Optimization of Radiation Characteristics of Linear Focusing Array Consisting of Semitransparent Mirrors

Q3 Engineering
Mykhaylo Andriychuk, Victor Tkachuk
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引用次数: 0

Abstract

The paper is devoted to the optimization of the radiation characteristics of a linear focusing array, which consists of a set of semitransparent inclined elements (mirrors), an excitation source, and an end opaque mirror. The array geometry satisfies the quasi-optical conditions, while the inclination of mirrors is set in such a way that the array allows us to focus the scattered field in the Frenzel zone and the far zone. The formation of a radiation pattern (RP) close to the specified one, or the provision of maximum radiation in the given region of angular coordinates is achieved by choosing the reflection and transmission coefficients of semitransparent elements of the array. To ensure these requirements, a variational statement of the optimization problem is used. The maximization of corresponding functionals is achieved numerically by the methods of successive approximations. Numerical experiments demonstrate high accuracy in fulfilling the requirements of the radiation characteristics which is also confirmed by experimental data.

Abstract Image

优化由半透明反射镜组成的线性聚焦阵列的辐射特性
摘要 本文致力于优化线性聚焦阵列的辐射特性,该阵列由一组半透明倾斜元件(反射镜)、一个激励源和一个末端不透明反射镜组成。该阵列的几何形状满足准光学条件,而镜子的倾斜度设置方式使该阵列能够将散射场聚焦在弗伦泽尔区和远区。通过选择阵列半透明元件的反射和透射系数,可以形成接近指定辐射模式(RP),或在给定的角坐标区域提供最大辐射。为了满足这些要求,我们采用了优化问题的变分法。相应函数的最大化通过逐次逼近的方法在数值上实现。数值实验证明,该方法在满足辐射特性要求方面具有很高的准确性,实验数据也证实了这一点。
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来源期刊
Radioelectronics and Communications Systems
Radioelectronics and Communications Systems Engineering-Electrical and Electronic Engineering
CiteScore
2.10
自引率
0.00%
发文量
9
期刊介绍: Radioelectronics and Communications Systems  covers urgent theoretical problems of radio-engineering; results of research efforts, leading experience, which determines directions and development of scientific research in radio engineering and radio electronics; publishes materials of scientific conferences and meetings; information on scientific work in higher educational institutions; newsreel and bibliographic materials. Journal publishes articles in the following sections:Antenna-feeding and microwave devices;Vacuum and gas-discharge devices;Solid-state electronics and integral circuit engineering;Optical radar, communication and information processing systems;Use of computers for research and design of radio-electronic devices and systems;Quantum electronic devices;Design of radio-electronic devices;Radar and radio navigation;Radio engineering devices and systems;Radio engineering theory;Medical radioelectronics.
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