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Challenges in multi-hop networks

机译:多跳网络中的挑战

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Wireless multi-hop networks have generated a lot of interest in the recent past due to their many potential applications. Examples of such networks are sensor, ad hoc, and mesh networks. These networks bring a lot of new challenges; some are linked to the wireless physical layer, some to the end-devices, and some to the multi-hop characteristic. A wireless channel is usually characterized by its broadcast nature, strong path loss, time varying fading and shadowing. Many wireless devices have limited battery and processing power. Multi-hopping implies the existence of many geographically distributed devices that share the wireless medium which creates the needs for efficient MAC and routing protocols to mitigate interference and take full advantage of spatial reuse. The complexity and time-varying attributes of the wireless channel seem to call for cross-layer integration, i.e., the need for the higher layers of the protocol stack to take into account the characteristics of the physical layer. In spite of a vast amount of research on multi-hop networks in the past few years, many fundamental challenges have not been answered. This presentation will ask fundamental questions on 3 of these challenges and bring some elements of response. The first challenge is the design of a fair and efficient MAC protocol. Another one is to find the right level of cross-layer interactions to design schemes that are more efficient while maintaining the robustness and the usability of the system. Another challenge is to understand the fundamental limits of multi-hop networks in realistic scenarios.
机译:由于它们的许多潜在应用,无线多跳网络在最近的过去产生了很多兴趣。这种网络的示例是传感器,ad hoc和网状网络。这些网络带来了很多新的挑战;有些是与无线物理层相关联的,一些到终端设备,以及一些到多跳特征。无线频道通常是其广播性质,强的路径损耗,时变褪色和阴影的特征。许多无线设备具有有限的电池和处理能力。多跳现意味着许多地理上分布式设备的存在,该设备共享无线介质,这些设备为高效的MAC和路由协议创造了需要减轻干扰并充分利用空间重用的需求。无线信道的复杂性和时变属性似乎呼叫跨层集成,即,对协议栈的较高层的需要考虑物理层的特征。尽管过去几年对多跳网络进行了大量的研究,但许多根本挑战尚未得到回答。本演示文稿将提出有关3项挑战的基本问题,并带来一些反应的要素。第一个挑战是一个公平和高效的MAC协议的设计。另一个是找到与设计方案的跨层相互作用的正确级别,这在保持系统的稳健性和可用性的同时更有效。另一个挑战是了解现实情景中的多跳网络的基本限制。

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