The analysis of the different modeling in CST for predicting designs of a Monostatic and Bistatic RCS

Q3 Engineering
Diagnostyka Pub Date : 2023-08-18 DOI:10.29354/diag/169423
A. Bekimetov, Madina Yangibaeva
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引用次数: 0

Abstract

In this, research paper, we analyzed different radar cross-sections and models in Computer Simulation Technology (CST) software and tell in advance the RCS of the layer. In this variation exploration and representation of antenna layout in CST, we make a decision on various polarized plane wave angles. The research results may influence aircraft and any vehicle building, connecting with the incorporation of magnetic and electrical part power going return, therefore the polarization of plane waves, the use of different materials, aircraft, and any vehicle size. For this article, a microstrip antenna design with a reduced monostatic (RCS) with changing angle is described. Radar recognizes a reflected signal from this target due to microwave sensors' capacity to adequately light it with energy. The research used several both basic and sophisticated targets at an unaccompanied median rate of occurrence. Two categories of target forms, basic and complicated, made of iron material, give an appearance for assessing RCS in two distinct systems, Monostatic and Bistatic, with a range of angles.
CST中预测单站和双站RCS设计的不同建模分析
在本研究中,我们利用计算机仿真技术(Computer Simulation Technology, CST)软件对不同的雷达截面和模型进行了分析,并提前给出了层的RCS。在CST天线布局的变化探索和表示中,我们决定了不同的极化平面波角。研究结果可能会影响飞机和任何车辆的建造,与磁性和电气部分的结合功率走回,因此平面波的极化,不同材料的使用,飞机和任何车辆的尺寸。本文介绍了一种微带天线的减角单站天线设计。雷达识别来自这个目标的反射信号,因为微波传感器有能力用能量充分照亮它。这项研究使用了几个基本的和复杂的目标,它们的出现率都是中等的。两类目标形式,基本的和复杂的,由铁材料制成,给出了在两个不同的系统中评估RCS的外观,单稳态和双稳态,具有一系列的角度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Diagnostyka
Diagnostyka Engineering-Mechanical Engineering
CiteScore
2.20
自引率
0.00%
发文量
41
期刊介绍: Diagnostyka – is a quarterly published by the Polish Society of Technical Diagnostics (PSTD). The journal “Diagnostyka” was established by the decision of the Presidium of Main Board of the Polish Society of Technical Diagnostics on August, 21st 2000 and replaced published since 1990 reference book of the PSTD named “Diagnosta”. In the years 2000-2003 there were issued annually two numbers of the journal, since 2004 “Diagnostyka” is issued as a quarterly. Research areas covered include: -theory of the technical diagnostics, -experimental diagnostic research of processes, objects and systems, -analytical, symptom and simulation models of technical objects, -algorithms, methods and devices for diagnosing, prognosis and genesis of condition of technical objects, -methods for detection, localization and identification of damages of technical objects, -artificial intelligence in diagnostics, neural nets, fuzzy systems, genetic algorithms, expert systems, -application of technical diagnostics, -diagnostic issues in mechanical and civil engineering, -medical and biological diagnostics with signal processing application, -structural health monitoring, -machines, -noise and vibration, -analysis of technical and civil systems.
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