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Adaptive Information Dissemination Control to Provide Diffdelay for the Internet of Things

机译:自适应信息传播控制为物联网提供延迟

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摘要

Applications running on the Internet of Things, such as the Wireless Sensor and Actuator Networks (WSANs) platform, generally have different quality of service (QoS) requirements. For urgent events, it is crucial that information be reported to the actuator quickly, and the communication cost is the second factor. However, for interesting events, communication costs, network lifetime and time all become important factors. In most situations, these different requirements cannot be satisfied simultaneously. In this paper, an adaptive communication control based on a differentiated delay (ACCDS) scheme is proposed to resolve this conflict. In an ACCDS, source nodes of events adaptively send various searching actuators routings (SARs) based on the degree of sensitivity to delay while maintaining the network lifetime. For a delay-sensitive event, the source node sends a large number of SARs to actuators to identify and inform the actuators in an extremely short time; thus, action can be taken quickly but at higher communication costs. For delay-insensitive events, the source node sends fewer SARs to reduce communication costs and improve network lifetime. Therefore, an ACCDS can meet the QoS requirements of different events using a differentiated delay framework. Theoretical analysis simulation results indicate that an ACCDS provides delay and communication costs and differentiated services; an ACCDS scheme can reduce the network delay by 11.111%–53.684% for a delay-sensitive event and reduce the communication costs by 5%–22.308% for interesting events, and reduce the network lifetime by about 28.713%.
机译:在物联网上运行的应用程序,例如无线传感器和执行器网络(WSAN)平台,通常具有不同的服务质量(QoS)要求。对于紧急事件,至关重要的是将信息迅速报告给执行器,而通信成本是第二个因素。但是,对于有趣的事件,通信成本,网络寿命和时间都成为重要因素。在大多数情况下,无法同时满足这些不同的要求。在本文中,提出了一种基于微分延迟(ACCDS)方案的自适应通信控制来解决该冲突。在ACCDS中,事件的源节点根据对延迟的敏感程度来自适应地发送各种搜索执行器路由(SAR),同时保持网络寿命。对于延迟敏感事件,源节点会在很短的时间内向执行器发送大量SAR,以识别并通知执行器。因此,可以快速采取行动,但通讯成本较高。对于对延迟不敏感的事件,源节点发送较少的SAR,以降低通信成本并延长网络寿命。因此,使用差分延迟框架,ACCDS可以满足不同事件的QoS要求。理论分析仿真结果表明,ACCDS提供了延迟和通信成本以及差异化服务。对于延迟敏感事件,ACCDS方案可以将网络延迟减少11.111%–53.684%,对于有趣事件,可以将通信成本减少5%–22.308%,并且可以将网络寿命减少大约28.713%。

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