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Stability Analysis of SIDR Model for Worm Propagation in Wireless Sensor Network

机译:无线传感器网络中蠕虫传播的SIDR模型的稳定性分析

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Background/Objectives: Security is essential concerns in wireless sensor network. To find the stability points when worms appear in the wireless sensor network. Methods/Statistical Analysis: By using ODE formulate the SIDR model by introducing the concept of dead nodes for wireless sensor network. Find the existence of positive equilibrium and perform the stability test with the help of Jacobian matrix. Some theorems are proposed for the analysis of model. Findings: The model explains that the inactive nodes are the nodes which die due to battery consumption and cannot be recharged because of remotely located in harsh region. Inactive nodes are not capable to transmit data from one sensor node to another sensor node. The model describes the nonlinear dynamics of Susceptible, Infectious, Dead and Recovered class of nodes. The entire dynamics of the transmission of worms can be analyzed by this mathematical model, propagating feat by worms in WSN can be determine with the help of threshold value of Ro. This model validates through extensive results by using MATLAB. Application/Improvements: Proposed model is useful to reduce the battery overhead, enhance the lifetime of wireless sensor network.
机译:背景/目的:安全是无线传感器网络中必不可少的问题。查找蠕虫在无线传感器网络中出现时的稳定点。方法/统计分析:通过使用ODE,通过引入无线传感器网络死节点的概念来制定SIDR模型。找到正平衡的存在,并借助雅可比矩阵进行稳定性测试。提出了一些定理用于模型分析。结果:该模型解释说,不活动的节点是由于电池消耗而死亡的节点,并且由于位于偏远地区而无法充电。非活动节点无法将数据从一个传感器节点传输到另一传感器节点。该模型描述了节点的易感,传染,死亡和恢复类别的非线性动力学。可以通过该数学模型分析蠕虫传播的整个动力学过程,可以借助Ro的阈值确定蠕虫在WSN中的传播壮举。该模型通过使用MATLAB进行广泛的结果验证。应用/改进:提出的模型可用于减少电池开销,延长无线传感器网络的使用寿命。

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