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A Time-Based Approach for the Synthesis of Antennas for UWB Communication Systems

机译:一种基于时间的UWB通信系统天线综合方法

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摘要

In Ultra‐Wideband (UWB) Communications, the design of the radiating system is a very demanding task. Since high data rates are obtained by transmitting very short temporal pulses, the correct reception of the transmitted waveforms plays a fundamental role to guarantee the reliability of the whole UWB system. Under these hypotheses the design of the antennas as independent devices is no more acceptable. Consequently, customized synthesis techniques are needed [1] as well as appropriate analysis tools for an accurate description of the behavior of the antennas in the time domain [2]. In this paper, an innovative approach for the design of antennas compliant to the UWB requirements is presented. In such an approach, the whole system constituted by both transmitting/receiving antennas and the communication channel is modeled in order to allow an accurate characterization of the whole set of interactions and mutual effects. Besides a good impedance matching over the operating bandwidth, UWB antennas are characterized by distortionless propagation properties suitable to assure a correct reception of the UWB waveforms. Towards this end, a Particle Swarm Optimizer (PSO) [3] is suitably integrated into a time‐domain (FDTD) electromagnetic simulator.
机译:在超宽带(UWB)通信中,辐射系统的设计是一项非常艰巨的任务。由于通过发送非常短的时间脉冲可获得高数据速率,因此正确接收发送波形起着至关重要的作用,可确保整个UWB系统的可靠性。在这些假设下,不再需要将天线设计为独立设备。因此,需要定制的合成技术[1]以及适当的分析工具,以准确描述时域中天线的行为[2]。在本文中,提出了一种符合UWB要求的创新天线设计方法。在这种方法中,对由发射/接收天线和通信信道组成的整个系统进行建模,以允许对整个交互作用和互作用进行准确的表征。除了在工作带宽上具有良好的阻抗匹配之外,UWB天线还具有无失真传播特性,这些特性适合于确保正确接收UWB波形。为此,将粒子群优化器(PSO)[3]适当地集成到时域(FDTD)电磁模拟器中。

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