
Master road lighting design with calculations and luminaire selection for road types, applying French road lighting standards, dark sky, and leed usgbc outdoor lighting requirements using specialized software.
Outline prerequisites for learners with basic knowledge of road lighting lamps and luminaires and drive hands-on learning with Orthopod, AutoCAD, and related software; set hardware, internet, and practice expectations.
Project Inspiration
Road / Street Lighting Designs
Check the PDF file on the additional resources to find out some of my road lighting projects.
Identify road types by function, materials, and design, and distinguish urban and rural classifications, including arterial, sub-arterial, collector, local streets, and various rural through and residential roads.
Identify the four major road classifications—limited access highway, arterial, collector, and local road—and apply class-specific lighting standards, pole heights, color temperatures, and layouts to support safety and energy efficiency.
Explore road lighting design by mastering pole arrangements: side, opposite, staggered, and median, along with catenary suspensions, luminaires, and core terms like patchwork, carriageway, and lanes.
Learn how to choose road lighting luminaires, including bracketed, pole-top, solar panel, catenary, and decorative options, and assess beam types and photometric specs to meet design requirements.
Identify the four road lighting design considerations—traffic speed, number of lanes, pole height, and lamp wattage—and select appropriate standards (ME1, E4, E5, C0, S1) for efficient, cost-conscious spacing.
Explore road lighting design standards under cibse-sll guidelines, including road classifications, main distributor lighting requirements, and reference to the Celal Lighting Handbook and related ebooks.
Analyze the American standard RP-8-00 for roadway lighting, compare it with European standards, and review road classifications, design criteria, and luminaires placement at intersections using lux and foot-candle concepts.
Learn the British standard BS EN 13201-2 & 3:2015 for road lighting, focusing on performance requirements, classifications (M1/M6, C0–C5, B), glare controls, and design calculations using manual and software tools.
Study the 2003 BS 5489-1 code of practice for road lighting, detailing the placement of luminaires, junction and roundabout lighting, and critical spacing and maintenance factors.
Explore the cie 115:2010 guidance on lighting roads for motor and pedestrian traffic, including dry and wet road classifications, conflict area levels, lux targets, and manual calculation examples.
Explore the DIALux evo road lighting user interface and learn to set up road lighting projects with planning, luminaires, views, documentation, and manufacturer options, including performance comparisons and report generation.
Configure the software's basic road lighting settings, selecting metric or imperial units, choosing language and print output, and aligning standards (European, US, or Japan) with the default maintenance factor.
Design and arrange a two-lane residential road with a median, sidewalks, grass strips, and bicycle lanes, then insert luminaires and optimize height, tilt, and spacing to satisfy the lighting report.
master pole arrangement for road lighting, including one-sided, staggered, two-sided, median, and catenary setups, with adjustable pole distance and luminaire orientation.
Refurbish existing road lighting by retrofitting to more efficient LED luminaires, using the same pole height and spacing, evaluating optics and photometric performance to reduce power while preserving safety.
Explore real-time calculation values by adjusting spacing, height, and tilting angle to see instant changes in road lighting across three views, including different road types.
Compare luminaire variants from different brands using consistent pole height and spacing, replace luminaires, generate reports, and use variant optimization to identify the best option.
Explore lighting complex road geometry, including curves, intersections, sidewalks, bike lanes, and medians, by straight-line calculations and curve-based luminaire layouts in a Dallas Evo workflow.
Create multiple street profiles in one project by defining separate road types, running independent lighting calculations, and laying out luminaire placements in AutoCAD.
Learn to create a professional road lighting design pdf report by detailing lane configurations, optimizing luminaire spacing and heights, and exporting the results to excel for client-ready documentation.
Export road lighting data to an Excel file to explore pro features and free trial options, and anticipate learning about roundabouts, intersections, bridges, and landscape lighting.
Delve into road lighting design techniques for roundabouts, intersections, roads, car parks, bridges, and landscapes, with standards guidance and design calculations using placebo, relax or lighting reality.
Learn to design roundabout lighting by tracing the roundabout in a calculation object, setting ground level, and adjusting luminaire wattage, tilt, and spacing to achieve 50 lux and good uniformity.
Identify luminaire locations at junctions and curves to prevent glare, then outline points before applying spacing. Use plan-view calculations for roundabouts to achieve 50 lux and uniformity per Sellal handbook.
Edit and optimize pedestrian lighting layouts to achieve high uniformity and target lux values at intersections, using side-mounted luminaires and cylindrical illuminance calculations.
Design under-bridge lighting with continuous LED tubes and architectural lighting to brighten underpasses, blending street and tunnel lighting concepts while addressing roadway lux values.
Learn street lighting calculations for a 10-meter road, set 8 m pole height at 10 m spacing with a 140 W metal halide luminaire, and verify lux and uniformity.
Learn to optimize road lighting design calculations by adjusting pole height and luminaire quantity, exploring spacing up to 28–30 meters with optics to reduce costs while meeting candela requirements.
Develop a road lighting plan for the carriage way, bike lane, and pedestrian areas. Evaluate light sources, canopy effects, and pole placement while meeting lux level requirements.
Arrange and configure road lighting luminaires for bike lanes and sidewalks, selecting streetlights, and adjusting height, spacing, rotation, and wattage to achieve target lux on the road and bike lane.
Explore road lighting design for bike lanes and sidewalks by adjusting tilt angles and lamp types to meet average lux and sidewalk illumination requirements.
Learn how to rotate a photometric file to align the luminaires distribution with the road, importing the file, rotating to ninety degrees, and verifying with the photometric curve.
Learn how to design road lighting with catenary mounting using category luminaires, adjusting offset, orientation, and optics to meet lux levels on two-lane roads.
Explore pole parameter concepts such as boom angle, light overhang, and pole-to-roadway distance, plus practical guidance on standards and spacing in road lighting design.
Explore street lighting design using an H-type bracket for medians and roadways, placing luminaires, adjusting height, spacing, and boom angles to satisfy calculation requirements.
Discover where to download 3D lighting poles from the 3D archive, import them into Delux Evo, and visualize pole placements for road lighting design.
Learn how to set up road lighting with different pole spacings, creating and comparing 30-meter and 50-meter spacing reports, and duplicating road luminaire arrangements for analysis.
Understand nuisance lighting, glare, and light trespass, and learn how directional lighting with proper optics and tilting reduces light entering the night sky. Know bug rating and LEED requirements.
This is one of the most amazing technical course about Road Lighting Design. This course will teach you all the tips and tricks on how to do road, street, path-walk, and roundabout lighting designs using Dialux evo software, based on 10 years lighting design experience.
All lectures has videos and manuals for you to learn by watching and reading. This is a one time payment with a lifetime access, so you can come back anytime you want. No rush to master and learn road lighting design.
There are also lots of sample designs and learning materials inside this course, so you will be confident to design by yourself. So don't forget to check the additional resources tabs. You will find it easily once you are inside.
This course will also teach you how to select the right luminaire, where to get the photometric files, what are the basic question to ask before you start the design, and design the correct pole height and spacing.
We will also discuss the road lighting design standards from different organizations like CIBSE, IESNA, and other lighting guides. We will find out which one is the most effective lighting design standards based on how they give the details of instructions.
Enroll now and I will see you on this on-line classroom.
Enjoy learning!