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首页> 外文期刊>Sensors Journal, IEEE >Optimized Multi-Constrained Quality-of-Service Multipath Routing Approach for Multimedia Sensor Networks
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Optimized Multi-Constrained Quality-of-Service Multipath Routing Approach for Multimedia Sensor Networks

机译:多媒体传感器网络的优化多约束服务质量多径路由方法

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摘要

Modern multimedia sensor networks impose strict constraints on both the delay and energy consumption when time-critical data must be reported to the sink within a limited bandwidth without any loss. Failure to transmit an event to the sink occurs for many reasons, including inherence limitations of sensors, power consumption, and reliability. We propose a mathematical model for a novel quality-of-service (QoS) routing-determination method. The proposed scheme enables determining the optimal path to provide appropriate shared radio satisfying the QoS for a wide range of real-time intensive media. The mathematical model is based on the Lagrangian relaxation method, to control adaptive switching of hop-by-hop QoS routing protocols. The embedded criteria for each objective function are used to decide which path from source to sink will be selected. Simulation results show that, compared with existing routing protocols, the approach proposed in this paper significantly improves the packet received ratio, energy consumption, and average end-to-end delay of the sensor node.
机译:当必须在有限的带宽内将对时间要求严格的数据报告给接收器时,现代多媒体传感器网络会在延迟和能耗方面施加严格的限制。无法将事件发送到接收器失败的原因很多,包括传感器的固有限制,功耗和可靠性。我们提出了一种新颖的服务质量(QoS)路由确定方法的数学模型。所提出的方案使得能够确定最佳路径,以为广泛的实时密集型媒体提供满足QoS的适当共享无线电。该数学模型基于拉格朗日松弛方法,以控制逐跳QoS路由协议的自适应切换。每个目标函数的嵌入标准用于决定从源到汇的路径。仿真结果表明,与现有的路由协议相比,本文提出的方法显着提高了传感器节点的数据包接收率,能耗和平均端到端延迟。

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