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A Reliability-Oriented Transmission Service in Wireless Sensor Networks

机译:无线传感器网络中面向可靠性的传输服务

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摘要

Reliable communications are essential for most applications in wireless sensor networks (WSNs). In traditional approaches, the per-hop and end-to-end (E2E) recovery schemes are widely used. These schemes, however, suffer from low E2E success rate and poor energy efficiency in large-scale real environments. Through empirical studies, in this paper we identify three major problems that hinder the efficient and reliable communications. To address these problems, we propose a novel in-middle recovery scheme and realize it by designing and implementing a proliferation routing. Proliferation routing integrates three core technologies, namely, capability-based path finder, a randomized dispersity, and reproduction. Proliferation routing offers great flexibilities for transmissions. It cannot only be applied with any Medium Access Control (MAC) protocols and routing metrics, but also obtains a desired service quality (i.e., transmission success rate, energy cost, etc.) by controlling the system parameters. To demonstrate the effectiveness of proliferation routing, we thoroughly analyze its performance. We also conduct performance evaluations through implementation experiments as well as simulations. In a specific experimental setup, proliferation routing can increase the E2E transmission success rate up to 80 percent compared with the well-known hop-based routing and flooding.
机译:对于无线传感器网络(WSN)中的大多数应用而言,可靠的通信至关重要。在传统方法中,逐跳和端到端(E2E)恢复方案已被广泛使用。但是,这些方案在大规模的实际环境中具有较低的端到端成功率和较差的能源效率。通过实证研究,本文确定了阻碍有效和可靠通信的三个主要问题。为了解决这些问题,我们提出了一种新颖的中间恢复方案,并通过设计和实施扩散路由来实现。扩散路由集成了三种核心技术,即基于能力的路径查找器,随机分散性和复制。扩散路由为传输提供了极大的灵活性。它不仅可以与任何媒体访问控制(MAC)协议和路由度量一起应用,而且还可以通过控制系统参数来获得所需的服务质量(即传输成功率,能源成本等)。为了证明扩散路由的有效性,我们彻底分析了其性能。我们还通过实施实验和模拟进行性能评估。在特定的实验设置中,与众所周知的基于跃点的路由和泛洪相比,扩散路由可以将E2E传输成功率提高多达80%。

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