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Supply-Modulated Radar Transmitters With Amplitude-Modulated Pulses

机译:具有幅度调制脉冲的电源调制雷达发射机

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This paper introduces an efficient radar transmitter with improved spectral confinement, enabled by a pulse waveform that contains both amplitude and frequency modulation. The theoretical behavior of the Class-B power amplifier (PA) under a Gaussian envelope is compared to that of a Class-A PA. Experimental validation is performed on a 4-W 10-GHz GaN monolithic microwave integrated circuit PA, biased in Class B with a power-added efficiency (PAE) of 50%. When driven with a Gaussian-like pulse envelope with a 5-MHz linear frequency modulation (LFM), the PA demonstrates a 31% average efficiency over the pulse duration. To improve the efficiency, a simple resonant supply modulator with a peak efficiency of 92% is used for the pulse Gaussian amplitude modulation, supplemented by pre-distortion on the PA input, while the LFM is provided through the PA input. This case results in a five-point improvement in system efficiency with an average over the pulse duration for the PA alone, and with simultaneous 40-dB reduction in spectral emissions relative to a rectangular pulse with the same energy.
机译:本文介绍了一种有效的雷达发射机,其频谱限制得到改善,并通过包含幅度和频率调制的脉冲波形实现。将B类功率放大器(PA)在高斯包络下的理论行为与A类PA的理论行为进行了比较。实验验证是在4W 10 GHz GaN单片微波集成电路PA上进行的,偏置为B级,功率附加效率(PAE)为50%。当使用具有5 MHz线性调频(LFM)的高斯型脉冲包络驱动时,PA在脉冲持续时间内的平均效率为31%。为了提高效率,将简单的峰值电源效率为92%的谐振电源调制器用于脉冲高斯幅度调制,并在PA输入端进行预失真,而LFM通过PA输入端提供。这种情况导致系统效率提高了五点,而仅PA的整个脉冲持续时间的平均值,并且与具有相同能量的矩形脉冲相比,频谱发射同时降低了40 dB。

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