Paper
15 October 2013 Dust-penetrating (DUSPEN) see-through lidar for helicopter situational awareness in DVE
James T. Murray, Jason Seely, Jeff Plath, Eric Gotfredson, John Engel, Bill Ryder, Neil Van Lieu, Ron Goodwin, Tyler Wagner, Greg Fetzer, Nick Kridler, Chris Melancon, Ken Panici, Anthony Mitchell
Author Affiliations +
Abstract
Areté Associates recently developed and flight tested a next-generation low-latency near real-time dust-penetrating (DUSPEN) imaging lidar system. These tests were accomplished for Naval Air Warfare Center (NAWC) Aircraft Division (AD) 4.5.6 (EO/IR Sensor Division) under the Office of Naval Research (ONR) Future Naval Capability (FNC) Helicopter Low-Level Operations (HELO) Product 2 program. Areté’s DUSPEN system captures full lidar waveforms and uses sophisticated real-time detection and filtering algorithms to discriminate hard target returns from dust and other obscurants. Down-stream 3D image processing methods are used to enhance pilot visualization of threat objects and ground features during severe DVE conditions. This paper presents results from these recent flight tests in full brown-out conditions at Yuma Proving Grounds (YPG) from a CH-53E Super Stallion helicopter platform.
© (2013) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
James T. Murray, Jason Seely, Jeff Plath, Eric Gotfredson, John Engel, Bill Ryder, Neil Van Lieu, Ron Goodwin, Tyler Wagner, Greg Fetzer, Nick Kridler, Chris Melancon, Ken Panici, and Anthony Mitchell "Dust-penetrating (DUSPEN) see-through lidar for helicopter situational awareness in DVE", Proc. SPIE 8897, Electro-Optical Remote Sensing, Photonic Technologies, and Applications VII; and Military Applications in Hyperspectral Imaging and High Spatial Resolution Sensing, 88970K (15 October 2013); https://doi.org/10.1117/12.2033921
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Cited by 4 scholarly publications.
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KEYWORDS
LIDAR

Driver's vision enhancers

Sensors

Target detection

Visualization

Clouds

Global Positioning System

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