Navia Marlon, Campelo Jose C, Bonastre Alberto, Ors Rafael, Capella Juan V, Serrano Juan J
Computer Science School, Escuela Superior Politécnica Agropecuaria de Manabí (ESPAM MFL), 10 de Agosto and Granda Centeno Street, No. 82, 130607 Calceta, Ecuador.
IUI ITACA, Sensor Networks Lab, Universitat Politècnica de València, Camino de Vera, s/n, 46022 Valencia, Spain.
Sensors (Basel). 2015 Sep 18;15(9):23927-52. doi: 10.3390/s150923927.
Several systems have been proposed to monitor wireless sensor networks (WSN). These systems may be active (causing a high degree of intrusion) or passive (low observability inside the nodes). This paper presents the implementation of an active hybrid (hardware and software) monitor with low intrusion. It is based on the addition to the sensor node of a monitor node (hardware part) which, through a standard interface, is able to receive the monitoring information sent by a piece of software executed in the sensor node. The intrusion on time, code, and energy caused in the sensor nodes by the monitor is evaluated as a function of data size and the interface used. Then different interfaces, commonly available in sensor nodes, are evaluated: serial transmission (USART), serial peripheral interface (SPI), and parallel. The proposed hybrid monitor provides highly detailed information, barely disturbed by the measurement tool (interference), about the behavior of the WSN that may be used to evaluate many properties such as performance, dependability, security, etc. Monitor nodes are self-powered and may be removed after the monitoring campaign to be reused in other campaigns and/or WSNs. No other hardware-independent monitoring platforms with such low interference have been found in the literature.
已经提出了几种用于监控无线传感器网络(WSN)的系统。这些系统可能是主动式的(会造成高度入侵)或被动式的(在节点内部的可观测性较低)。本文介绍了一种低入侵性的主动式混合(硬件和软件)监控器的实现。它基于在传感器节点上添加一个监控节点(硬件部分),该监控节点通过标准接口能够接收在传感器节点中执行的一段软件发送的监控信息。根据数据大小和所使用的接口,评估监控器在传感器节点中对时间、代码和能量造成的入侵。然后对传感器节点中常用的不同接口进行评估:串行传输(通用同步异步收发器)、串行外设接口(SPI)和并行接口。所提出的混合监控器提供了关于WSN行为的高度详细信息,几乎不受测量工具(干扰)的影响,这些信息可用于评估许多属性,如性能、可靠性、安全性等。监控节点是自供电的,并且在监控活动结束后可以拆除,以便在其他活动和/或WSN中重复使用。在文献中尚未发现其他具有如此低干扰的与硬件无关的监控平台。