角喇叭天线方向特性分析

Kateryna Andriivma Shyshkova
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摘要

本文认为喇叭天线属于孔径天线的一类,通常包括一个声波反射器和一个电声换能器。对于转角天线形式的电声换能器技术实现的变体,解决了转角天线的声发射问题。考虑了发射声波在天线设计要素中的重复反射。对这种天线声学特性的研究是在考虑了若干假设的情况下进行的。什么材料,吸口壁的厚度是无穷小的。这些条件由已知的无穷远处的辐射条件补充。上述假设使得角喇叭天线声辐射问题的求解大大简化成为可能。为此,采用与天线物理模型相对应的多连通域中的连通场法求解边界条件下的亥姆霍兹方程。这种天线的辐射场以三个局部区域的形式表示,然后,根据局部区域的方法-以傅立叶级数展开的形式,其系数通过求解描述压电换能器振荡和波动过程的微分方程来确定。在与它接触的声学环境中。将Helmholtz方程的解简化为无穷线性代数方程组的解,考虑到上述假设以及部分域边界处的场连续条件,得到了无穷线性代数方程组。在此基础上,得到了归一化辐射方向图的近似表达式。通过表达式的直接分析来研究角天线方向特性的特征是不可能的。因此,基于计算机计算得到的大范围波大小和角天线几何特性的指向性图,进行了这样的研究。圆柱形电声换能器。在所有的计算中,振荡速度在发射器表面的均匀分布被选择。分析得到的数据,有一个明显的依赖图案的形状与扬声器的波大小的大小。这表现在主花瓣分裂成两个甚至三个花瓣的事实,以及增加图案的整体清晰度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Directional Properties of Angular Horn Antenna
In this paper, horn antennas are considered to belong to the class of aperture antennas which usually include a sound wave reflector and an electroacoustic transducer. For the variant of technical implementation of the electroacoustic transducer in the form of a corner antenna, the problem of sound emission by such an antenna is solved . taking into account the repeated reflection of emitted sound waves from the antenna design elements. The study of the acoustic properties of such an antenna was carried out taking into account a number of assumptions. 'what material, the thickness of the walls of the mouthpiece is infinitesimal. These conditions are supplemented by the known conditions of radiation at infinity. All the above assumptions make it possible to greatly simplify the solution of the problem of sound radiation by an angular horn antenna. To do this, the Helmholtz equation under boundary conditions was solved by the method of connected fields in multiconnected domains, corresponding to the physical model of the antenna. The radiation field of such an antenna is presented in the form of three partial regions, which in turn, according to the method of partial regions - in the form of Fourier series expansions, the coefficients of which are determined by solving differential equations describing piezoceramic transducer oscillations and wave processes. in acoustic environments in contact with it. The solution of the Helmholtz equation is reduced to the solution of an infinite system of linear algebraic equations taking into account the above assumptions, as well as the conditions of field continuity at the boundary of partial domains, we obtain an infinite system of linear algebraic equations. Based on the system, an approximate expression for the normalized radiation pattern is obtained. Studying the features of the directional properties of the angular antenna by direct analysis of the expression is not possible. Therefore, such a study was carried out on the basis of calculated directivity diagrams obtained using a computer for a wide range of wave sizes and geometrical characteristics of the angular antenna. cylindrical electroacoustic transducers. In all calculations, a uniform distribution of the oscillating velocity on the surface of the emitter was chosen Analyzing the obtained data, there is a pronounced dependence of the shape of the pattern on the magnitude of the wave size of the speaker. This is manifested in the fact that the main petal splits into two or even three petals, as well as in increasing the overall sharpness of the pattern.  
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