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OverviewFull Product DetailsAuthor: William L. Fehlman , Mark K. HindersPublisher: Springer London Ltd Imprint: Springer London Ltd Edition: 2009 ed. Dimensions: Width: 15.50cm , Height: 1.60cm , Length: 23.50cm Weight: 0.468kg ISBN: 9781447156949ISBN 10: 1447156943 Pages: 274 Publication Date: 29 November 2014 Audience: College/higher education , Professional and scholarly , Undergraduate , Postgraduate, Research & Scholarly Format: Paperback Publisher's Status: Active Availability: Manufactured on demand ![]() We will order this item for you from a manufactured on demand supplier. Table of Contentsand Overview.- Data Acquisition.- Thermal Feature Generation.- Thermal Feature Selection.- Adaptive Bayesian Classification Model.- Conclusions and Future Research Directions.ReviewsAuthor InformationWilliam L. Fehlman II is a lieutenant colonel in the United States Army. He received a BS in Mathematics from SUNY Fredonia in 1990 and MS in Applied Mathematics from Rensselaer Polytechnic Institute in 2000. He earned a PhD in Applied Science from The College of William and Mary in 2008, and is currently assigned as an Assistant Professor of Mathematics at the United States Military Academy, West Point, New York. His research interests include pattern classification, multi-sensor data fusion, and autonomous robotic systems. Mark K. Hinders holds a BS, MS and PhD in Aerospace and Mechanical Engineering from Boston University, and is currently Professor of Applied Science at the College of William and Mary in Virginia. Before coming to Williamsburg in 1993, Professor Hinders was Senior Scientist at Massachusetts Technological Laboratory, Inc., and also Research Assistant Professor at Boston University. Before that Dr Hinders was an Electromagnetics Research Engineer at the USAF Rome Laboratory located at Hanscom AFB, MA. Professor Hinders conducts research in wave propagation and scattering phenomena, applied to medical imaging, intelligent robotics, security screening, remote sensing and nondestructive evaluation. He and his students study the interaction of acoustic, ultrasonic, elastic, thermal, electromagnetic and optical waves with materials, tissues and structures. Tab Content 6Author Website:Countries AvailableAll regions |