University of Maryland
Assistant Director, Mtech Ventures
University of Maryland Dec 2011 - Apr 2013
Director Citrin of Fellows Program
University of Maryland Dec 2011 - Apr 2013
Director, Dc I-Corps, University of Maryland
Center For Innovative Technology Dec 2011 - Apr 2013
Investment Advisory Board - Gap Technology Fund
Georgetown University's Mcdonough School of Business Dec 2011 - Apr 2013
Adjunct Professor of Innovation and Entrepreneurship
Education:
Mit Sloan School of Management 2004 - 2006
Master of Science, Masters
Mit Sloan School of Management 1992 - 1993
Master of Science, Masters, Management, Entrepreneurship
Massachusetts Institute of Technology 1991 - 1992
Master of Science, Masters, Civil Engineering, Management, Engineering
University of Canterbury 1990 - 1990
William & Mary 1983 - 1987
Bachelors, Bachelor of Science, Mathematics, Physics
Skills:
Start Ups Business Strategy Product Development Business Development Strategic Planning Entrepreneurship Strategy Strategic Partnerships Venture Capital Patents Management Mergers and Acquisitions Crm Program Management Due Diligence Leadership Systems Engineering Marketing Strategy Product Design
Interests:
Family Telemark Skiing Design Technology Basketball Architecture Running Astronomy Woodworking
Sean Beliveau - Leesburg VA Edward R. Barrientos - Great Falls VA Yvan Beliveau - Blacksburg VA Thomas M. Hedges - Great Falls VA Eric J. Lundberg - Reston VA Edmund S. Pendleton - Arlington VA Timothy Pratt - Blacksburg VA Rick Slater - Reston VA Michael J. Sobel - Annandale VA
Assignee:
Arc Second, Inc. - Dulles VA
International Classification:
G01B 1126
US Classification:
3561414, 356 408
Abstract:
An improved low cost theodolite position measurement system and process which is particularly useful in enabling a single operator to conveniently set up the system and calculate elevation (el) and azimuth (az) angle data. Only a single optical transmitter is positioned within a predetermined workspace thus significantly decreasing equipment costs and setup time. The single transmitter is positioned and leveled at a predetermined point in the workspace. In operation the single rotatably mounted transmitter head illuminates the workspace volume with a pair of spaced apart precalibrated fan beams which sweep the space and a periodically emitted reference strobe pulse. At least one optical receiver is selectively positionable within said workspace so that during each revolution of said single transmitter head said receiver receives a first position strike and a second position strike of said fan beams. To determine elevation angle data, tracker logic means responsive to said receiver determines a first tie interval separation between receiving said first position strike and said second position strike and calculation means for converting said first time separation interval into an elevation angle data. To determine an azimuth angle data said receiver receives a strobe pulse and a fan beam position strike, both of which are repeatedly transmitted with a known periodicity, determining a measure of time separation related to the strobe pulse and the position strike, and converting the measure of time separation into the azimuth angle data utilizing the known periodicity.
Method And Optical Receiver With Easy Setup Means For Use In Position Measurement Systems
Thomas M. Hedges - Great Falls VA Scott C. Casteel - Fairfax VA Andrew Dornbusch - Austin TX Doug Gaff - Bluemont VA Edmund S. Pendleton - Arlington VA Michael J. Sobel - Annandale VA Frey Wain - San Francisco CA
Assignee:
ARC Second Inc. - Dulles VA
International Classification:
G01B 1126
US Classification:
3561414, 3561415
Abstract:
Positions can be precisely and accurately fixed instantaneously within a three-dimensional workspace. A system of two or more transmitters each continuously sweep the workspace with two fanned laser beams which are preferably about 90 degrees apart on the rotational axis of the transmitter. A receiving instrument includes, preferably, two light detectors which detect the time at which each fanned laser beam is incident thereon. The light detectors also detect a synchronization pulse from each transmitter that is emitted once per revolution. Beams from different transmitters are differentiated by different rotational speeds and, therefore, different beam incidence cycles. Because three intersecting planes uniquely define a point in three-dimensional space, by detecting at least three of the fan beams from the transmitters, the receiving instrument can calculate its position in the workspace. A Quick Calc setup procedure allows the use to define a desired coordinate system within the workspace.
Method And System For Creating A User-Selectable Arbitrary Coordinate Frame
Jeffrey F. Skolnick - Vienna VA Edward R. Barrientos - Great Falls VA Sean M. Beliveau - Leesburg VA Thomas M. Hedges - Great Falls VA Eric J. Lundberg - Reston VA Edmund S. Pendleton - Arlington VA Roger Wells - Kensington MD
Assignee:
ARC Second Inc. - Dulles VA
International Classification:
G01C 2126
US Classification:
701207, 356 301, 356622
Abstract:
A method and system allows conversion of three-dimensional data from a default coordinate frame to an arbitrary user-selected coordinate frame. The method includes obtaining position data in a default coordinate frame and transforming the data into an alternate coordinate frame defined by the user. The alternate coordinate frame can be defined by allowing the user to select a plane, an origin, and an axis, using any desired coordinate system and in any desired orientation. The transformed data allows presentation of position measurements in a form that is relevant to the users specific application.
Sean Svendsen - Columbus OH Paul Kolada - Bexley OH Jonathan A. Jackson - Centerville OH Edmund Pendleton - Arlington VA Sean Beliveau - Leesburg VA Martha Tracy - New Carlisle OH
Assignee:
Trimble Navigation Limited - Sunnyvale CA
International Classification:
1004
US Classification:
D10 65
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