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A dynamic programming approach: Improving the performance of wireless networks

机译:动态编程方法:提高无线网络的性能

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Traditional wireless networks focus on transparent data transmission where the data are processed at either the source or destination nodes. In contrast, the proposed approach aims at distributing data processing among the nodes in the network thus providing a higher processing capability than a single device. Moreover, energy consumption is balanced in the proposed scheme since the energy intensive processing will be distributed among the nodes. The performance of a wireless network is dependent on a numberof factors including the available energy, energy-efficiency, data processing delay, transmission delay, routing decisions, security architecture etc. Typical existing distributed processing schemes have a fixed node or node type assigned to the processing at the design phase, for example a cluster head in wireless sensor networks aggregating the data. In contrast, the proposed approach aims to virtualize the processing, energy, and communication resources of the entire heterogeneous network and dynamically distribute processing steps along the communication path while optimizing performance. Moreover, the security of the communication is considered an important factor in the decision to either process or forward the data. Overall, the proposed scheme creates a wireless "computing cloud" where the processing tasks are dynamically assigned to the nodes using the Dynamic Programming (DP) methodology. The processing and transmission decisions are analytically derived from network models in order to optimize the utilization of the network resources including: available energy, processing capacity, security overhead, bandwidth etc. The proposed DP-based scheme is mathematically derived thus guaranteeing performance. Moreover, the scheme is verified through network simulations.
机译:传统的无线网络专注于透明数据传输,其中在源或目标节点上处理数据。相反,所提出的方法旨在在网络中的节点之间分配数据处理,从而提供比单个设备更高的处理能力。而且,由于能量密集型处理将在节点之间分配,因此在提出的方案中能量消耗是平衡的。无线网络的性能取决于许多因素,包括可用能量,能效,数据处理延迟,传输延迟,路由决策,安全架构等。典型的现有分布式处理方案将固定节点或节点类型分配给无线网络。在设计阶段进行处理,例如在无线传感器网络中的簇头聚合数据。相反,所提出的方法旨在虚拟化整个异构网络的处理,能源和通信资源,并在优化性能的同时沿通信路径动态分配处理步骤。此外,通信的安全性被认为是决定处理或转发数据的重要因素。总体而言,提出的方案创建了一个无线“计算云”,其中使用动态编程(DP)方法将处理任务动态分配给节点。处理和传输决策是从网络模型中分析得出的,以便优化网络资源的利用,包括:可用能量,处理能力,安全性开销,带宽等。建议的基于DP的方案是通过数学方法得出的,从而保证了性能。此外,该方案通过网络仿真得到了验证。

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