To develop a reliable and cost effective communication platform for the telemedicine applications, novel antenna design has been presented using bacterial foraging optimization (BFO) technique. The proposed antenna geometry is achieved by etching a modified Koch curve fractal shape at the edges and a square shape slot at the center of the radiating element of a patch antenna. It has been found that the new antenna has achieved 43.79% size reduction and better resonating characteristic than the original patch. Representative results for both simulations and numerical validations are reported in order to assess the effectiveness of the developed methodology
Abstract A comparative study of the use of bio-inspired optimization technologies including the Cuck...
An optimization-based methodology for the design of miniaturized microstrip gives an automated proce...
The Sierpinski Carpet fractal antenna is studied in terms of optimality. A 3D full-wave FDTD model o...
To develop a reliable and cost effective communication platform for the telemedicine applications, n...
A simple design procedure to realize an optimum antenna using bacteria foraging algorithm (BFA) is p...
Abstract—Recently the Bacterial foraging optimization algorithm (BFA) has attracted a lot of attenti...
This paper is aimed at proposing a rhombus shaped wearable fractal antenna for wireless communicatio...
Given the proper conditions, antennas applied in medicine can offer improved quality of life to pati...
This paper presents a social spider optimization (SSO) design of a small-size microstrip antenna. Tw...
In future the growth of telecommunication systems plays a major role in daily life. So one has to de...
This article presents the design of a miniaturized wearable patch antenna to be utilized for the bod...
A method increasingly used to uniquely identify objects (be they pieces of luggage, transported good...
This study investigates the optimized Sierpinski carpet fractal patch antenna and also explores the ...
The radiation pattern and other electrical characteristics of an antenna primarily depend on its siz...
This thesis studies the effectiveness of bio-inspired optimization algorithms in controlling adaptiv...
Abstract A comparative study of the use of bio-inspired optimization technologies including the Cuck...
An optimization-based methodology for the design of miniaturized microstrip gives an automated proce...
The Sierpinski Carpet fractal antenna is studied in terms of optimality. A 3D full-wave FDTD model o...
To develop a reliable and cost effective communication platform for the telemedicine applications, n...
A simple design procedure to realize an optimum antenna using bacteria foraging algorithm (BFA) is p...
Abstract—Recently the Bacterial foraging optimization algorithm (BFA) has attracted a lot of attenti...
This paper is aimed at proposing a rhombus shaped wearable fractal antenna for wireless communicatio...
Given the proper conditions, antennas applied in medicine can offer improved quality of life to pati...
This paper presents a social spider optimization (SSO) design of a small-size microstrip antenna. Tw...
In future the growth of telecommunication systems plays a major role in daily life. So one has to de...
This article presents the design of a miniaturized wearable patch antenna to be utilized for the bod...
A method increasingly used to uniquely identify objects (be they pieces of luggage, transported good...
This study investigates the optimized Sierpinski carpet fractal patch antenna and also explores the ...
The radiation pattern and other electrical characteristics of an antenna primarily depend on its siz...
This thesis studies the effectiveness of bio-inspired optimization algorithms in controlling adaptiv...
Abstract A comparative study of the use of bio-inspired optimization technologies including the Cuck...
An optimization-based methodology for the design of miniaturized microstrip gives an automated proce...
The Sierpinski Carpet fractal antenna is studied in terms of optimality. A 3D full-wave FDTD model o...