传感器网络中冗余数据消除的分布式标量控制器选择方案

S. Priyadarshini, S. Panigrahi
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引用次数: 4

摘要

本研究提出了一种新的分布式策略,用于由标量控制器选择驱动的减少摄像机数量的驱动,以消除在推测的任何地理区域中发生的冗余数据传输量。提出的框架是基于将监测区域划分为若干虚拟分区。在每个隔室中选择一个标量控制器,其选择方式是使其距离有关隔室中心点的所有标量中最小。此外,所有相机都以预定的圆形方式排列。无论何时发生事件,标量控制器都会将事件的发生通知各自的摄像机。相机之间协同交换信息,以决定其中哪一个将被激活。从实验结果中得到的最小的相机激活、增强的覆盖率、最小的冗余比、降低的能量和功率消耗,证实了我们提出的方法比其他方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Distributed Scalar Controller Selection Scheme for Redundant Data Elimination in Sensor Networks
This research presents a novel distributed strategy for actuation of reduced number of cameras motivated by scalar controller selection for eliminating the amount of redundant data transmission taking place in any geographic zone under speculation. The proposed framework is based on dividing the monitored region into a number of virtual compartments. A scalar controller is selected in each of the compartments, which is chosen in such a manner that its distance is the minimum among all the scalars from the central point of the concerned compartment. Further, all the cameras are arranged in a predetermined circular fashion. Whenever, an event takes place, the scalar controllers inform their respective cameras regarding its occurrence. The cameras collaboratively exchange information among themselves for deciding which among them are to be actuated. The least camera activation, enhanced coverage ratio, minimized redundancy ratio, reduced energy and power expenditure obtained from the experimental outcomes affirm the effectiveness of our proposed method over other approaches.
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