Receive Response Design Compensating Direction-Dependent Impulse Responses of UWB Antennas

Guofeng Lu, P. Spasojevic, L. Greenstein
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Abstract

We demonstrated that the ultra-wideband (UWB) waveforms may not only have different amplitudes for different directions but also different waveform shapes for both transmit and receive antennas. When designing the receive filter response, these direction-dependent antenna impulse responses need to be considered. Taking account of the relative orientations of both transmit and receive antennas, a metric that maximizes the average received signal to noise ratio is defined. To make the maximization problem mathematically tractable, one upper-bound of the metric is chosen to for applying variational calculus. The solution is a linear combination of all incoming waveforms weighted by their relative probability of occurence. For practical purpose, a best-candidate solution is also obtained through numerical search. The results are illustrated for the diamond antenna, which is a potential UWB antenna. The search process also reveals that a large percentage of the candidate waveforms can provide close performance to the linear combination solution, while some candidates provide poor performances and should therefore be avoided in practice.
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补偿超宽带天线方向相关脉冲响应的接收响应设计
我们证明了超宽带(UWB)波形不仅在不同方向上具有不同的振幅,而且在发射和接收天线中具有不同的波形形状。在设计接收滤波器响应时,需要考虑这些方向相关的天线脉冲响应。考虑到发射和接收天线的相对方向,定义了一个使平均接收信噪比最大化的度量。为了使最大化问题在数学上易于处理,我们选择了一个度量的上界来应用变分演算。解决方案是所有输入波形的线性组合,以它们的相对出现概率加权。为了便于实际应用,还通过数值搜索得到了最优候选解。结果说明了钻石天线,这是一个潜在的超宽带天线。搜索过程还表明,很大比例的候选波形可以提供接近线性组合解决方案的性能,而一些候选波形提供较差的性能,因此在实践中应该避免。
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