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QPSK modulation using multi-port device

机译:使用多端口设备进行QPSK调制

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This paper investigates digital modulation transmitter using multi-port device. The multi-port device is a 6-port replacing the high cost mixer in conventional transmitter. The main objective of this paper is to develop the digital modulator based on six-port network using Agilent ADS (Advanced Design Simulation) simulation tool. The S-parameters of a fabricated six-port network are measured using network analyzer. All the 2-port measured data of the six-port network are then mapped into matrix 6×6 by using MATLAB. The mapped 6×6 matrix is then used to model the six-port network in ADS simulation. The six-port network can be functioned as a digital modulation by connecting port 1 to local oscillator and port 3 to port 6 to either open and short termination. The RF modulated signal is going out from port 2 of the six-port network. The QPSK (Quadrature Phase Shift Keying) symbols are dependent on the combination of open and short terminations which are controlled by SPDT (Single Pole Double Throw) switches. The simulation and analysis of the output result are observed in terms of symbol rate and frequency of local oscillator.
机译:本文研究了使用多端口设备的数字调制发射机。多端口设备是6端口的设备,替代了传统发射机中的高成本混频器。本文的主要目的是使用安捷伦ADS(高级设计仿真)仿真工具开发基于六端口网络的数字调制器。使用网络分析仪测量已制成的六端口网络的S参数。然后,使用MATLAB将六端口网络的所有2端口测量数据映射到6×6矩阵中。然后将映射的6×6矩阵用于在ADS仿真中对六端口网络进行建模。通过将端口1连接到本地振荡器,将端口3连接到端口6进行开路和短路端接,六端口网络可以用作数字调制。射频调制信号从六端口网络的端口2发出。 QPSK(正交相移键控)符号取决于由SPDT(单刀双掷)开关控制的开路和短路端子的组合。从符号率和本地振荡器频率观察输出结果的仿真和分析。

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