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With the potential to enhance the power system's operational flexibility in a cost-effective way, demand response is gaining increased attention worldwide. Industrial loads such as cement crushing plants consume large amounts of electric energy and therefore are prime candidates for the provision of significant amounts of demand response. They have the capability to turn on/off an arbitrary number...
Demand response is seeing increased popularity worldwide and industrial loads are actively taking part in this trend. As a host of energy-intensive industrial processes, steel plants have both the motivation and potential to provide demand response. However, the scheduling of steel plants is very complex and the involved computations are intense. In this paper, we focus on these difficulties and propose...
Coordinating production scheduling decisions with the process control system requires considering the evolution of the process over multiple time scales and at multiple levels of detail. From a mathematical perspective, this requires dealing with process models that are large-scale, ill-conditioned and involve both continuous and discrete variables (the former related to physical states, while the...
Demand response has gained significant attention in recent years as it demonstrates potentials to enhance the power system's operational flexibility in a cost-effective way. Industrial loads such as steel manufacturing plants consume large amounts of electric energy, and their electricity bills account for a remarkable percentage of their total operation cost. Meanwhile, lots of industrial loads are...
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