2007 · 60 citations · 16 references
Forecasting MethodologyEngineeringComputational GridLoad ControlNew Hybrid ModelLoad PredictionSystems EngineeringModeling And SimulationPredictive AnalyticsDemand ForecastingEnergy ForecastingComputer EngineeringForecastingEnergy PredictionQueueing SystemsSmart GridEnergy ManagementRobust ModelingReal-time SystemsSchedule AlgorithmsGrid OptimizationResource Optimization
Due to the dynamic nature of grid environments, schedule algorithms always need assistance of a long-time-ahead load prediction to make decisions on how to use grid resources efficiently. In this paper, we present and evaluate a new hybrid model, which predicts the <i xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">n</i> -step-ahead load status by using interval values. This model integrates autoregressive (AR) model with confidence interval estimations to forecast the future load of a system. Meanwhile, two filtering technologies from signal processing field are also introduced into this model to eliminate data noise and enhance prediction accuracy. The results of experiments conducted on a real grid environment demonstrate that this new model is more capable of predicting <i xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">n</i> -step-ahead load in a computational grid than previous works. The proposed hybrid model performs well on prediction advance time for up to 50 minutes, with significant less prediction errors than conventional AR model. It also achieves an interval length acceptable for task scheduler.
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Digital Spectral Analysis with Applications.
B. Porat, S.L. Marple · Mathematics of Computation · 1988 · 2.7K citations
Host load prediction using linear models
Peter A. Dinda, David R. O’Hallaron · Cluster Computing · 2000 · 246 citations