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Vision-Based Recovery of Unmanned Aerial Vehicles A.D. Kahn Tactical Electronic Warfare Division Introduction: A key requirement for performing reconnaissance missions using small unmanned aerial
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Document Date: 2012-08-07 10:13:38


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Yokohama / /

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Adaptive Networks / References 1 Sierra Nevada Corporation / E.S. Oran Laboratory / NRL / NIOSH Lake Lynn Laboratory / Nonlinear Dynamical Systems / Methane-Air Systems / The Insitu Group Inc. / /

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Japan / United States / /

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pence / /

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University of California / Montclair State University / National Institute / /

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combustible gas / large systems / natural gas explosions / chemical reactions / automatic recovery technology / junction-based systems / simulation tool / mesoscale devices / compressed gas / machine vision algorithms / law behavior / natural gas / power law behavior / computing / chemical reaction / energy release / guidance algorithms / theoretical machinery / larger and more complex systems / non-power-law behavior / chemical models / power law dependence / energy / /

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Michigan State University / University of California at San Francisco / Montclair State University / Plasma Physics Division / National Institute for Occupational Safety and Health / /

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E.S. Weiss / Steven Carruthers / Allan Ellsbery / Kim Goins / Simone Bianco / /

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California / /

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machine vision algorithms / lasers / machine vision / automatic recovery technology / Fluid Dynamics / laptop computer / simulation / guidance algorithms / /

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