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The process-group based synthesis method is developed on the basis of the computer aided molecular design methods and gives the ability to screen numerous process alternatives without the need to use the rigorous process simulation models.
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The PG-based synthesis method is developed using the same principles as the computer aided molecular design methods and gives the ability to generate and screen process alternatives without the need to use the rigorous process simulation models.
At the second level (task-scale) a task-based synthesis method is applied where one or more tasks representing unit operations are identified and analyzed in terms of means-ends for generating intensified flowsheet alternatives.
At the third level (phenomena-scale) a phenomena-based synthesis method is applied, where the involved phenomena in various tasks are identified, manipulated and recombined to generate new and/or existing unit operations configured into flowsheet alternatives that target the tasks associated with hot-spots.
In [21], an Active Appearance Model- (AAM-) based face synthesis method is applied for face recognition subject to relatively small pose variations.
The control system architecture based on mixed H2/H∞ synthesis method is introduced for a class of parallel platforms as a multiple-input/multiple-output (MIMO) problem for the purpose of active vibration isolation.
The synthesis method is based on a group contribution based hybrid approach, where chemical process flowsheets are synthesized in the same way as atoms or groups of atoms are synthesized to form molecules in computer aided molecular design (CAMD) techniques.
The synthesis method is based on dividing infinite precision filter design into second order sections.
The synthesis method is based on H∞ norm minimisation in the frequency domain for stable processes with known frequency responses.
H2 tuning controller parameters synthesis method is based on minimization of the proximity criteria of transient responses for an open loop control system and its implicit reference model.
The proposed synthesis method is based on decomposing the closed-loop model into a multi-gain switched static output-feedback form.
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