基于ltspice的离散元件设计QPSK调制器

Andicho Haryus Wirasapta, Prapto Nugroho, S. Wibowo
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引用次数: 0

摘要

QPSK (Quadrature Phase Shift keyying,正交相移键控)是一种数字调制技术,它可以将数据分成两部分,即偶数数据位和奇数数据位,对每个符号进行2位编码,以最小化误码率(BER)。在本研究中,使用基于LTspice的离散元件设计了QPSK调制器,以支持数字通信系统中信息交换的发展,特别是低频应用。LTspice在检查设计和预测电子电路特性方面功能强大。并且,由于所需元件在市场上广泛可用,因此选择离散元件,因此易于实现到QPSK调制器中。QPSK调制器由数据源、奇偶数据分频器、载波信号、平衡调制器、奇偶调制信号和OpAmp电路组成。在使用LTspice对QPSK调制器的整个电路进行设计之后,可以对每个电路和整个电路进行仿真测试,从而知道电路是否正常工作。经过测试,发现各电路和整体调制器的输出符合预期,其中QPSK调制器能够产生频率为2mhz,数据频率为500khz的QPSK调制波。这个结果可以作为参考来实现成原型,因为基于仿真结果可以实现到下一步的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Designing QPSK Modulator Using LTspice-Based Discrete Components
QPSK (Quadrature Phase Shift Keying) is one of the digital modulation techniques that can encode two bits per symbol based on data that has been divided into two parts, namely even data bits and odd data bits to minimize the bit error rate (BER). In this research, a QPSK modulator is designed using discrete components based on LTspice in order to support developments in digital communication systems for information exchange especially for low frequency applications. LTspice is powerful for examining designs and for predicting the characteristics of electronic circuits. And, discrete components are chosen because the required components are widely available and obtained in the market, so it is easy to implement into a QPSK modulator. QPSK modulator consist of data sources, odd-even data dividers, carrier signals, balanced modulator, odd-even modulated signals and OpAmp circuits. After the entire cicuits of QPSK modulator have been designed by using LTspice, then simulation testing can be carried out in each circuit and the whole, so that it can be known whether the circuit is worked properly. After the testing has been carried out, it was found that the output in each circuit and overall modulator was in accordance with the expected where the QPSK modulator was able to generate a QPSK modulated wave with a frequency of 2 MHz and a data frequency of 500 kHz. This result can be used as a reference to be implemented into a prototype, because based on the simulation results can be implemented to the next development.
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