Fault Management for Self-Healing in Ubiquitous Sensor Network

Giljong Yoo, Jinsoo Jung, Eunseok Lee
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引用次数: 5

Abstract

This work concerns the development of a fault model of sensor for detecting and isolating sensor, actuator, and various faults in USNs (Ubiquitous Sensor Network). USN are developed to create relationships between humans, objects and computers in various fields. A management research of sensor nodes is very important because the ubiquitous sensor network has the numerous sensor nodes. However, Self-healing technologies are insufficient to restore when an error event occurs in a sensor node in a USN environment. A layered healing architecture for each node layer (3-tier) is needed, because most sensor devices have different capacities in USN. In this paper, we design a fault model and architecture of the sensor and sensor node separately for self-healing in USN. In order to evaluate our approach, we implement prototype of the USN fault management system to evaluate our approach. We compare the resource use of self-healing components in the general distributed computing (wired network) and the USN.
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泛在传感器网络自修复故障管理
本工作涉及传感器故障模型的开发,用于检测和隔离USNs(泛在传感器网络)中的传感器、执行器和各种故障。USN的发展是为了在各个领域建立人、物体和计算机之间的关系。无处不在的传感器网络中存在大量的传感器节点,因此对传感器节点的管理研究非常重要。然而,在USN环境中,当传感器节点发生错误事件时,自我修复技术不足以恢复。由于USN中大多数传感器设备具有不同的容量,因此需要为每个节点层(3层)提供分层修复架构。在USN中,我们分别设计了传感器和传感器节点的故障模型和自修复结构。为了评估我们的方法,我们实现了USN故障管理系统的原型来评估我们的方法。我们比较了自修复组件在一般分布式计算(有线网络)和USN中的资源使用情况。
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