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Dynamic Channel Allocation for Multipath Cellular Networks Using MSWF in Wireless Network

机译:无线网络中使用MSWF的多路径蜂窝网络的动态信道分配

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In multi-hop cellular networks, a channel that contributes the lowest relaying delay is proposed to the current node on the path. The current node itself does not receiving on the time-slot of the proposed channel that enhance the capacity and coverage problems of cellular networks. They also allow faster and cheaper deployment of cellular networks. A fundamental issue of these networks is packet delay because multi-hop relaying for signals is involved. An effective channel assignment is the key for the reducing delay. It proposes an optimal and a heuristic channel assignment scheme, called OCA and minimum slot waiting first (MSWF) respectively, for a time division duplex (TDD) wideband code division multiple access (W-CDMA) MCN. OCA provides an optimal solution in minimizing packet delay and can be used as an unbiased or benchmark tool for comparison among different network conditions or networking schemes. However, OCA is computationally expensive and thus, inefficient for large real-time channel assignment problem. In this case, MSWF is more appropriate. Simulation results show that MSWF achieves on average 95% of the delay performance of OCA and is effective in achieving high throughput and low packet delay in conditions of different cell sizes. For improving more on quality of service we can propose channel reuse. Using FDMA and TDMA we can reuse the channels. The novel feature of the proposed technique is that co-coordinated, prioritized TDMA is supported for clusters of access points (AP's) using measurement based time slot assignments.
机译:在多跳蜂窝网络中,向路径上的当前节点建议了贡献最低中继延迟的信道。当前节点本身未在提议的信道的时隙上接收,这会增强蜂窝网络的容量和覆盖范围问题。它们还允许更快,更便宜地部署蜂窝网络。这些网络的基本问题是分组延迟,因为涉及信号的多跳中继。有效的信道分配是减少延迟的关键。它为时分双工(TDD)宽带码分多址(W-CDMA)MCN提出了一种最优的启发式信道分配方案,分别称为OCA和最小时隙等待优先(MSWF)。 OCA在最小化数据包延迟方面提供了最佳解决方案,并且可以用作无偏或基准工具,用于在不同网络条件或网络方案之间进行比较。然而,OCA在计算上是昂贵的,因此对于大型实时信道分配问题而言效率低下。在这种情况下,MSWF更合适。仿真结果表明,MSWF可以平均实现OCA的95%的延迟性能,并且在不同小区大小的情况下,可以有效地实现高吞吐量和低分组延迟。为了进一步改善服务质量,我们可以建议信道重用。使用FDMA和TDMA,我们可以重用通道。所提出的技术的新颖特征是使用基于测量的时隙分配为接入点(AP)的集群支持协调优先的TDMA。

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