锥形和楔形微波吸收器的性能仿真

Hassan Nornikman, P. Soh, A. Azremi, M. S. Anuar
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引用次数: 34

摘要

暗室的信号吸收能力直接关系到暗室的性能。实现信号吸收的主要因素之一是设计吸收器时使用的设计和材料。两种主要类型是金字塔形和楔形。在这项工作中,设计了用于消声室的截锥体和截楔形吸收器,它们在1 - 10 GHz的微波频率范围内有效工作。利用不同特征和涂层厚度的碳基材料对吸收器进行了模拟,以提高吸收器的性能并显著节省材料成本。对基本锥体和楔形结构的材料考虑也被考虑在内。利用CST Microwave Studio对设计进行了仿真。模拟结果表明,涂层厚度为吸收器高度的一半时,信号吸收效果最好。
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Performance Simulation of Pyramidal and Wedge Microwave Absorbers
Anechoic chambers signal absorption capability is directly correlated to its performance. One of the main components in enabling signal absorption is the design and material used in designing the absorbers. Two of the main types are pyramidal and wedge-shaped ones. In this work, truncated pyramidal and truncated wedge absorbers for anechoic chamber application have been designed to operate effectively in the microwave frequencies from 1 - 10 GHz. The absorbers were simulated using a fusion of carbon-based material with different features and coating thickness to improve their performance and significant material cost savings. Material consideration for the basic pyramidal and wedge structure has also been taken into account. The designs are simulated using CST Microwave Studio. Simulated results showed that the coating of half the absorber height produced the best performance in terms of signal absorption.
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