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Signal-to-Noise Ratio Performance of a Time-Varying Matching Network for Pulse-Based Systems

机译:基于脉冲的系统的时变匹配网络的信噪比性能

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This paper presents a study of the noise performance of a time-varying impedance matching technique. A mathematical model is developed for calculating the impulse response of the matching design that reconfigures itself in the real time between two subsystems. Based on this model, the signal-to-noise ratio (SNR) degradation of the matching network is defined and analyzed. Simulations of a typical matching design for $RL$ sources show that the SNR degradation is generally lower than 1 dB for common pulse signals including single-cycle sinusoids and Gaussian pulses. Particularly, the time-varying matching design for a high-quality $(Q>10)$ source can be optimized to have an impulse response that matches monocycle pulses very well, leading to a near-optimal SNR performance (less than 0.1-dB SNR degradation). The theoretical results are validated experimentally by an implementation of the matching technique for electrically small loop antennas. Lower than 1.5-dB SNR degradation is measured for most cases. The effect of switch noise is also investigated in this paper.
机译:本文介绍了时变阻抗匹配技术的噪声性能研究。开发了用于计算匹配设计的脉冲响应的数学模型,该模型在两个子系统之间实时进行自我重新配置。基于此模型,定义并分析了匹配网络的信噪比(SNR)下降。对$ RL $信号源的典型匹配设计的仿真表明,对于包括单周期正弦波和高斯脉冲在内的常见脉冲信号,SNR衰减通常低于1 dB。特别是,可以优化用于高质量(Q> 10)$源的时变匹配设计,使其具有与单周期脉冲非常匹配的脉冲响应,从而使SNR性能接近最佳(小于0.1 dB)。 SNR下降)。理论结果通过对小电子环形天线的匹配技术的实现进行了实验验证。在大多数情况下,SNR降级低于1.5 dB。本文还研究了开关噪声的影响。

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