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The Smith tube: Selection of radar chirp waveform bandwidth and power amplifier load impedance using multiple-bandwidth load-pull measurements

机译:史密斯管:使用多带宽负载-拉力测量选择雷达线性调频波形带宽和功率放大器负载阻抗

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The operation of a radar system requires a trade-off between detection capabilities, power efficiency, and adjacent channel power minimization. Specifically, wide signal bandwidth is important for range detection. This paper presents how load-pull data taken for multiple linear frequency-modulated chirp waveforms with different bandwidths can be used to select the chirp waveform with the largest bandwidth possible, while meeting adjacent-channel power ratio and power-added efficiency requirements. This approach utilizes plots of adjacent-channel power ratio and power-added efficiency surfaces within a Smith tube, a three-dimensional, cylindrical extrapolation of the traditional Smith chart. A measurement example is given to illustrate the design approach. This approach will be useful in the design of range radars, and also is likely to find use in enabling real-time reconfiguration of future radars for varying spectral environments and efficiency requirements.
机译:雷达系统的运行需要在检测能力,功率效率和相邻信道功率最小化之间进行权衡。具体地说,宽的信号带宽对于范围检测很重要。本文介绍了如何使用多个具有不同带宽的线性调频线性调频波形获取的负载拉数据来选择具有最大带宽的线性调频波形,同时满足相邻信道功率比和功率附加效率的要求。这种方法利用了史密斯管内的相邻通道功率比和功率附加效率面的曲线图,这是传统史密斯圆图的三维圆柱外推法。给出了一个测量示例来说明设计方法。这种方法将在距离雷达的设计中很有用,并且可能会用于对变化的频谱环境和效率要求进行实时重新配置未来的雷达。

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