Search results for "Matlab®"

showing 2 items of 2 documents

Numerical implementation of active power flow tracing methods: Practical implications on transmission networks and DR programs support

2015

The goal of this paper is to demonstrate the powerful contribution of the electric active power flow tracing methods on studying the electric transmission systems operating conditions. The tracing methods allow to impute to every generation unit and/or load the responsibility of the power flows of all the elements connected to the network. This study propose the numerical implementation of two different tracing methods on two transmission networks through Matlab® scripts developed on purpose; then the analysis is focused on identifying the loads which mostly affect the power line flows of the system. The results of this analysis point out the loads on which the application of the Demand Res…

Computer scienceDistributed computingupstream- and downstream-looking algorithmselectric transmission systemTracingDemand ResponseNeplan®computer.software_genrePower (physics)Demand responseSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaElectric power transmissionTransmission (telecommunications)Scripting languageMatlab®Point (geometry)MATLABcomputerpower flow tracingcomputer.programming_language
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A novel improved matlab-based software for the electric and magnetic analysis and design of rotating electrical machines

2015

The aim of this paper is to present a software for the analysis and design of windings of rotating electrical machines, considering both the electric and the magnetic specifications on the machine. The considered machines are induction motors (IM) and PM synchronous motors (PMSM). The software accounts for the case of buried magnets (IPMSM), but with some limits, because the calculations require a much more detailed analysis regarding the magnetic circuit. However, this initial limitation of the software, that will be removed in a later version, does not constitute a major limitation as confirmed by the examples presented in this paper.

magnetic characteristicElectric motorEngineeringair gap flux densitybusiness.industryControl engineeringStator windingSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciAC motorwindingMagnetic circuitSoftwareRotorElectromagnetic coilMagnetMATLAB®winding factorsbusinessSynchronous motorAir gapHarmonic analysiSoftwareInduction motoroftware2015 Tenth International Conference on Ecological Vehicles and Renewable Energies (EVER)
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