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- W2550795952 abstract "In this work, the same Honey Bee Mating Optimization as in (1), this time is applied to design of the input and output microstrip matching circuits to provide the source ZS and load ZL terminations ensuring the selected performance quadrate to the transistor, respectively for the desired performance triplets (Vin, F(f), GT) (1,2). In this implementation, the populations of the Queen Candidates and Drones are deflned in terms of the widths ~ W and lengths ~ of the input and output microstrip matching circuits to determine the fltness values or estrogen values of the bees. Among the female bees probabilistically mating with the drones, the one with the flttest gens or estrogen level will be chosen as the Queen bee, in the other words, the best solution for optimization problem. On the other hand, the multi-objective design optimization procedure of the amplifler is reduced into the single objective design procedures of the input/output matching circuits using Darlington realizations of the quadrate ZS, ZL terminations. It can be concluded that in this work, all the constituents of the HBMO design optimization are deflned rigorously and at the output, all the microstrip lengths and widths of the input and output matching circuits are obtained to be printed on a selected dielectric substrate. Finally as a work example the design of a typically ultra-wide band low noise amplifler with NE3512S02 is presented on a substrate of Rogers 4350 (r = 3:48, h = 1:524mm, tan- = 0:003, t = 0:001mm) within 2{5GHz satisfying (Vin = 1:5, F = Fmin(f), GT = 10dB) triplet using the T type of microstrip matching circuit and verifled using the circuit simulator AWR." @default.
- W2550795952 created "2016-11-30" @default.
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- W2550795952 date "2013-01-01" @default.
- W2550795952 modified "2023-09-27" @default.
- W2550795952 title "Design Optimization of Microstrip Matching Circuits Using a Honey Bee Mating Algorithm Subject to the Transistor's Potential Performance" @default.
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