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Membrane performs close to its intrinsic separation properties if it is operated at high feed pressures, under which conditions the effect of pressure build-up on the membrane performance is minimized.
Training stops while any of these following situations are happening: (1) The highest number of epochs is achieved; (2) The highest amount of training time is beaten; (3) Performance is minimized to the target and (4) Validation time beats higher than maximum fails.
Based on a simple genetic algorithm, a set of PID parameters can be obtained such that the robust stability for the closed-loop system is guaranteed, the tracking performance is minimized subject to certain related cost function, and the disturbance rejection ability (H∞ performance) subject to a prescribed attenuation level can also be achieved.
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The filters are identified from a set of data generated from an experiment to the closed-loop system so that the discrepancies between the design and the actual closed-loop performances are minimized.
In this paper, mixed H2 / H∞ performance index is minimized under the constraint of H2 performance, the constraint of H∞ performance and the regional pole placement.
In this pattern, the total travel time spent on the network (i.e., the network performance index) is minimized.
Then these GUAS results are used to derive the conditions under which a dissipative DIHS is asymptotically stabilized and the hybrid performance functional is minimized.
The unknown input psd matrix is determined such that the reliability index associated with a specified structure performance function is minimized.
The objective is to provide a fully distributed estimation&control scheme that stabilizes the plant while the upper bound of a given quadratic performance index is minimized.
The goal is to obtain the optimal tuning parameters for the input scaling factors where the ITAE performance index is minimized.
In the optimization section, the computation of the monomer feed rate is performed because the solution of a constrained optimization problem where the batch time is the performance index which is minimized and the difference between the specified and obtained PSDs (error) and the heat removal capacity of the reactor jacket enter as constrains.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com