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Experimental and Numerical Studies on the Dynamics of X-Band Gunn Oscillator Based Angle Modulator-Demodulator System with Chaotic Modulating Signal

机译:X波段耿氏振荡器基于混沌调制信号的角度调制器-解调器系统动力学的实验和数值研究

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We have studied the performance of a Gunn oscillator (GO) based angle modulator-demodulator system in transmitting chaotic signals in the X-band microwave frequency channel. The principle of bias tuning of a GO is employed to implement the angle modulator used in the transmitter. The said GO is operated in a free running condition and then in a frequency synchronized condition to an external microwave signal, thus generating frequency modulated (FM) and phase modulated (PM) signals, respectively. The demodulator circuit is implemented with a GO phase synchronized to the incoming modulated signal, followed by a microwave mixer multiplying the input and the output signals of the GO and a low pass filter. The response of the system is analytically established, numerically examined and experimentally verified. The obtained results confirm that in the limit of low modulation index and in the linear range of operation of the bias tuned modulator and the phase synchronized detector, a chaos signal can be transmitted and recovered through a microwave channel using the technique of angle modulation.
机译:我们已经研究了基于Gunn振荡器(GO)的角度调制器/解调器系统在X波段微波频率信道中传输混沌信号的性能。 GO的偏置调整原理用于实现发射机中使用的角度调制器。所述GO在自由运行状态下操作,然后在与外部微波信号的频率同步状态下操作,从而分别产生调频(FM)和调相(PM)信号。解调器电路通过与输入调制信号同步的GO相位实现,然后是微波混合器,将GO的输入和输出信号与低通滤波器相乘。该系统的响应是通过分析确定,进行数值检查和实验验证的。所获得的结果证实,在低调制指数的范围内以及在偏置调谐调制器和相位同步检测器的线性工作范围内,可以使用角度调制技术通过微波信道传输和恢复混沌信号。

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