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Accurate Location Estimation Of Moving Object With Energy Constraint & Adaptive Update Algorithms To Save Data

机译:利用能量约束和自适应更新算法精确估计运动物体的位置以保存数据

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In research paper “Accurate estimation of the target location of object with energy constraint & Adaptive Update Algorithms to Save Data” one of the central issues in sensor networks is track the location, of moving object which have overhead of saving data, an accurate estimation of the target location of object with energy constraint .We do not have any mechanism which control and maintain data .The wireless communication bandwidth is also very limited. Some field which is using this technique are flood and typhoon detection, forest fire detection, temperature and humidity and ones we have these information use these information back to a central air conditioning and ventilation system. In this research paper, we propose protocol based on the prediction and adaptive based algorithm which is using less sensor node reduced by an accurate estimation of the target location. we are using minimum three sensor node to get the accurate position .We can extend it upto four or five to find more accurate location but we have energy constraint so we are using three with accurate estimation of location help us to reduce sensor node..We show that our tracking method performs well in terms of energy saving regardless of mobility pattern of the mobile target .We extends the life time of network with less sensor node. Once a new object is detected, a mobile agent will be initiated to track the roaming path of the object. The agent is mobile since it will choose the sensor closest to the object to stay. The agent may invite some nearby slave sensors to cooperatively position the object and inhibit other irrelevant (i.e., farther) sensors from tracking the object. As a result, the communication and sensing overheads are greatly reduced
机译:在研究论文“利用能量约束和保存数据的自适应更新算法精确估计目标位置”中,传感器网络的中心问题之一是跟踪移动目标的位置,该目标具有节省数据的开销,对目标的精确估计目标的目标位置受到能量的限制。我们没有任何控制和维护数据的机制。无线通信带宽也非常有限。使用此技术的一些领域是洪水和台风检测,森林火灾检测,温度和湿度,而我们掌握的这些信息会将这些信息回传到中央空调和通风系统。在这篇研究论文中,我们提出了一种基于预测和自适应算法的协议,该算法使用较少的传感器节点,并通过精确估计目标位置来减少传感器节点。我们使用最少的三个传感器节点来获得准确的位置。我们可以将其扩展到四个或五个以找到更准确的位置,但是我们有能量约束,因此我们使用三个位置的精确估计来帮助我们减少传感器节点。结果表明,无论移动目标的移动模式如何,我们的跟踪方法在节能方面都表现良好。我们以更少的传感器节点延长了网络的使用寿命。一旦检测到新对象,将启动移动代理以跟踪该对象的漫游路径。代理是可移动的,因为它会选择最靠近待留对象的传感器。代理可以邀请附近的一些从属传感器协作定位对象,并禁止其他不相关(即,更远)的传感器跟踪对象。结果,大大降低了通信和传感开销

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