MotorSolve ELECTRIC MACHINE DESIGN SOFTWARE Motor designers can rapidly simulate and get machine performance characteristics using MotorSolve, the powerful software that offers their complete analysis needs in one design environment. The template-based interface combined with the variational geometry modeling makes the software easy to use yet flexible enough to handle virtually any motor design. Rotor and stator geometries can also be directly imported. More on the MotorSolve templates & modules available. MotorSolve user interface version 5 MotorSolve simulates machine performance using an automated finite element analysis engine.
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There is no need to construct the model, perform mesh refinements and extensive post-processing to extract motor related results. MotorSolve performs these operations for the user. Need to do a quick initial design check? Validating your final spec? Or somewhere in between?
Choose from several analysis modes available for the speed versus accuracy level required. MotorSolve Thermal couples electromagnetic and thermal analysis for a complete motor performance profile. New in Version 5 Improved the geometry modeler and interface Scripting engine for customization and batching Efficiency maps and surface force density predictions Exterior rotor IM template.
Overview Automotive manufacturers are always looking for ways to increase efficiency in the design process and reduce their product's time-to-market. This webinar introduces Infolytica's MotorSolve 6.0 and its quick and easy virtual prototyping abilities.
Attendees will come away with an understanding of MotorSolve 6.0's new 2017 features for motor and generator analysis for both hybrid & electric vehicles. Of special importance is DC bus power generation, including battery charging through energy recovery during braking. The presentation uses BMW's traction motor-generator-used to power the unique 2012 carbon-composite i3 electric vehicle-as a practical example.
Jim Hendershot, FELLIW IEEE & CEO MOTORSOLVER LLC Jim Hendershot has 40 years of experience in practical hands-on PM & SR brushless motor design, manufacturing and development. With past key employments at United Technologies, General Motors, Clifton Precision, Berger Lahr & Pacific Scientific, he has designed hundreds of brushless motors for computer disc drives, servo systems, high speed machine tool spindles, traction drives, hybrid vehicles, micro-turbine and diesel generators. He has written numerous technical papers, publications and given tutorials on many different electric motor topics.
Hendershot is the co-author with Professor TJE Miller of one of the leading text books on Permanent Magnet Brushless Motors and Generator Design. (ISBN 1-881855-03-1).