UNJUK KERJA KODE ORTHOGONAL M-SEQUENCE DALAM SISTEM DIRECT SEQUENCE SPREAD SPECTRUM MELALUI KANAL MULTIPATH FA

Komang Gede Widi Adnyana, N. Pramaita, I. M. Oka Widyantara
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Abstract

Multipath and multi-user interference are the main challenges in wireless communication systems. This has become a driving force for the development of data transmission technology that is focused to overcome these problems, one of which is spread spectrum. Spread spectrum is applied to CDMA technology which has the limitations of MAI, so a spreading code is required with specifications that have a very low cross-correlation value as in the orthogonal m-sequence code. In this study, simulate the orthogonal m-sequence code with a length of 8 chips on a multipath fading channel using the Direct Sequence Spread Spectrum system with aims of assessing the performance of the orthogonal m-sequence code on a multipath fading channel, based on the effect of changes in the number of multipath components. The research method used is a Monte Carlo simulation on simulink with the output data in the form of a graph of the comparison value of BER with Eb/No. The results show that on the flat fading channel with the number of components multipath 1, the BER value of the simulation results is in accordance with the BER theory so that the simulation is valid and can be applied to frequency selective fading channels. In the frequency selective fading channel with the number of multipath components 4,6, and 8, the best performance was shown in the multipath 4 component with the smallest BER value, this was influenced by the ACF and CCF values so that the multipath 4 component had the lowest ISI and interference between users.
多径干扰和多用户干扰是无线通信系统面临的主要挑战。这已经成为数据传输技术发展的动力,这些技术的重点是克服这些问题,其中之一就是扩频。扩频技术应用于CDMA技术,而CDMA技术具有MAI的局限性,因此需要一种像正交m序列码那样具有极低互关值的扩频码。本研究利用直接序列扩频系统在多径衰落信道上模拟长度为8片的正交m序列码,基于多径分量数量变化的影响,评估正交m序列码在多径衰落信道上的性能。采用的研究方法是在simulink上进行蒙特卡罗仿真,输出数据以BER与Eb/No比较值的图形形式呈现。结果表明,在分量数为1的平坦衰落信道上,仿真结果的误码率值符合误码率理论,仿真结果是有效的,可以应用于频率选择衰落信道。在多径分量个数为4、6、8的频率选择性衰落信道中,BER值最小的多径4分量表现出最好的性能,这受ACF和CCF值的影响,因此多径4分量具有最低的ISI和用户间干扰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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