超宽带天线的特性

T. Sarkar, M. Salazar-Palma
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引用次数: 0

摘要

有两种不同的方式与宽带信号进行通信。一种方法是获取瞬时带宽非常窄的信号,并使用目前在CDMA类型环境中使用的跳频技术来产生宽带信号。这是很容易实现的,目前正在做的信号的传输和接收具有小的瞬时带宽。另一种方法是直接处理传输宽基带信号。对于宽基带数据传输,如计算机信号,瞬时带宽非常大。本文的重点在于,天线是高度色散的器件,在设计任何打算传输宽基带信号的系统时,都必须考虑到天线的脉冲响应。如果不考虑天线效应,宽传输的基带信号是毫无意义的。推导出简单的表达式来说明,即使是实际上不存在的点源型天线也会对信号产生严重的失真。本文的目的是指出天线在任何宽基带传输类型中的重要性。此外,重要的是要注意,发射波形不等于接收波形,因此天线方向图的互易性在时域中不成立!实验证据将提出,以说明什么原则涉及到一个世纪带宽天线的设计。此外,建立一个20 GHz带宽的完全无色散信道是必要的!
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Characterization of ultrawideband antennas
There are two different ways to communicate with wide bandwidth signals. One is to take a signal with a very narrow instantaneous bandwidth and use a frequency hopping technique as being currently used in a CDMA type of environment to generate a wideband signal. This is easy to implement and currently being done for transmission and reception of signals which have small instantaneous bandwidth. The other approach is to deal directly with transmitting a wide baseband signal. For wide baseband data transmission, like signals from computers, the instantaneous bandwidth is very large. The point of this paper is that antennas are highly dispersive devices and their impulse responses must be taken into account in the design of any system which plans to transmit a wide baseband signal. Without taking the antenna effects into account, the wide transmitted baseband signals are quite meaningless. Simple expressions are derived to illustrate that even a point source type of antenna which is virtually nonexistent produces a severe distortion to the signal. The objective of this paper is to bring out the importance of antennas in any wide baseband type of transmission. Also, it is important to note that the transmit waveform is not equal to the receive waveform so the reciprocity of the antenna patterns do not hold in the time domain! Experimental evidence will be presented to illustrate what principles are involved in the design of a century bandwidth antenna. Moreover, what is necessary to establish a completely dispersionless channel with 20 GHz bandwidth!
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