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A new approach to develop a template based load model that can dynamically adopt different types of non-linear loads
14
Citations
9
References
2017
Year
Unknown Venue
EngineeringPower Grid OperationEnergy EfficiencyStructural OptimizationLoad ControlDifferent TypesStructural EngineeringHigh-rate LoadingSystems EngineeringHuge HarmonicsModeling And SimulationElectric Power QualityEnergy Demand ManagementElectrical EngineeringComputer EngineeringPower NetworkLoad ModelSmart GridEnergy ManagementLoad ShiftingPower QualityNon-linear LoadsStructural MechanicsDemand Response
In modern days, residential and commercial users use various types of loads most of which produce huge harmonics. Though most of the people are using more energy efficient power equipment's due to high costing of electric power consumption, but they have a little concern on power quality. A comprehensive study is required to find out the evaluation of the effects of the nonlinear loads of different combination on the overall power quality of a distributed network. There are different indices for power quality that would be maintained in utilities to ensure harmless operation of the power supply network including generators, transmission lines and transformers. In this paper, our focus is to develop an integrated load model that can dynamically adopt different types of loads so that we can conclude theoretically on the power quality parameters on any combination of load.
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