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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Nonlinear Design Technique for High-Power Switching-Mode Oscillators
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Nonlinear Design Technique for High-Power Switching-Mode Oscillators

机译:大功率开关模式振荡器的非线性设计技术

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摘要

A simple nonlinear technique for the design of high-efficiency and high-power switching-mode oscillators is presented. It combines existing quasi-nonlinear methods and the use of an auxiliary generator (AG) in harmonic balance. The AG enables the oscillator optimization to achieve high output power and dc-to-RF conversion efficiency without affecting the oscillation frequency. It also imposes a sufficient drive on the transistor to enable the switching-mode operation with high efficiency. Using this AG, constant-power and constant-efficiency contour plots are traced in order to determine the optimum element values. The oscillation startup condition and the steady-state stability are analyzed with the pole-zero identification technique. The influence of the gate bias on the output power, efficiency, and stability is also investigated. A class-E oscillator is demonstrated using the proposed technique. The oscillator exhibits 75 W with 67% efficiency at 410 MHz.
机译:提出了一种用于设计高效率和大功率开关模式振荡器的简单非线性技术。它结合了现有的准非线性方法以及谐波平衡中辅助发电机(AG)的使用。 AG使振荡器最优化,从而在不影响振荡频率的情况下实现了高输出功率和DC-RF转换效率。它还在晶体管上施加了足够的驱动,以实现高效率的开关模式操作。使用该AG,可以跟踪恒定功率和恒定效率的轮廓图,以确定最佳的元件值。利用零极点识别技术分析了振荡的启动条件和稳态稳定性。还研究了栅极偏置对输出功率,效率和稳定性的影响。使用提出的技术演示了E类振荡器。该振荡器在410 MHz时的功率为75 W,效率为67%。

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