Headwall integrates hyperspectral and lidar instruments aboard UAV platforms

June 11, 2018
The platform should enable remote-sensing capabilities from civil-infrastructure inspection to crop monitoring.

Headwall Photonics (Bolton, MA) has now introduced advanced sensor payloads that consist of hyperspectral sensors and lidar for deployment on unmanned aerial vehicle (UAV) platforms.

Headwall says that the fusion of spectral imaging data and 3D LIDAR output will provide new capabilities for addressing critical remote-sensing applications that range from civil- and military-infrastructure inspection to crop-science applications that require crop monitoring.

The Headwall payload consists of the company's Hyperspec spectral imager, a lidar unit, a UAV, a high-performance GPS/IMU (inertial measurement unit), and the associated software for data acquisition and workflow processing for exploitation.

The combination of hyperspectral and lidar is especially powerful, says Headwall, because the entire data set can be acquired on inexpensive UAV platforms with both sensor instruments operating simultaneously. Headwall's software allows for the control of both instruments, uses a digital elevation map for image creation, and allows for the merging of spectral datasets with the 3D point cloud.

Instruments are getting smaller and lighter and UAVs more robust and powerful. Headwall's integrated airborne packages are designed for low-altitude, high-precision flight for applications where high spectral and spatial resolution is required. Headwall says it focus is on integrating these sensor modalities and providing the necessary image-workflow analysis for data exploitation.

The implementation of hyperspectral and LiDAR involves a high-performance GPS/IMU that collects both geographical data (the GPS) and roll/pitch/yaw information from the UAV (the IMU). This data, as well as lidar and hyperspectral information, is stored aboard Headwall's small Nano-Hyperspec instrument, which includes a 500 GB solid-state drive within its enclosure. Combined, the entire data set represents a geo-rectified point cloud consisting of fused spectral and lidar output, which Headwall say is an industry first.

Source: Headwall Photonics

About the Author

John Wallace | Senior Technical Editor (1998-2022)

John Wallace was with Laser Focus World for nearly 25 years, retiring in late June 2022. He obtained a bachelor's degree in mechanical engineering and physics at Rutgers University and a master's in optical engineering at the University of Rochester. Before becoming an editor, John worked as an engineer at RCA, Exxon, Eastman Kodak, and GCA Corporation.

Sponsored Recommendations

Request a free Micro 3D Printed sample part

April 11, 2024
The best way to understand the part quality we can achieve is by seeing it first-hand. Request a free 3D printed high-precision sample part.

How to Tune Servo Systems: The Basics

April 10, 2024
Learn how to tune a servo system using frequency-based tools to meet system specifications by watching our webinar!

Motion Scan and Data Collection Methods for Electro-Optic System Testing

April 10, 2024
Learn how different scanning patterns and approaches can be used in measuring an electro-optic sensor performance, by reading our whitepaper here!

How Precision Motion Systems are Shaping the Future of Semiconductor Manufacturing

March 28, 2024
This article highlights the pivotal role precision motion systems play in supporting the latest semiconductor manufacturing trends.

Voice your opinion!

To join the conversation, and become an exclusive member of Laser Focus World, create an account today!