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Virtual Time-Slot Allocation Scheme for Throughput Enhancement in a Millimeter-wave Gbps WPAN Cross Layer Design

机译:毫米波GBPS WPAN跨层设计中吞吐量增强虚拟时隙分配方案

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This paper proposes the Virtual Time-slot Allocation (VTSA) scheme for throughput enhancement to realize a Gbps-order time division multiple access (TDMA) wireless personal area network (WPAN) system in a realistic millimeter-wave residential multipath environment. Conventional TDMA system allocates each time-slot to only one communication link, which is insufficient to achieve Gbps-order throughput, particularly in severe channel conditions of multipath environment. In this paper, the proposed VTSA scheme enables a single time-slot to be reused for multiple communication links simultaneously (hence the name virtual), thus significantly increases system throughput. However, this generates co-channel interference (CCI) among the communication links occupying the same time-slot. The proposed cross layer VTSA scheme is therefore designed to be able to schedule the sharing of time-slots among multiple communication links, and at the same time monitor to minimize performance degradation due to CCI. Two time-slot reuse methods are proposed and compared in this paper, namely the minimum-CCI slotting method and the random slotting method. As a result, it is found that the VTSA scheme is capable of increasing the system throughput as much as approximately 30% in the additive white Gaussian noise (AWGN), line-of-sight (LOS) and the non-line-of-sight (NLOS) multipath channel. It is also found that the minimum-CCI slotting method has 10% better performance as compared to the random slotting method.
机译:本文提出了用于吞吐量增强的虚拟时隙分配(VTSA)方案,以实现在现实毫米波住宅多径环境中实现Gbps级时分多址(TDMA)无线个人区域网络(WPAN)系统。传统的TDMA系统仅将每个时隙分配到一个通信链路,这不足以实现Gbps订单吞吐量,特别是在多径环境的严重信道条件下。在本文中,所提出的VTSA方案使得能够同时为多个通信链路重用单个时隙(因此名称虚拟),从而显着提高了系统吞吐量。然而,这在占用相同时隙的通信链路中产生共信道干扰(CCI)。因此,所提出的横梁VTSA方案被设计为能够在多个通信链路之间调度时隙的共享,并且在同一时间监视器以最小化由于CCI而最小化性能下降。在本文中提出并比较了两种时隙重复使用方法,即最小-CCI时隙方法和随机时隙方法。结果,发现VTSA方案能够将系统吞吐量增加大约30%,在添加的白色高斯噪声(AWGN),视线(LOS)和非线上视线(NLOS)多径通道。还发现,与随机时隙方法相比,最小CCI时隙方法具有10%的性能。

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