An energy efficient routing establishment (EERE) mechanism for MANET-IoT security

V. Anjana Devi , Vithya Ganesan , V. Sri Anima Padmini , Shriman k.arun
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Abstract

Providing security to the Mobile Ad-hoc Network (MANET) integrated with the Internet of Things (IoT) is one of the most challenging and demanding tasks in improving the security of the network by detecting trust nodes in the path. High energy consumption, loss of data packets, and routing overheads are unsolvable issues in the existing security-aware routing methodologies. Energy Efficient Routing Establishment (EERE) scheme invokes hybrid whale positions integrated with the Flower Pollination Algorithm (WP-FPA) for optimal path allocation by calculating the energy level of nodes in the network. In addition, to ensure the security of the network, a trust evaluation factor has been performed to estimate the trust value for each participating node on the network by Aggregated Packet Control Trust Protocol (APCTP) . Security is improved by mitigating nodes in the path that are identified and it is eliminated by the trust evaluation factor and the node's neighboring information. The performance of the proposed security-based routing mechanisms is compared with metrics such as average residual energy, packet delivery ratio (PDR), packet delay, and network lifetime. The proposed EERE-APCTP mechanisms improve residual energy to 80% in stipulated node mobility. The packet delivery ratio is improved to 99% and network lifetime is increased to 265 milliseconds. Routing overhead is reduced to 0.6%.

Index Terms— Whale Positions Integrated Flower Pollination Algorithm (WP-FPA), Mobile Ad-hoc security, Energy Efficient Routing Establishment (EERE), Trust Evaluation, MANET security, pollination optimization, Neighbor node feedback behavior.

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面向城域网-物联网安全的节能路由建立(EERE)机制
为与物联网(IoT)集成的移动无线局域网(MANET)提供安全性,是通过检测路径中的信任节点来提高网络安全性的最具挑战性和最艰巨的任务之一。高能耗、数据包丢失和路由开销是现有安全感知路由方法无法解决的问题。高能效路由建立(EERE)方案通过计算网络中节点的能量水平,采用混合鲸鱼位置与花授粉算法(WP-FPA)相结合的方法来优化路径分配。此外,为确保网络安全,还执行了信任评估因子,通过聚合数据包控制信任协议(APCTP)估算网络中每个参与节点的信任值。通过减少路径中被识别的节点来提高安全性,并通过信任评估因子和节点的邻居信息来消除安全隐患。通过平均剩余能量、数据包传送率(PDR)、数据包延迟和网络寿命等指标,比较了所提出的基于安全的路由机制的性能。在规定的节点移动性条件下,所提出的 EERE-APCTP 机制可将剩余能量提高到 80%。数据包交付率提高到 99%,网络寿命延长到 265 毫秒。索引术语--鲸鱼位置综合授粉算法(WP-FPA)、移动Ad-hoc安全、高能效路由建立(EERE)、信任评估、城域网安全、授粉优化、邻居节点反馈行为。
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