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A robust load-sharing control scheme for parallel-connected multisystems
63
Citations
9
References
2000
Year
Load Balancing (Computing)EngineeringNetworked ControlParallel-connected MultisystemsPower Electronics ConverterPower ElectronicsSystems EngineeringPower System ControlParallel ComputingElectrical EngineeringDc MicrogridsSlave SystemComputer EngineeringDistributed Control SystemSmart GridEnergy ManagementTension ControlSteel MillPower Inverter
Parallel connection of inverters or converters is one useful method for solving the high power requirements. However, a load-sharing problem among parallel-connected systems is not an easy task, since crosstalk may take place among the subsystems. We develop a general methodology for solving the load sharing problem using the master-slave concept. In synthesizing the input to the slave system, we utilize system-dynamics-dependent filters. With the proposed method, we can equally distribute the load, or can give a certain offset (in load) to a specific subsystem. To show the usefulness of the proposed control scheme, we perform a simulation study with two practical systems: a current-balancing control in parallel-connected pulsewidth modulation converters and a speed and tension control for a bridle roll system in a steel mill.
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