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Designing WiMAX Static Environment using Local Automata based Autonomic Network Architecture for Wireless Sensor Networks

机译:基于本地自动网络自动网络架构的无线传感器网络设计WiMAX静态环境

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Smart grid applications requires network availability with lesser dark spots. The available qualitative requirements with dynamic nodes, static stations and routers need to be validated without collisions. This can reach to back-haul network with reachability of specific nodes and routers in Wireless Sensor Network. One method of solving the issue is to use local automate based environment for dynamic nodes. Advanced with static environment configuring address agnostic feature could bridge the gap between static and dynamic environments. The multicast probabilistic model using LA-ANA is proposed with quantified metrics in MAC layer to avoid congestion and dark spots in Wireless Sensor Networks. Thus, increasing throughput and fault tolerance levels with 10-15% supporting unicast and multicast delivery.
机译:智能电网应用程序需要具有较小点的网络可用性。无需碰撞,需要验证具有动态节点,静态站和路由器的可用定性要求。这可以通过无线传感器网络中的特定节点和路由器的可拆动性达到返回拖拉网络。解决问题的一种方法是使用基于本地自动化的基于动态节点的环境。使用静态环境的高级配置地址不可知功能可以介绍静态和动态环境之间的间隙。使用LA-ANA的组播概率模型在MAC层中具有量化度量,以避免无线传感器网络中的拥塞和黑点。因此,提高吞吐量和容错级别,具有10-15%支持单播和多播交付。

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