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Protocol Design, Testing and Diagnosis towards Dependable Wireless Sensor Networks.

机译:面向可靠的无线传感器网络的协议设计,测试和诊断。

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摘要

This thesis investigates the protocol design, testing, and diagnosis of Wireless Sensor Networks (WSNs) to achieve dependable WSNs.;In the aspect of protocol design, we focus on the MAC (Medium Access Control) layer protocol design. First, we propose an efficient MAC protocol RAS (routing and application based scheduling protocol) for underwater acoustic sensor networks (UWASNs), a type of WSNs that are deployed in the water. Utilizing the medium propagation difference between UWASNs and terrestrial wireless sensor networks (TWSNs), RAS performs parallel transmissions which would definitely result in collisions in TWSNs. It schedules the transmissions with different priorities by allocating longer time to heavier-traffic sensor nodes. The priority mechanism also benefits the fairness performance. Second, we tackle the unreliability problem caused by the packet loss in UWASNs. Based on the previously designed RAS, we propose a reliable RAS called RRAS that obtains a tradeoff between the reliability and the efficiency. RRAS applies an ACK and retransmission mechanism that is different from the traditional one, so that it can maintain a comparable throughput while improving reliability.;Third, in the area of protocol testing, we design RealProct (reliable Protocol conformance testing with Real sensor nodes), a novel and reliable framework for performing protocol conformance testing in WSNs, i.e., testing the protocol implementations against their specifications. With real sensor nodes, RealProct can ensure that the testing scenarios are as close to the real deployment as possible. To save the hardware cost and control efforts required by testing with large-scale real deployments, RealProct virtualizes a network with any topology and generates non-deterministic events using only a small number of sensor nodes. In addition, test execution and verdict are optimized to minimize the number of test case runs, while guaranteeing satisfactory false positive and false negative rates.;Finally, we propose MDiag, a Mobility-assisted Diagnosis approach that employs smartphones to patrol the WSNs and diagnose failures. Diagnosing with a smartphone which is not a component of WSNs does not intrude the execution of the WSNs as most of the existing diagnosis methods. Moreover, patrolling the smartphone in the WSNs to investigate failures is more efficient than deploying another diagnosis network. During the patrol, packets exchanged in the WSNs are collected and then analyzed by our implemented packet decoder. Statistical rules are also designed to guide the detection of abnormal cases. Aiming at improving the patrol efficiency, a patrol approach MSEP (maximum snooping efficiency patrol) is proposed. We compare MSEP with a naive method, the greedy method, and a baseline method, and demonstrate that MSEP is better in increasing the detection rate and reducing the patrol time than other methods.;We perform extensive evaluations to verify the proposed techniques and algorithms, and the results confirm their advantages in achieving dependable WSNs.
机译:本文对无线传感器网络(WSN)的协议设计,测试和诊断进行了研究,以实现可靠的无线传感器网络。在协议设计方面,我们着重研究MAC(Medium Access Control)层协议设计。首先,我们为水下声学传感器网络(UWASN)(一种部署在水中的WSN)提出了一种有效的MAC协议RAS(基于路由和基于应用的调度协议)。利用UWASN和地面无线传感器网络(TWSN)之间的介质传播差异,RAS执行并行传输,这肯定会导致TWSN中发生冲突。它通过为交通流量较大的传感器节点分配更长的时间来调度具有不同优先级的传输。优先级机制也有利于公平性表现。其次,我们解决了由于UWASN中的数据包丢失而导致的不可靠性问题。基于先前设计的RAS,我们提出了一种可靠的RAS,称为RRAS,该RAS在可靠性和效率之间进行了权衡。 RRAS应用了不同于传统的ACK和重传机制,因此可以在保持可靠性的同时保持可比的吞吐量。第三,在协议测试领域,我们设计了 RealProct (可靠的协议带有真实传感器节点的一致性测试),一种新颖且可靠的框架,用于在WSN中执行协议一致性测试,即根据其规范测试协议实现。利用真实的传感器节点,RealProct可以确保测试方案尽可能接近实际部署。为了节省通过大规模实际部署进行测试所需的硬件成本和控制工作,RealProct可以虚拟化具有任何拓扑的网络,并仅使用少量传感器节点即可生成不确定的事件。此外,优化了测试执行和判定以最大程度地减少测试用例的运行次数,同时保证令人满意的误报率和误报率。最后,我们提出了MDiag,一种移动辅助诊断方法,该方法利用智能手机巡逻WSN并进行诊断失败。使用不是WSN组成部分的智能手机进行诊断不会像大多数现有诊断方法那样干扰WSN的执行。此外,在WSN中巡逻智能手机以调查故障比部署另一个诊断网络更有效。在巡逻期间,将收集WSN中交换的数据包,然后由我们实现的数据包解码器进行分析。统计规则还旨在指导异常情况的检测。为了提高巡逻效率,提出了一种巡逻方法MSEP(最大侦听效率巡逻)。我们将MSEP与朴素的方法,贪婪的方法和基线的方法进行了比较,证明MSEP在提高检测率和减少巡逻时间方面比其他方法更好。;我们进行了广泛的评估,以验证所提出的技术和算法,结果证实了它们在获得可靠的WSN方面的优势。

著录项

  • 作者

    Xiong, Junjie.;

  • 作者单位

    The Chinese University of Hong Kong (Hong Kong).;

  • 授予单位 The Chinese University of Hong Kong (Hong Kong).;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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