A novel bandwidth efficient orthogonal frequency division multiplexing scheme

T. Moazzeni
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Abstract

In this paper, a novel spectrum efficient orthogonal signal multiplexing system based on trigonometric transform is presented. In this system, one half of the complex data is multiplexed using orthogonal real subcarrier signals (i.e., cosw1t, cosw2t,…, sinw1t, sinw2t,…) and transmitted on one carrier signal (i.e., coswct) and similarly the other half is multiplexed and transmitted on another carrier (i.e., sinwct). In this way, the number of subcarriers will be reduced by half of the conventional OFDM systems and as a consequent; (i): the occupied bandwidth will be reduced by about half, (ii): the maximum value of the peak to average power ratio of transmitted signal will be also reduced by half, and it is more robust against the Doppler effect. Also, it is shown that the proposed signaling scheme has cyclic convolutional property such that the channel equalization in a multipath fading channel can be accomplished as simple as in OFDM systems by pointwise multiplication.
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一种新的带宽高效的正交频分复用方案
本文提出了一种基于三角变换的频谱高效正交信号复用系统。在该系统中,复数据的一半使用正交实子载波信号(即cosw1t, cosw2t,…,sinw1t, sinw2t,…)复用并在一个载波信号(即coswct)上传输,同样,另一半复用并在另一个载波(即sinwct)上传输。通过这种方式,子载波的数量将减少传统OFDM系统的一半,因此;(1):占用的带宽将减少一半左右;(2):发射信号的峰值与平均功率比的最大值也将减少一半,并且对多普勒效应更加稳健。此外,所提出的信令方案具有循环卷积特性,使得多径衰落信道中的信道均衡可以像在OFDM系统中一样简单地通过点向乘法实现。
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