Department of Telecommunication Engineering, Faculty of Engineering, King Mongkut's Institute of Technology Ladkrabang, Ladkrabang, Bangkok 10520 Thailand.
Defence Technology Institute, Ministry of Defence, BanmaiPakkret, Nontburi 11120 Thailand.
Sci Rep. 2017 Mar 2;7:43680. doi: 10.1038/srep43680.
This article presents the homodyne detection in a self-oscillation system, which represented by a short-range radar (SRR) circuit, that is analysed using a multi-time forced oscillator (MTFO) model. The MTFO model is based on a forced oscillation perspective with the signal and system theory, a second-order differential equation, and the multiple time variable technique. This model can also apply to analyse the homodyne phenomenon in a difference kind of the oscillation system under same method such as the self-oscillation system, and the natural oscillation system with external forced. In a free oscillation system, which forced by the external source is represented by a pendulum with an oscillating support experiment, and a modified Colpitts oscillator circuit in the UHF band with input as a Doppler signal is a representative of self-oscillation system. The MTFO model is verified with the experimental result, which well in line with the theoretical analysis.
本文提出了一种自振荡系统中的同相检测方法,该系统由短程雷达 (SRR) 电路表示,并使用多时间强迫振荡器 (MTFO) 模型进行分析。MTFO 模型基于信号和系统理论的强迫振荡观点、二阶微分方程和多时间变量技术。该模型还可以应用于分析同相现象在不同类型的振荡系统中的应用,如自振荡系统和外部强迫的自然振荡系统。在一个自由振荡系统中,外部源的强迫由一个带有摆动支撑实验的摆代表,而在超高频带中输入作为多普勒信号的改进型 Colpitts 振荡器电路则是自振荡系统的一个代表。MTFO 模型通过实验结果得到了验证,与理论分析吻合较好。