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Due to the facts on the dengue widespread, controlling the growth of Aedes aegypti becomes global health concern of the world communities, especially in tropical and subtropical countries. Contribution of indoor and outdoor life cycle of Aedes aegypti is taken into account in this thesis. The basic...
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id-itb.:162162017-09-27T14:41:42Z#TITLE_ALTERNATIVE# PUTRA WIJAYA (NIM. 20111044), KARUNIA Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/16216 Due to the facts on the dengue widespread, controlling the growth of Aedes aegypti becomes global health concern of the world communities, especially in tropical and subtropical countries. Contribution of indoor and outdoor life cycle of Aedes aegypti is taken into account in this thesis. The basic offspring of mosquito dynamic is used to analyze the stability of mosquito-free equilibrium. Comprehensive analysis on existence and stability of positive non-trivial equilibrium are shown. Further work deals with the simulation of Aedes aegypti dynamic based on optimal control model with time-dependent inputs. The inputs are expressed in the form of temephos spraying and fumigation, related <br /> <br /> <br /> <br /> <br /> <br /> <br /> <br /> <br /> <br /> <br /> <br /> <br /> <br /> <br /> to daily application in the …eld. Application of Lagrangian Multiplier and Gradient Descent method are used in the model. For management purposes, numerical simulations are given for various optimal control scenarios. text |
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Due to the facts on the dengue widespread, controlling the growth of Aedes aegypti becomes global health concern of the world communities, especially in tropical and subtropical countries. Contribution of indoor and outdoor life cycle of Aedes aegypti is taken into account in this thesis. The basic offspring of mosquito dynamic is used to analyze the stability of mosquito-free equilibrium. Comprehensive analysis on existence and stability of positive non-trivial equilibrium are shown. Further work deals with the simulation of Aedes aegypti dynamic based on optimal control model with time-dependent inputs. The inputs are expressed in the form of temephos spraying and fumigation, related <br />
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to daily application in the …eld. Application of Lagrangian Multiplier and Gradient Descent method are used in the model. For management purposes, numerical simulations are given for various optimal control scenarios. |
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PUTRA WIJAYA (NIM. 20111044), KARUNIA |
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PUTRA WIJAYA (NIM. 20111044), KARUNIA #TITLE_ALTERNATIVE# |
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PUTRA WIJAYA (NIM. 20111044), KARUNIA |
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PUTRA WIJAYA (NIM. 20111044), KARUNIA |
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