5.25 lux | 7.73 lux | 3.25 lux | 9.83 lux |
| Average width of streets (m) | 9.65 m | 11.75 m | 7.08 m | 14.75 m | |
| Case Study 2 | Average illuminance on the pavements (lux) | 5.75 lux | 8 lux | 4.5 lux | 15 lux |
| Average width of streets (m) | 17.1 m | 16.5 m | 16 m | ||
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