Yayın: Design Optimization of LNAs and Reflectarray Antennas Using the Full-Wave Simulation-Based Artificial Intelligence Models with the Novel Metaheuristic Algorithms
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item.page.editor
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Bölüm / Program
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SPRINGER
DOI
10.1007/978-3-319-27517-8_11
Özet
In this chapter, the two primarily important highly nonlinear design problems of the contemporary microwave engineering which are Low Noise Amplifier (LNA)s and Reflect-array Antenna (RA)s are solved as Design Optimization problems. For this purpose, firstly the design problem is defined in terms of the feasible design variables (FDVs), the feasible design target space (FDTS), both of which are built up by integrating the artificial intelligence black-box models based upon the measurements or full-wave simulations and a suitable metaheuristic search algorithm. In the second stage, feasible design target (FDT) or objective function of the optimization procedure is determined as a sub-space of the FDTS. Thirdly, the cost function evaluating the objective is minimized employing a suitable metaheuristic search algorithm with respect to the FDVs. Finally the completed designs are verified by the professional Microwave Circuitor3-D EM simulators.
Tanım
Dergi veya Seri
SIMULATION-DRIVEN MODELING AND OPTIMIZATION
ISSN
2194-1009
ISBN
978-3-319-27517-8; 978-3-319-27515-4
Haklar
Anahtar Kelimeler
Microwave engineering , Low-noise amplifier , Reflectarray , Full-wave simulation , Artificial intelligence , Metaheuristic search algorithm , Feasible design target space , Feasible design variables , SUPPORT VECTOR SYNTHESIS , NEURAL-NETWORK MODEL , PERFORMANCE CHARACTERIZATION , MICROWAVE TRANSISTOR , SMALL-SIGNAL , NOISE , AMPLIFIER , POWER , Mathematics