Skip to main content

Researchers use drones to assess infrastructure damage

Researchers at the University of New Mexico, along with collaborators at San Diego State University and BAE Systems, are utilising drone technology to develop an operational prototype to assess infrastructure damage. The drone will use innovative remote sensing approaches and cameras mounted on low cost aircraft or unmanned drones to detect and map fine scale transportation infrastructure damage such as cracks, deformations and shifts immediately following natural disasters such as earthquakes, floods and h
March 6, 2015 Read time: 3 mins
Researchers at the University of New Mexico, along with collaborators at San Diego State University and BAE Systems, are utilising drone technology to develop an operational prototype to assess infrastructure damage.  

The drone will use innovative remote sensing approaches and cameras mounted on low cost aircraft or unmanned drones to detect and map fine scale transportation infrastructure damage such as cracks, deformations and shifts immediately following natural disasters such as earthquakes, floods and hurricanes.

With the help of a two-year, US$1.2 million grant from 5386 the United States Department of Transportation Office of the Assistant Secretary for Research and Technology Commercial Remote Sensing and Spatial Information Technologies Program (CRS&SI) and additional support from the UNM College of Arts and Sciences and UNM School of Engineering, researchers Christopher Lippitt and Susan Bogus Halter are conducting the research project.

The project builds upon previous research and patent pending technology to design a complete remote sensing system designed to meet the needs of agencies such as the 7074 New Mexico Department of Transportation (DOT) and US DOT. The researchers aim to make available the latest in precision change detection and user optimised remote sensing systems to USDOT for operational assessment of damage to transportation infrastructure following hazard events.

The research team has already conducted extensive research and development on an image-based infrastructure assessment model that utilises fast and precise data collection and processing within those critical time frames. Using a novel approach called repeat station imaging (RSI), researchers hope to rapidly align and analyse images for detection of fine-scale damage to infrastructure.

The researchers will use a GT500 aircraft made by Quicksilver for the project, while also working with corporate partner NEOS which is supporting all the research and development efforts. The information will eventually enable the USDOT, the NMDOT or any local DOT to better manage their assets by bringing much more data to the table than ever before.

One of the keys to infrastructure damage assessment is timeliness. Many natural disasters create dangerous situations that are time-sensitive in nature. The first 24 hours are oftentimes critical in terms of damage assessment, search and rescue. Short time-frame damage assessments, sometimes over large urban areas, can be difficult with the current conventional, ground-observations and sensor networks researchers say.

The solution to this post-hazard information access challenge is to design flexible, ready-to-deploy, time-sensitive remote sensing systems (TSRSS) based on a network of airborne platforms and digital cameras (manned aircraft in the short term and unmanned aircraft long term).

“I like to call it telemedicine for infrastructure,” said Lippitt. “We’re talking about being able to map every piece of critical infrastructure in minutes to hours as opposed to hours to days."

Related Content

  • ITS America & Nema publish procurement guidance
    July 14, 2025
    Outcomes-based contracting reflects digitalisation and other changes
  • Big data and self-driving cars: New studies from ITF
    May 29, 2015
    Two new reports launched by the International Transport Forum (ITF) during the Annual Summit of Transport Ministers in Leipzig, Germany, highlight issues for the transport sector: the use of big data and the trend towards automated cars. The ITF claims that failing to ensure strong privacy protection in the collection and processing of location data may result in a regulatory backlash against the technology, which could hamper innovation and limit the social and economic benefits the use of such data delive
  • I-95 Corridor Coalition awards vehicle probe project data contract
    June 10, 2014
    The I-95 Corridor Coalition, working through the University of Maryland, and following a thorough competition, has announced a new contract for procuring real-time speed and travel time data. Under this new contract, Coalition member agencies are expected to realise up to a 50 per cent reduction in cost over the prior contract. Member agencies may choose from Here, Inrix and TomTom to procure traffic speed and travel time data. The multiple-vendor approach creates a traffic data marketplace, allowing ag
  • Taking it to the streets
    November 30, 2012
    The University of Michigan Transportation Research Institute (UMTRI) and US Department of Transportation (USDOT) have launched the Connected Vehicle Safety Pilot Model Deployment in Ann Arbor, Michigan. The largest connected vehicle test undertaken, and a critical next step in the development of vehicle-to-vehicle (V2V) and vehicle-to-infrastructure (V2I) communication. The pilot, a $22 million partnership between UMTRI and USDOT, is part of a joint research initiative led by the National Highway Traffic