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They're seeing exactly how people are actually using their iPhones with their own apps — not how benchmarks power-drain them by running the CPUs at peak for sustained periods; something that is unlikely to happen in real-world situations.
PowerBench [13] is a scalable testbed infrastructure for benchmarking power consumption.
The controller design methodology is validated by simulating a two-area power benchmark power system.
The proposed technique is illustrated with a two-area benchmark power system.
The Power and Energy Society of the Institute of Electrical Engineers of Japan (IEEJ) prepared benchmark power system models for transient stability (TS) simulations.
As a benchmark power station, a 250 MW unit in the Shahid-Rajaei steam power was considered for optimization.
Among those, the West-10 benchmark power system model approximately represents the long radial power system in the western part (60-Hz part) of Japan with ten generators.
The proposed control scheme is tested on a two-area benchmark power system in the face of a symmetrical three-phase short circuit fault.
The performance of the designed controller is demonstrated by large disturbance simulations on a benchmark power system for various types of loads.
The results of numerical simulations for benchmark power systems (with 14 and 300 buses), empowered with the data needed for forecast analysis, are provided in Section 5, and concluding remarks are presented in Section 6.
Kundur's four-machine two-area benchmark power system and six-machine three-area power system are used with the aim of assessing the effectiveness of the proposed stabilizer.
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