基于dft预编码和子载波映射的多载波MIMO系统性能评价

IF 0.6 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Bin Muslim, Engr. Dr. Muntazir Hussain, U. Hashmi, A. Aneesullah, Muhammad Aamir, A. Zahir
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引用次数: 1

摘要

随着终端用户需求的不断增长,在后续的无线通信标准中,不仅要提高数据速率,还要提高服务质量。这种对实现更高数据速率的追求迫使下一代通信技术使用多载波系统,例如正交频分复用(OFDM),同时也依赖于多输入多输出(MIMO)技术。本文的重点是实现MIMO-OFDM系统,并使用各种技术来优化它的误码率性能。所考虑的测试用例是构成4G及以上通信系统的使能技术的系统实现。所考虑的误码率优化是基于离散傅立叶变换(DFT)在OFDM调制步骤之前进行的,同时考虑了各种子载波映射方案。基于matlab的2 ?2 MIMO-OFDM系统在各种高信噪比环境下,分别通过dft预编码和子载波映射,最大可降低2 ~ 5个数量级的误码率。在不同的环境下,dft预编码可以降低2-3dBs的峰均功率比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of a multicarrier MIMO system based on DFT-precoding and subcarrier mapping
The ever-increasing end user demands are instigating the development of innovative methods targeting not only data rate enhancement but additionally better service quality in each subsequent wireless communication standard. This quest to achieve higher data rates has compelled the next generation communication technologies to use multicarrier systems e.g. orthogonal frequency division multiplexing (OFDM), while also relying on the multiple-input multiple-output (MIMO) technology. This paper is focused on implementing a MIMO-OFDM system and on using various techniques to optimize it in terms of the bit-error rate performance. The test case considered is a system implementation constituting the enabling technologies for 4G and beyond communication systems. The bit-error rate optimizations considered are based on preceding the OFDM modulation step by Discrete Fourier Transform (DFT) while also considering various subcarrier mapping schemes. MATLAB-based simulation of a 2 ? 2 MIMO-OFDM system exhibits a maximum of 2 to 5 orders of magnitude reduction in bit-error rate due to DFT-precoding and subcarrier mapping respectively at high signal-to-noise ratio values in various environments. A 2-3dBs reduction in peak-to-average power ratio due to DFT-precoding in different environments is also exhibited in the various simulations.
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来源期刊
Facta Universitatis-Series Electronics and Energetics
Facta Universitatis-Series Electronics and Energetics ENGINEERING, ELECTRICAL & ELECTRONIC-
自引率
16.70%
发文量
10
审稿时长
20 weeks
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