2019
DOI: 10.4236/jmp.2019.108059
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Expansion of a Y-Shaped Antenna Array and Optimization of the Future Antenna Array in Malaysia for Astronomical Applications

Abstract: To achieve high quality images from the sky by extending an existing interferometric array, in this work, the Geometrical Method (GM), Genetic Algorithm (GA), and Division Algorithm (DA) are compared. These methods are each applied independently to an interferometer array starting from the same initial conditions. Using the GM method, the spiral configuration is suggested as an optimum arrangement that provides the desired u-v coverage with low side lobe levels (SLLs). Using the GA method, as the number of gen… Show more

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Cited by 6 publications
(5 citation statements)
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“…As previously mentioned, this study follows the DA, which is faster, simpler, more flexible, and precise than the GA for optimization, since it overcomes the disadvantages of GA [26,43]. For example, the DA could work without operators like crossover and mutation and reduce the complexity.…”
Section: Optimization Problemmentioning
confidence: 99%
“…As previously mentioned, this study follows the DA, which is faster, simpler, more flexible, and precise than the GA for optimization, since it overcomes the disadvantages of GA [26,43]. For example, the DA could work without operators like crossover and mutation and reduce the complexity.…”
Section: Optimization Problemmentioning
confidence: 99%
“…Grid-connected microgrids are connected to the national power grid [ 42 , 43 ]. When the local power generation units and microgrids cannot provide power, the required electricity is supplied through the national power grid, and the lack of produced electricity is provided through the grid.…”
Section: Microgridsmentioning
confidence: 99%
“…In recent years, a new optimization algorithm was developed to overcome the weaknesses of the widely used GA [51]. This improved optimization algorithm is called the division algorithm (DA).…”
Section: Division Algorithm (Da)mentioning
confidence: 99%