Performance analysis of LTE networks in different transmission modes using 16-QAM under fading channels

Reena Parihar, R. Nakkeeran
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引用次数: 4

Abstract

3GPP group standardized Long Term Evolution (LTE) and it is designed to have transmission bandwidth up to 20MHz, with low latency and packet optimized radio access technology. The maximum data rate contemplated for LTE is 100 Mbps in downlink and 50 Mbps in the uplink. The 3GPP selected Orthogonal Frequency Division Multiple Access as the radio access technology because it can be simply implemented in receiver with high performance and high spectral efficiency. In LTE-Advanced (LTE-A) various MIMO transmission methods are used to achieve high data rate compliance with the LTE standards. This paper investigates the performance analysis of LTE-A networks in different transmission modes using 16-QAM, under different fading channels with different antenna correlation conditions. This work deals with the study of performance based on Release 10 of the 3GPP standard. Bit Error Rate (BER) is evaluated in terms of Signal to Noise Ratio (SNR) using low and high channel distortion. The BER analysis for Single Input Multiple Output (SIMO),Transmit diversity, Open and Closed Loop Spatial Multiplexing and it is carried out for 2×2 and 4×4 antenna configuration.
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衰落信道下16-QAM LTE网络不同传输模式的性能分析
3GPP组标准化的长期演进(LTE),其设计传输带宽高达20MHz,具有低延迟和分组优化无线接入技术。LTE预期的最大数据速率是下行链路100mbps,上行链路50mbps。3GPP之所以选择正交频分多址技术作为无线接入技术,是因为它可以简单地在接收机中实现,具有高性能和高频谱效率。在LTE- advanced (LTE- a)中,使用各种MIMO传输方法来实现符合LTE标准的高数据速率。本文研究了采用16-QAM的LTE-A网络在不同衰落信道和不同天线相关条件下不同传输模式下的性能分析。这项工作涉及基于3GPP标准第10版的性能研究。误码率(BER)是根据信噪比(SNR)来评估的,使用低和高信道失真。对单输入多输出(SIMO)、发射分集、开环和闭环空间复用以及2×2和4×4天线配置进行了误码率分析。
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