HAPS - LTE下行系统的空间分集评价

Abdallah A. Abu-Arabia, Iskandar, Rifqy Hakimi
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引用次数: 0

摘要

高空台站(HAPS)系统是近年来发展起来的一种无线通信技术,它充分利用了卫星系统和地面系统的优点。长期演进(LTE)是由行业团体“第三代合作伙伴计划”(3GPP)开发的4G无线宽带技术。3GPP一直致力于增强LTE无线电标准,以提高无线通信链路的性能,3GPP在LTE标准的传输模式1内提出了接收分集。在本文中,我们重点研究了具有最佳接收空间分集和接收端已知信道侧信息(CSIR)的HAPS-LTE下行链路系统性能评估。仿真结果表明,HAPS信道特性如仰角、用户移动性和信道带宽对系统性能有很大影响。结果表明,最大比组合(MRC)分集算法能够提高系统在恶劣信道条件下的性能。
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Evaluation of Spatial Diversity for HAPS - LTE Downlink System
High Altitude Platform Station (HAPS) system is one of the recent wireless technologies that exploit many promising advantages from satellite system as well as from terrestrial system. Long Term Evolution (LTE) is a 4G wireless broadband technology developed by Third Generation Partnership Project (3GPP), an industry trade group. 3GPP has been centered on enhancing LTE radio standards to improve the performance of wireless communications link, receive diversity has been proposed by the 3GPP within mode 1 of transmission in the LTE standard. In this paper, we focus on the HAPS-LTE downlink system performance evaluation with optimum receive spatial diversity and has channel side information known at the receiver (CSIR) for different scenarios. Simulation results show that, HAPS channel characteristics such as elevation angle, user mobility, and channel bandwidth greatly affect the performance of the proposed system. It is also shown that, maximal-ratio combining (MRC) diversity algorithm is able to improve the system performance in bad channel conditions.
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