Kansas State University Polytechnic Campus, Law Enforcement Agencies Evaluate Remote-sensing Technologies to Fight Crime
January 23, 2019
The Applied Aviation Research Center team at Kansas State University Polytechnic Campus conducts unmanned aircraft systems training for law enforcement.
The Applied Aviation Research Center
on the Kansas State University Polytechnic Campus
is working with law enforcement partners to evaluate small unmanned aircraft remote sensing technologies to reconstruct crime scenes.
Under the grant, sponsored by the National Institute of Justice, the center is collaborating with the Kansas Bureau of Investigation, the Riley County Police Department and the Kansas City Police Department in MIssouri to evaluate sUAS remote sensing technology and compare it to the conventional methodology of using terrestrial-based LiDAR — or laser-based remote sensing technology — systems for crime scene reconstruction. Unlike previous studies, the Polytechnic Campus project will use a comprehensive approach to compare sUAS photogrammetry and aerial LiDAR to terrestrial laser scanning at multiple test locations during day and night conditions.
Funding for this research, titled "Evaluation of Terrestrial Laser Scanning and Aerial Remote Sensing with sUAS for Forensic Crime Scene Reconstruction" comes from a seven-month, $91,416 grant from the Research and Development in Forensic Science for Criminal Justice Purposes Program of the National Institute of Justice, a part of the Department of Justice.
"The Applied Aviation Research Center has a mission to help introduce commercial UAS to various lines of business," said Kurt J. Carraway, the center's UAS executive director. "Additionally, we provide UAS flight training services to industry partners through our professional education and outreach program. Through this program, approximately 35 percent of the trainees come from the public safety area. Over the past year in particular, we developed strong relationships with multiple law enforcement agencies."
The project will potentially impact more than 3,000 law enforcement personnel across the country as well as any entity wanting to know more about the benefits and compromises of using remote sensing technologies to produce precise reconstructions of outdoor terrain and features.
"With continued research in forensic documentation, identification, processing and reconstruction, the application of UAS operations has the possibility to positively impact and support public safety agencies in many facets of crime scene," said M. Wade Cherms, crime scene investigator with the Riley County Police Department. "Conducting trials and testing could impact investigations from scene to courtroom by knowing what works in certain applications indicated through the collection of data."
Terrestrial laser scanning is an instrumental tool in accurately depicting various crime scenes for use in court, said Robert Jacobs, assistant special agent in charge who oversees the Kansas Bureau of Investigation's Crime Scene Response Team.
"Terrestrial laser scanning is extremely helpful, but we're interested in seeing how the aerial data compares," Jacobs said. "The aerial perspective has strong potential to provide more details in some instances and may be a quicker and less complex approach to collecting the data."
Through the use of quantitative and qualitative metrics, the team will evaluate each technology and will produce a journal article detailing the equipment, methods and results of the research.
To learn more about the research, training and services Kansas State Polytechnic's Applied Aviation Research Center provides, contact Carraway at 785-833-2152 or firstname.lastname@example.org
This project was supported by Award No. 2018-R2-CX-0031, awarded by the National Institute of Justice, Office of Justice Programs, U.S. Department of Justice. The opinions, findings and conclusions or recommendations expressed in this publication/program/exhibition are those of the author(s) and do not necessarily reflect those of the Department of Justice.
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