用DFT扩频法降低OFDM的PAPR

Chandanala Sravanya, Pasupuleti Sairam, Barupatla Srinika
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引用次数: 2

摘要

未来的通信系统将需要传输大量的数据,因此需要一个高度线性的功率放大器。正交频分复用(OFDM)技术由于能够提供高数据速率和高质量的业务,在多媒体业务中得到了广泛的应用。在通信系统中,发射功率放大器的工作范围是线性的。当输入信号的幅度超过发射机功率放大器的线性范围时,就会发生信号失真。因此,发射机的输入信号必须具有较低的峰值平均功率比(PAPR)。OFDM系统是公认的高速无线信道传输方式。因此,它也将对高速通信系统大有裨益。然而,由于极高的PAPR问题,在通信系统中使用OFDM系统并不简单。它导致极低的功率效率。因此,降低OFDM系统的PAPR是将其应用于通信系统的关键。通过使用离散傅里叶矩阵,离散傅里叶变换扩频策略可以显著降低OFDM信号的PAPR。本文介绍了OFDM信号中PAPR的降低方法,并检验了OFDM的有效性。
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PAPR Reduction of OFDM with DFT Spreading Method
Future communication systems will demand the transmission of huge amounts of data, therefore will require a highly linear power amplifier. The Orthogonal Frequency Division Multiplexing (OFDM) technique is widely used in multimedia services for providing high data rates and providing high Quality of Service. The transmitter power amplifier's range of operation in a communication system is linear. Signal distortion happens when the input signal's amplitude exceeds the linear range of the transmitter power amplifier. Therefore, the transmitter's input signal has to have a low peak to average power ratio (PAPR). The OFDM system has been recognized as the high rate wireless radio channel transmission. Therefore, it will also be highly beneficial for the high-speed communication system. However, due to the extremely high PAPR issue, using the OFDM system in a communication system is not simple. It results in extremely low power efficiency. Therefore, it is crucial to lower the PAPR in the OFDM system in order to employ it in the communication system. By using a discrete Fourier matrix, the Discrete Fourier Transform spreading strategy may significantly lower the PAPR of an OFDM signal. This paper describes the PAPR reduction approach in OFDM signals and examines the effectiveness of OFDM.
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