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A Cross-Layer QoE-Based Approach for Event-Based Multi-Tier Wireless Multimedia Sensor Networks

机译:基于事件的多层无线多媒体传感器网络的基于QoE的跨层方法

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Wireless Multimedia Sensor Networks (WMSNs) are attracting attention from both academic and industrial environments due to the rapid development of low-cost multimedia sensors. With the enhancement of the multimedia content captured by multimedia devices, WMSNs play an important role in pervasive and ubiquitous systems. The multimedia content in these networks has the potential to enhance the level of collected information, by enlarging the range of coverage, and enabling multi-view support. In the case of WMSN applications, the multi-tier network architecture has proved to be more beneficial than single-tier architecture in terms of energy-efficiency, scalability, functionality and reliability. In this context, a multimedia event detection application is a promising application for multi-tier WMSNs, where the lower-tier nodes detect an event occurrence by means of scalar measurements, and the higher-tier nodes will be woken up to send realtime video flows from the event area. The transmission of multimedia content requires a certain quality level from the user s perspective, while energy consumption and network overhead should be minimized Among the existing mechanisms for improving video transmissions, application-level Forward Error Correction (FEC) is regarded as a suitable solution to improve video quality level from the user's standpoint. In this work, the authors propose an adaptive cross-layer approach, which includes a Quality of Experience (QoE)-aware FEC mechanism for WMSNs by generating redundant packets, based on frame importance from user's experience. Additionally, the aothors introduce a multi-tier routing protocol to select the best route to transmit multimedia data. According to the simulation results, the proposed cross-layer approach achieved high video quality level with reduced transmission of redundant packets, which will bring many benefits to a resource-constrained system.
机译:由于低成本多媒体传感器的快速发展,无线多媒体传感器网络(WMSN)引起了学术和工业环境的关注。随着多媒体设备捕获的多媒体内容的增强,WMSN在普及和无处不在的系统中扮演着重要的角色。这些网络中的多媒体内容有可能通过扩大覆盖范围并实现多视图支持来提高收集信息的水平。就WMSN应用而言,事实证明,多层网络体系结构在能源效率,可伸缩性,功能性和可靠性方面比单层体系结构更有利。在这种情况下,多媒体事件检测应用程序是多层WMSN的有前途的应用程序,其中较低层的节点通过标量测量来检测事件的发生,而较高层的节点将被唤醒以发送实时视频流从活动区域。从用户的角度来看,多媒体内容的传输需要一定的质量水平,同时应将能耗和网络开销降至最低。从用户的角度提高视频质量。在这项工作中,作者提出了一种自适应跨层方法,该方法包括基于用户体验的帧重要性,通过生成冗余数据包为WMSN提供感知质量(QoE)的FEC机制。另外,aothors引入了多层路由协议以选择最佳路由来传输多媒体数据。根据仿真结果,所提出的跨层方法通过减少冗余数据包的传输达到了较高的视频质量水平,这将为资源受限的系统带来很多好处。

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