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Towards 5G wireless systems: A modified Rake receiver for UWB indoor multipath channels

机译:迈向5G无线系统:改进的Rake接收机,用于UWB室内多径信道

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This paper presents a modified receiver based on the conventional Rake receiver for Ultra-Wide Band (UWB) indoor channels of femtocell systems and aims to propose a new solution to mitigate the multipath phenomenon. Furthermore, this work proposes an upgrade for the conventional Rake receiver to fulfill the needs of 5G wireless systems through a new concept named "hybrid femtocell'' that joins UWB with millimeter wave (mmWave) signals. The modified receiver is considered to be a part of the UWB/mmWave hybrid femtocell system, where it is developed for confronting the indoor multipath channels and to ensure a flexible transmission based on an Intelligent Controlling System (ICS). Hence, we seek to exploit the circumstances when the channel is less complex to switch the transmission to a higher data rate through higher M-ary Pulse Position Modulation (PPM). Furthermore, an ICS algorithm is proposed and an analytical model is developed followed by performance studies through simulation results. The results show that using the UWB technology through the modified receiver in femtocells could aid in mitigating the multipath effects and ensuring high throughputs. Thus, the UWB based system promotes Internet of Things (IoT) devices in indoor multipath channels of future 5G. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文提出了一种基于传统Rake接收器的改进型接收器,用于Femtocell系统的超宽带(UWB)室内信道,旨在提出一种减轻多径现象的新解决方案。此外,这项工作提出了对常规Rake接收器的升级,通过一个名为“混合型毫微微小区”的新概念来满足5G无线系统的需求,该概念将UWB与毫米波(mmWave)信号相结合。 UWB / mmWave混合型毫微微小区系统的一部分,旨在针对室内多径信道并确保基于智能控制系统(ICS)的灵活传输,因此,我们试图探索信道不那么复杂的情况通过更高的三进制脉冲位置调制(PPM)将传输切换到更高的数据速率,并提出了ICS算法,建立了解析模型,然后通过仿真结果进行了性能研究,结果表明,使用UWB技术通过毫微微小区中经过修改的接收器可以帮助减轻多径效应并确保高吞吐量,因此,基于UWB的系统促进了Inte未来5G室内多径通道中的物联网(IoT)设备。 (C)2019 Elsevier B.V.保留所有权利。

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