先进LTE下行链路模型的更新技术:研究与评价

Noor N. Edan, N. Khamiss
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引用次数: 1

摘要

本文实现了一种用于高级长期演进(LTE)下行链路物理层的交互式启动和运行收发器系统模型,该模型研究并澄清了考虑衰落和LTE特定信道模型中移动系统设计参数关键方面的几个影响的性能。载波聚合(CA)、高阶调制(HOM)、多输入多输出(MIMO)利用、信道估计、均衡和链路自适应使能技术已经在该模型中实现和研究。本文通过聚合三个非对称和两个对称分量载波分别实现了34.8500和19.9000 MHz的传输带宽。在高信号功率区域,256-QAM在有限的传输带宽下作为homm应用,数据速率显著提高。本文还实现了不同的MIMO方案,验证了系统处理信道衰落特性的能力,或者随着信噪比(SNR)的增加而适应更高数据速率的能力。为了减轻由于多径衰落引起的系统退化,本文研究了两种具有理想和导频辅助信道估计技术的MIMO检测方案。最后,通过增加支持的用户数量,链路自适应技术可以有效地利用可用频谱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Updated Techniques for Advance LTE Downlink Model: Investigation and Evaluation
This paper implements an interactive up-and-running transceiver system models for Advanced Long-Term Evolution (LTE) downlink physical layer that investigates and clarifies performance for several effects considering crucial aspects in the design parameters of mobile systems over fading and LTE-Specific channel models. Carrier Aggregation (CA), High Order Modulation (HOM), Multiple-input and Multiple-output (MIMO) utilization, channel estimation, equalization and Link Adaptation enabling techniques have been implemented and investigated in this model. This paper is achieved a transmission bandwidth of about 34.8500 and 19.9000 MHz by aggregating three non-symmetric and two symmetric component carriers (CCs), respectively. At high signal power regions, significant enhancement in the data rate obtained with 256-QAM which applied as HOM over limited transmission bandwidth. The paper also implemented different MIMO schemes that validate the capability of the system to deal with the fading nature of the channel, or its ability to accommodate higher data rates as the Signal-to-Noise Ratio (SNR) increases. To mitigate system degradation due to multipath fading, this paper examined two MIMO detection schemes with ideal and pilot-assisted channel estimation techniques. Finally, the paper showed that the available spectrum exploited efficiently with link adaptation techniques by increasing the number of supported subscribers.
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