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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >The Stochastic Gabor Function Enhances Bandwidth In Finite-Difference-Time Domain $S$-Parameter Estimation
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The Stochastic Gabor Function Enhances Bandwidth In Finite-Difference-Time Domain $S$-Parameter Estimation

机译:随机Gabor函数可在有限时域$ S $参数估计中提高带宽

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This paper introduces the stochastic Gabor function, an excitation waveform that can be used for finite-difference time-domain $S$ -parameter estimation. The stochastic Gabor function is a Gaussian function modulated by uniformly distributed noise; it has wide frequency spectrum representation regardless of the stimuli pulse length. The stochastic Gabor function was studied in the time-frequency domain and was compared to Gaussian and Gabor stimuli functions with the same length. As shown by frequency concentration measurements, the stochastic Gabor function is least compact in the sample frequency phase plane. Numerical results obtained by using a multilayer stripline indicate that the stochastic Gabor function provides convergence and stability similar to those provided by the Gabor and Gaussian functions, but produces a much wider frequency band response when used as a pointwise hard voltage source stimulus.
机译:本文介绍了随机Gabor函数,该激励波形可用于有限差分时域$ S $参数估计。随机Gabor函数是由均匀分布的噪声调制的高斯函数。它具有宽频谱表示,与刺激脉冲长度无关。在时频域上研究了随机Gabor函数,并将其与相同长度的Gaussian和Gabor刺激函数进行了比较。如频率集中度测量所示,随机Gabor函数在采样频率相位平面中最小。通过使用多层带状线获得的数值结果表明,随机Gabor函数提供的收敛性和稳定性类似于Gabor和Gaussian函数提供的收敛性和稳定性,但是当用作点向硬电压源刺激时会产生更宽的频带响应。

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