移动环境下非抢占式混合WSN协议性能分析

Israel Leyva Mayorga, M. E. Rivero-Angeles, Chadwick Carreto Arellano
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引用次数: 2

摘要

无线传感器网络(wsn)的发展使新的应用成为可能,从而增加了通信协议的复杂性。具体来说,移动监控应用程序(其中网络被设置为监控移动对象)要求系统以某种方式响应,以便进行充分和可靠的对象跟踪和状态报告。移动对象可以是独立的,也可以是由系统控制的,在前者中,某种发射器附着在移动实体上,以执行状态报告职责,在人类或标本的情况下,可能包括生命体征的报告。鉴于此,从移动物体获得的信息必须以最小的延迟和一定程度的可靠性发送,以便在需要时进行适当的紧急处理。此外,移动环境通常包含创建多事件环境的其他现象,从而增加节点中的检测和传输速率,从而延迟报告。混合算法允许传感器网络执行连续监测和事件驱动应用程序,已经证明它们能够在需要紧急警报的不同环境中提高性能,同时对现象进行永久监测。此外,这些协议可以考虑优先级分配,以减少报告延迟和提高重要数据包的可靠性,从而增强QoS参数。研究了包含移动目标的多事件环境下WSN非抢占混合协议的性能。结果表明,通过对高优先级和低优先级数据包分配不同的传输概率,可以在网络中发生其他事件的情况下降低移动事件报告延迟。因此,对于必须进行紧急处理的关键时刻应用程序,可以获得更好的性能。
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Performance Analysis of a Non-preemptive Hybrid WSN Protocol in Mobile Environments
Evolution in Wireless Sensor Networks (WSNs) has allowed new applications that led to an increase in the complexity of communication protocols. Specifically, mobile surveillance applications (where the network is set to monitor mobile objects) require the system to respond in a certain manner so adequate and reliable object tracking and status reporting takes place. Mobile objects can be either independent or controlled by the system, in the former, some sort of transmitter is attached to the mobile entity in order to perform status reporting duties, which, in the case of human beings or specimens may comprise the reporting of vital signs. In view of this, information obtained from mobile objects must be sent with minimal delay and with certain degree of reliability in order to achieve adequate emergency handling when required. Furthermore, mobile environments usually incorporate additional phenomena that creates a multi-event environment, increasing the rate of detection and transmission in the nodes, hence, delaying the report. Hybrid algorithms that allow sensor networks to perform continuous monitoring and event driven applications have proven their ability to enhance performance in different environments where emergency alarms are required while performing a permanent surveillance of the phenomena. Also, these protocols may consider priority assignment in order to reduce report delay and increase reliability in important packets, thus enhancing QoS parameters. In this work, the performance of a non-preemptive hybrid protocol for WSN is studied considering multi-event environments containing mobile targets. Results show that, by using different transmission probabilities, assigned to high and low priority data packets, mobile event reporting delay can be reduced despite the occurrence of other events within the network. As such, a better performance is obtained for critical-time applications where emergency handling is a must.
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