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Real-time performance evaluation of asynchronous time division traffic-aware and delay-tolerant scheme in ad hoc sensor networks

机译:Ad hoc传感器网络中异步时分流量感知和时延容忍方案的实时性能评估

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摘要

Wireless infrastructureless networks demand high resource availability with respect to the progressively decreasing energy consumption. A variety of new applications with different service requirements demand fairness to the service provision and classification, and reliability in an end-to-end manner. High-priority packets are delivered within a hard time delay bound whereas improper power management in wireless networks can substantially degrade the throughput and increase the overall energy consumed. In this work a new scheme is being proposed and evaluated in real time using a state-based layered oriented architecture for energy conservation (EC). The proposed scheme uses the node's self-tuning scheme, where each node is assigned with a dissimilar sleep and wake time, based on traffic that is destined for each node. This approach is based on stream's characteristics with respect to different caching behavioral and storage-capacity characteristics, and considers a model concerning the layered connectivity characteristics for enabling the EC mechanism. EC characteristics are modeled and through the designed tiered architecture the estimated metrics of the scheme can be bounded and tuned into certain regulated values. The real-time evaluation results were extracted by using dynamically moving and statically located sensor nodes. A performance comparison is done with respect to different data traffic priority classifications following a . real-time asymmetrical transmission channel. Results have shown the scheme's efficiency in conserving energy while the topology configuration changes with time.
机译:无无线基础设施网络在逐步降低能耗方面需要高资源可用性。具有不同服务需求的各种新应用程序要求对服务提供和分类的公平性以及端对端方式的可靠性。高优先级数据包在硬时间延迟范围内传送,而无线网络中不正确的电源管理可能会大大降低吞吐量并增加总体能耗。在这项工作中,正在提出一种新方案,并使用基于状态的分层面向节能的体系结构(EC)进行实时评估。提出的方案使用节点的自调整方案,其中,根据发往每个节点的流量,为每个节点分配不同的睡眠和唤醒时间。该方法基于流的特性(与不同的缓存行为和存储容量特性有关),并考虑了一个与分层连接特性有关的模型,以启用EC机制。对EC特性进行建模,并通过设计的分层体系结构,可以将方案的估计指标限定并调整为某些可调节值。通过使用动态移动和静态定位的传感器节点提取实时评估结果。针对后面的不同数据流量优先级分类进行了性能比较。实时非对称传输通道。结果表明,该方案在节约能源的同时,拓扑配置随时间变化。

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