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A new approach to QPSK: mechanism, simulation and implementation

机译:QPSK的新方法:机制,仿真和实现

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摘要

The work reported in this paper serves two purposes. First, an alternative comprehensive approach is proposed for the understanding of the mechanism behind QPSK. This focuses on how a QPSK modulator decides to represent each pair of bits to be transmitted, by which of its four possible phase shifts. This approach is based entirely on the analysis of phasors and is completely mathematics-less. The second part of this work proposes a method by which complex modulation schemes, like QPSK, can be implemented using only first degree components in Simulink, avoiding all the hurdles of mathematically complicated blocks. The implementation, in the second part, confirms the viability of the approach in the first part of this work. Results show that the data received on the other end of a noiseless channel exactly matches the data sent despite a slight unavoidable delay. The proposed method for implementing QPSK can be used directly as a laboratory exercise for undergraduate students new to digital communication techniques. [PUBLICATION ABSTRACT]
机译:本文报道的工作有两个目的。首先,为了解QPSK背后的机制,提出了一种替代性的综合方法。这集中于QPSK调制器如何决定代表其要传输的每对比特,通过其四个可能的相移中的哪一个来表示。这种方法完全基于相量的分析,并且完全没有数学意义。这项工作的第二部分提出了一种方法,通过该方法,可以仅使用Simulink中的一级分量来实现复杂的调制方案(如QPSK),从而避免了数学上复杂的块的所有障碍。在第二部分中的实施确认了该方法在第一部分中的可行性。结果表明,尽管有轻微的不可避免的延迟,但在无噪声通道另一端接收的数据与发送的数据完全匹配。所提出的实施QPSK的方法可以直接用作针对数字通信技术的大学生的实验室练习。 [出版物摘要]

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