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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >A Multicarrier Multiplexing Method for Very Wide Bandwidth Transmission
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A Multicarrier Multiplexing Method for Very Wide Bandwidth Transmission

机译:超宽带传输的多载波复用方法

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The multicarrier orthogonal code division multiplexing (MC-OCDM) introduced here has been designed for very wide bandwidth (VWB) point-to-point and point-to-multipoint transmission. In order to meet VWB transmission requirements, the MC-OCDM design has two components, the basic and the composite. The basic MC-OCDM is a generalized form of the standard orthogonal frequency division multiplexing (OFDM). It has the property of distributing the power of each transmitted symbol into all subcarrier frequencies. Each subcarrier will then carry all transmitted symbols which are distinguished by orthogonal Hadamard sequences. The resulting system is shown to improve the performance of OFDM by introducing frequency and time diversity. As shown, by both analysis and simulation, the basic MC-OCDM combats the effects of narrowband interference (NBI). In particular, the simulation results show that the BER performance of the basic MC-OCDM in the presence of NBI is better than OFDM for both coded and uncoded systems. Furthermore, the composite MC-OCDM is a method of orthogonal frequency division multiplexing (OFDM) basic MC-OCDM channels. This allows us to multiplex more than one basic MC-OCDM channel into a VWB transmission system which can have the performance and spectral efficiency required in fixed wireless transmission environments.
机译:这里介绍的多载波正交码分复用(MC-OCDM)已设计用于超宽带(VWB)点对点和点对多点传输。为了满足VWB传输要求,MC-OCDM设计包含两个组件,基本组件和复合组件。基本MC-OCDM是标准正交频分复用(OFDM)的通用形式。它具有将每个发射符号的功率分配到所有子载波频率中的特性。然后,每个子载波将携带由正交哈达玛序列区分的所有发送符号。结果表明,所得系统通过引入频率和时间分集来提高OFDM的性能。如图所示,通过分析和仿真,基本的MC-OCDM可以抵抗窄带干扰(NBI)的影响。尤其是,仿真结果表明,无论是编码系统还是非编码系统,在存在NBI的情况下,基本MC-OCDM的BER性能均优于OFDM。此外,复合MC-OCDM是正交频分复用(OFDM)基本MC-OCDM信道的一种方法。这使我们能够将一个以上的基本MC-OCDM信道多路复用到VWB传输系统中,该系统可以具有固定无线传输环境中所需的性能和频谱效率。

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