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首页> 外文期刊>Selected Areas in Communications, IEEE Journal on >Virtual time-slot allocation scheme for throughput enhancement in a millimeter-wave multi-Gbps WPAN system
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Virtual time-slot allocation scheme for throughput enhancement in a millimeter-wave multi-Gbps WPAN system

机译:虚拟时隙分配方案,用于毫米波多Gbps WPAN系统中的吞吐量增强

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This paper proposes a Virtual Time-slot Allocation (VTSA) scheme for throughput enhancement to realize a multi- Gbps time division multiple access (TDMA) wireless personal area network (WPAN) system in a realistic millimeter-wave residential multipath environment. TDMA system without time-slotreuse mechanism conventionally allocates one TDMA time-slot to only one communication link at a time. In the proposed VTSA scheme, taking advantage on the large path loss in the millimeterwave band, a single TDMA time-slot can be reallocated and reused by multiple communication links simultaneously (hence the name virtual), thus significantly increasing system throughput. On the other hand, allowing multiple communication links to occupy the same time-slot causes the generation of co-channel interference (CCI). The cross layer VTSA scheme is therefore designed to be able to maximize the throughput improvement by adaptively scheduling the sharing of time-slots, and at the same time monitor the potential performance degradation due to CCI. As a result, it is found that the VTSA scheme is capable of improving system throughput as much as 30% in both AWGN and multipath channels (line-of-sight (LOS) and non-lineof- sight (NLOS) environment). Additionally, by coupling with higher-order modulation schemes, the system is able to achieve up to a maximum throughput of 3.8Gbps. It is also observed that higher-order modulations although have higher maximum achievable throughput in low CCI environment, the tolerance against increasing CCI is considerably lower than that of the lower-order modulations.
机译:本文提出了一种用于提高吞吐量的虚拟时隙分配(VTSA)方案,以在现实的毫米波住宅多径环境中实现多Gbps时分多址(TDMA)无线个人局域网(WPAN)系统。传统上,没有时隙重用机制的TDMA系统一次只向一个通信链路分配一个TDMA时隙。在提出的VTSA方案中,利用毫米波波段中较大的路径损耗,单个TDMA时隙可以同时被多个通信链路重新分配和重用(因此称为虚拟),从而显着提高了系统吞吐量。另一方面,允许多个通信链路占用相同的时隙会导致产生同信道干扰(CCI)。因此,跨层VTSA方案被设计为能够通过自适应地调度时隙共享来最大程度地提高吞吐量,并同时监视由于CCI导致的潜在性能下降。结果,发现VTSA方案能够在AWGN和多路径信道(视线(LOS)和非视线(NLOS)环境)中将系统吞吐量提高多达30%。此外,通过与高阶调制方案结合,该系统能够实现高达3.8Gbps的最大吞吐量。还可以观察到,尽管在低CCI环境中高阶调制具有更高的最大可实现吞吐量,但是对提高CCI的容忍度却大大低于低阶调制。

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