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Infolytica MotorSolve 4.1.1

AC Synchronous Reluctance Machine for Traction Application

In this example, a 55 KW traction motor is designed using a stator that was originally designed for a squirrel cage induction motor for a similar output rating and application. The design of the new machine uses the stator of the induction machine and only the rotor geometrical parameters and configurations are used as free design parameters to achieve the target performance criterion.

Shows the variable wind speed MPPT tracker with a battery load.
Battery Charging with Maximal Peak Power Tracking

A maximal peak power tracking (MPPT) example for wind power plant is implemented in this example. The load is a battery that is subjected to a variable speed realistic wind profile. The system simulated consist of the following components; a wind turbine, a planetary gear system, a generator, a load (battery) and a 3-phase bridge regulator for the generator.
Designing a Servo Motor

The sizing feature of MotorSolve can be used to obtain an initial design of a motor model at the onset on the motor design process. It is an automated feature which uses as input, the target performance specifications and design constraints of the motor, and outputs a complete design including model dimensions and winding details including winding layout, phase coil details and end turn electrical parameters.
Investigating the Complex Characteristics of an Hybrid Electric Vehicle Motor

HEV motors are characterized by high power density and high output torque over a wide range of operational speeds. Field weakening and operation in the constant-power speed range (CPSR) is key to operating at a wide range of vehicle speeds without the need for excessive gearing. MotorSolve is able to provide useful results to investigate these complex characteristics.
Product:Infolytica MotorSolve 4.1.1
Lanaguage:english
Platform:Win7/WIN8
Size:112 MB