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ANALYSIS OF OFDM WITH DQPSK MODULATION

机译:具有DQPSK调制的OFDM分析

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摘要

The Orthogonal Frequency Division Multiplexing (OFDM) technique has become extremely well-liked technique in the last two decades. It is a bandwidth efficient signalling scheme for bandwidth digital communications. The present and upcoming generation of communication system depends mainly on such technique, because of its skill to combat multipath fading channels using the analogous concept of cyclic prefix (Guard Interval). With OFDM, it is possible to use a differential coding/differential detection either in the time or frequency domain bank on the condition of transmission channels with the adoption of DQPSK as a method of subcarrier modulation. It is crucial to understand the concepts behind OFDM. In whole architecture, the entire mathematical manoeuvring occur in transmitter and receiver block i. e. IFFT and FFT block correspondingly. The speed augmentation is the key contribution of the main processing blocks in OFDM system. In this paper, the authors will discuss the basics of OFDM system using 4 sub carriers over the AWGN channel providing DQPSK modulation. Simulation has been performed on the MATLAB so that, the graphical output will be optimized for Interaction and some of Its prospective and consequences have been studied.
机译:在过去的二十年中,正交频分复用(OFDM)技术已成为非常受欢迎的技术。它是用于带宽数字通信的带宽有效的信令方案。通信系统的当前和即将到来的一代主要依赖于这种技术,因为它使用类似于循环前缀(保护间隔)的概念来对抗多径衰落信道的技术。利用OFDM,通过采用DQPSK作为副载波调制的方法,可以在传输信道的条件下在时域或频域库中使用差分编码/差分检测。了解OFDM背后的概念至关重要。在整个体系结构中,整个数学运算发生在发射器和接收器块i中。 e。 IFFT和FFT分别对应。速度提高是OFDM系统中主要处理模块的关键作用。在本文中,作者将讨论在提供DQPSK调制的AWGN信道上使用4个子载波的OFDM系统的基础。在MATLAB上进行了仿真,因此,图形输出将针对交互进行优化,并对其中的一些预期和后果进行了研究。

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