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Performance evaluation of cooperative relay assisted transmission models in LTE system

机译:LTE系统中协作中继辅助传输模型的性能评估

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The User Equipments (UE) nowadays are able to provide various internet applications and services that raise the demand for high speed data transfer and Quality of Service (QoS). Accordingly, next generation mobile communication systems driven by these demands are expected to provide higher data rates and better link quality compared to the existing systems. Orthogonal Frequency Division Multiple Access (OFDMA) and Single Carrier Frequency Division Multiple Access (SC-FDMA) are strong multiple access candidates for the uplink of the International Mobile Telecommunications-Advanced (IMT-Advanced). These multiple access techniques in combination with other promising technologies such as multi-hops transmission and Multiple-Input-Multiple-Output (MIMO) will be utilized to reach the targeted IMT-Advanced system performance. In this paper, OFDMA and SC-FDMA are adopted for the downlink and uplink transmission of Long Term Evolution (LTE). Two transmission scenarios are considered, namely the single hop transmission and the relay assisted transmission (two hops). In addition, a hybrid multiple access technique that combines the advantages of OFDMA and SC-FDMA in term of low Peak-to-Average Power Ratio (PAPR) and better link performance in terms of Symbol Error Rate (SER) has been proposed in relay assisted transmission scenario. Simulation results show that the obtained results from the relay-assisted transmission (two hops) are better than those obtained from the direct transmission (one hop) for all the studied scenarios.
机译:如今的用户设备(UE)能够提供各种Internet应用程序和服务,从而提高了对高速数据传输和服务质量(QoS)的需求。因此,与现有系统相比,期望由这些需求驱动的下一代移动通信系统将提供更高的数据速率和更好的链路质量。正交频分多址(OFDMA)和单载波频分多址(SC-FDMA)是高级国际移动电信(IMT-Advanced)上行链路的强多址候选者。这些多址技术与其他有希望的技术(例如多跳传输和多输入多输出(MIMO))相结合,将用于实现目标IMT-Advanced系统性能。在本文中,OFDMA和SC-FDMA被用于长期演进(LTE)的下行链路和上行链路传输。考虑了两种传输方案,即单跳传输和中继辅助传输(两跳)。另外,在中继器中已经提出了一种混合多址技术,该技术结合了OFDMA和SC-FDMA在低峰均功率比(PAPR)方面的优势以及在符号错误率(SER)方面更好的链路性能。辅助传输方案。仿真结果表明,在所有研究场景中,中继辅助传输(两跳)获得的结果均好于直接传输(一跳)获得的结果。

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