Array element failure correction method based on improved whale optimization algorithm
An optimization algorithm and correction method technology, applied in the field of array antennas, can solve the problems of slow convergence speed and convergence accuracy need to be further improved, and achieve the effect of improving convergence speed and convergence accuracy, enhancing global convergence, and enriching individual information.
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[0047]The present invention will be described in detail below in conjunction with specific embodiments.
[0048] The present invention provides an array element failure correction method based on an improved whale optimization algorithm, comprising the following steps:
[0049] Step 1: For an equidistant uniform linear array of N elements, assuming that each array element is isotropic, the normalized array factor of the array antenna is:
[0050]
[0051] In the formula, I n is the excitation current of the nth array element; k 1 is the wave number, k 1 =2π / λ, λ is the space free wavelength; j is the imaginary number unit, d is the distance between the array antenna elements at equal intervals, u=cosθ, θ is the angle between the ray direction and the array axis;
[0052] Combined with the maximum sidelobe level and beam width of the antenna, the fitness function is constructed as:
[0053] Fitness=max[AF(θ)]+k 2 ·max(0,|BW d -BW c |-0.05)
[0054] where k 2 is the ...
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