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Novel joint routing and scheduling algorithms for minimizing end-to-end delays in multi Tx-Rx wireless mesh networks

机译:新颖的联合路由和调度算法,用于最小化多Tx-Rx无线网状网络中的端到端延迟

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摘要

Multiple transmit (Tx) or receive (Rx) capability is a significant advance in wireless communications. This so called MTR capability allows the creation of wireless mesh networks (WMNs) that are ideal for use as a highspeed wireless backbone that spans vast geographical areas. A fundamental problem, however, is deriving a minimal transmission schedule or superframe that yields low end-to-end delays, with the primary constraint that routers are not allowed to Tx and Rx simultaneously. In this paper, we consider a joint routing and link scheduling approach that addresses two fundamental issues that influence end-to-end delays: superframe length and transmission slot order. Shortening the superframe length, in terms of slots, is expected to minimize the inter-link activation time while reordering transmission slots increases the likelihood that links on a path are activated consecutively. We propose two algorithms. The first called JRS-Multi-DEC uses a novel metric to minimize the load of each link while the second, called JRS-BIP, uses a Binary Integer Program approach. Both algorithms aim to minimize the overall delay and use slot re-ordering on the resulting schedule to further reduce delay. Numerical results show both algorithms are able to reduce the average end-to-end delay by approximately 50% as compared to a non joint routing algorithm. (C) 2015 Elsevier B.V. All rights reserved.
机译:多重发射(Tx)或接收(Rx)能力是无线通信的一项重大进步。这种所谓的MTR功能允许创建无线网状网络(WMN),非常适合用作跨越广阔地理区域的高速无线骨干网。然而,一个基本的问题是获得最小的传输时间表或超帧,从而产生低的端到端延迟,其主要限制是不允许路由器同时进行Tx和Rx传输。在本文中,我们考虑一种联合路由和链路调度方法,该方法解决了影响端到端延迟的两个基本问题:超帧长度和传输时隙顺序。就时隙而言,期望缩短超帧长度以最小化链路间激活时间,同时对传输时隙进行重新排序增加了路径上的链路​​被连续激活的可能性。我们提出两种算法。第一个称为JRS-Multi-DEC,它使用一种新颖的度量标准来最小化每个链路的负载,而第二个称为JRS-BIP,则使用二进制整数程序方法。两种算法都旨在使总延迟最小化,并在生成的时间表上使用时隙重新排序以进一步减少延迟。数值结果表明,与非联合路由算法相比,这两种算法均能够将平均端到端延迟降低约50%。 (C)2015 Elsevier B.V.保留所有权利。

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