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MAC Layer Dynamic Backoff Scheme for Message Delivery Reliability in Wireless Sensor Networks

机译:MAC层动态退避方案,用于无线传感器网络中的消息传递可靠性

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We propose using dynamic backoff on CSMA-type MAC layer protocols to improve message delivery reliability in wireless sensor networks. It is assumed that the MAC layer is able to determine message reliability requirements by reading a reliability data bit embedded within the message. The basic concept is to apply shorter random backoff times to important messages. This gives them the opportunity to test the availability of the communication channel more frequently, enhancing their chance of finding the medium idle. However, this technique might produce the opposite result by allowing the MAC layer to retry sending the important messages in a higher frequency. As a result important messages may reach their maximum retry limit, and get removed from the network. To counteract, we also propose giving the messages a maximum retry limit based on their type. In this setting, important messages will have a higher maximum retry limit. We developed a simulation program to validate our proposed dynamic backoff scheme. The results obtained show that under reasonable network utilization level, the latency is reduced for important messages. Under heavy network utilization conditions, the dynamic backoff scheme drops normal messages leaving the network resources available to handle the delivery of important messages.
机译:我们建议在CSMA类型的MAC层协议上使用动态退避,以提高无线传感器网络中消息传递的可靠性。假定MAC层能够通过读取嵌入在消息中的可靠性数据位来确定消息的可靠性要求。基本概念是将较短的随机退避时间应用于重要消息。这使他们有机会更频繁地测试通信信道的可用性,从而增加了他们发现介质空闲的机会。但是,通过允许MAC层以更高的频率重试发送重要消息,此技术可能会产生相反的结果。结果,重要消息可能达到其最大重试限制,并从网络中删除。为了进行抵消,我们还建议根据消息的类型为消息设置最大重试限制。在此设置下,重要邮件将具有更高的最大重试限制。我们开发了一个仿真程序来验证我们提出的动态补偿方案。获得的结果表明,在合理的网络利用率级别下,重要消息的等待时间减少了。在繁重的网络利用率条件下,动态回退方案会丢弃普通消息,从而使网络资源可用于处理重要消息的传递。

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