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A fast load-pull optimization for power-added efficiency under output power and ACPR constraints

机译:在输出功率和ACPR约束下的快速负载牵引优化以提高功率效率

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摘要

In the future real-time optimization of reconfigurable radar transmitter power amplifiers, a typical optimization would seek the highest power-added efficiency (PAE) possible under constraints on adjacent-channel power ratio and delivered power. This paper describes a sequential, fast optimization algorithm to find the constrained optimum using experimental queries taken at sequentially selected load reflection-coefficient values. The algorithm is compared across multiple starting reflection-coefficient values on the Smith chart and convergence to similar constrained optimum impedances and PAE values is demonstrated in both simulation and measurement. This algorithm is designed to allow reconfigurable radar transmitter amplifiers to optimize in real-time, meeting dynamically changing spectral mask, power efficiency, and output power requirements.
机译:在未来可重新配置的雷达发射机功率放大器的实时优化中,典型的优化将寻求在相邻信道功率比和输出功率的约束下可能达到的最高功率附加效率(PAE)。本文介绍了一种顺序快速优化算法,该算法使用在顺序选择的负载反射系数值处进行的实验查询来找到约束最优值。该算法在史密斯圆图上的多个起始反射系数值之间进行了比较,并在仿真和测量中均证明了收敛至相似的约束最佳阻抗和PAE值。该算法旨在允许可重新配置的雷达发射机放大器实时进行优化,以满足动态变化的频谱模板,功率效率和输出功率要求。

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