近年来,随着多无人机系统在抗灾救险、环境勘测、军事作战等场景中的广泛应用,高效、灵活的无人机群组网研究已成为当下热点之一。现阶段无人机自组网存在拓扑变化频繁,网络开销增大和能量有限等特点,对OLSR(Optimized Link State Rout⁃...近年来,随着多无人机系统在抗灾救险、环境勘测、军事作战等场景中的广泛应用,高效、灵活的无人机群组网研究已成为当下热点之一。现阶段无人机自组网存在拓扑变化频繁,网络开销增大和能量有限等特点,对OLSR(Optimized Link State Rout⁃ing)路由协议进行了分析研究。分析发现现阶段OLSR协议存在HELLO和TC消息包冗余或不能及时更新路由信息等问题,为此提出了一种基于SL-MPR选择算法的M-OLSR路由协议。首先综合考虑节点移动性、链路的变化情况等因素反映网络的拓扑变化情况,通过拓扑的变化控制节点HELLO消息的广播周期;其次提出一种新的MPR选择算法,考虑链路稳定问题和节点剩余能量(生存时间)因素,根据MPR集的更新频繁程度控制TC消息的洪泛周期。通过NS2仿真实验表明,相比传统的OLSR协议,M-OLSR在数据传输率方面提高了1%以上,能量消耗和网络开销均降低了10%左右。展开更多
In the past few decades,Energy Efficiency(EE)has been a significant challenge in Wireless Sensor Networks(WSNs).WSN requires reduced transmission delay and higher throughput with high quality services,it further pays ...In the past few decades,Energy Efficiency(EE)has been a significant challenge in Wireless Sensor Networks(WSNs).WSN requires reduced transmission delay and higher throughput with high quality services,it further pays much attention in increased energy consumption to improve the network lifetime.To collect and transmit data Clustering based routing algorithm is considered as an effective way.Cluster Head(CH)acts as an essential role in network connectivity and perform data transmission and data aggregation,where the energy consumption is superior to non-CH nodes.Conventional clustering approaches attempts to cluster nodes of same size.Moreover,owing to randomly distributed node distribution,a cluster with equal nodes is not an obvious possibility to reduce the energy consumption.To resolve this issue,this paper provides a novel,Balanced-Imbalanced Cluster Algorithm(B-IBCA)with a Stabilized Boltzmann Approach(SBA)that attempts to balance the energy dissipation across uneven clusters in WSNs.B-IBCA utilizes stabilizing logic to maintain the consistency of energy consumption among sensor nodes’.So as to handle the changing topological characteristics of sensor nodes,this stability based Boltzmann estimation algorithm allocates proper radius amongst the sensor nodes.The simulation shows that the proposed B-IBCA outperforms effectually over other approaches in terms of energy efficiency,lifetime,network stability,average residual energy and so on.展开更多
The research work presents,constrained network coding technique to ensure the successful data transmission based composite channel cmos technology using dielectric properties.The charge fragmentation and charge splitt...The research work presents,constrained network coding technique to ensure the successful data transmission based composite channel cmos technology using dielectric properties.The charge fragmentation and charge splitting are two components of the filtered switch domino(FSD)technique.Further behavior of selected switching is achieved using generator called conditional pulse generator which is employed in Multi Dynamic Node Domino(MDND)technique.Both FSD and MDND technique need wide area compared to existing single nodekeeper domino technique.The aim of this research is to minimize dissipation of power and to achieve less consumption of power.The proposed research,works by introducing the method namely Interference and throughput aware Optimized Multicast Routing Protocol(IT-OMRP).The main goal of this proposed research method is to introduce the system which can forward the data packets towards the destination securely and successfully.To achieve the bandwidth and throughput in optimized data transmission,proposed multicast tree is selected by Particle Swarm Optimization which will select the most optimal host node as the branches of multi cast tree.Here node selection is done by considering the objectives residual energy,residual bandwidth and throughput.After node selection multi cast routing is done with the concern of interference to ensure the reliable and successful data transmission.In case of transmission range size is higher than the coverage sense range,successful routing is ensured by selecting secondary host forwarders as a backup which will act as intermediate relay forwarders.The NS2 simulator is used to evaluate research outcome from which it is proved that the proposed technique tends to have increased packet delivery ratio than the existing work.展开更多
文摘近年来,随着多无人机系统在抗灾救险、环境勘测、军事作战等场景中的广泛应用,高效、灵活的无人机群组网研究已成为当下热点之一。现阶段无人机自组网存在拓扑变化频繁,网络开销增大和能量有限等特点,对OLSR(Optimized Link State Rout⁃ing)路由协议进行了分析研究。分析发现现阶段OLSR协议存在HELLO和TC消息包冗余或不能及时更新路由信息等问题,为此提出了一种基于SL-MPR选择算法的M-OLSR路由协议。首先综合考虑节点移动性、链路的变化情况等因素反映网络的拓扑变化情况,通过拓扑的变化控制节点HELLO消息的广播周期;其次提出一种新的MPR选择算法,考虑链路稳定问题和节点剩余能量(生存时间)因素,根据MPR集的更新频繁程度控制TC消息的洪泛周期。通过NS2仿真实验表明,相比传统的OLSR协议,M-OLSR在数据传输率方面提高了1%以上,能量消耗和网络开销均降低了10%左右。
文摘In the past few decades,Energy Efficiency(EE)has been a significant challenge in Wireless Sensor Networks(WSNs).WSN requires reduced transmission delay and higher throughput with high quality services,it further pays much attention in increased energy consumption to improve the network lifetime.To collect and transmit data Clustering based routing algorithm is considered as an effective way.Cluster Head(CH)acts as an essential role in network connectivity and perform data transmission and data aggregation,where the energy consumption is superior to non-CH nodes.Conventional clustering approaches attempts to cluster nodes of same size.Moreover,owing to randomly distributed node distribution,a cluster with equal nodes is not an obvious possibility to reduce the energy consumption.To resolve this issue,this paper provides a novel,Balanced-Imbalanced Cluster Algorithm(B-IBCA)with a Stabilized Boltzmann Approach(SBA)that attempts to balance the energy dissipation across uneven clusters in WSNs.B-IBCA utilizes stabilizing logic to maintain the consistency of energy consumption among sensor nodes’.So as to handle the changing topological characteristics of sensor nodes,this stability based Boltzmann estimation algorithm allocates proper radius amongst the sensor nodes.The simulation shows that the proposed B-IBCA outperforms effectually over other approaches in terms of energy efficiency,lifetime,network stability,average residual energy and so on.
文摘The research work presents,constrained network coding technique to ensure the successful data transmission based composite channel cmos technology using dielectric properties.The charge fragmentation and charge splitting are two components of the filtered switch domino(FSD)technique.Further behavior of selected switching is achieved using generator called conditional pulse generator which is employed in Multi Dynamic Node Domino(MDND)technique.Both FSD and MDND technique need wide area compared to existing single nodekeeper domino technique.The aim of this research is to minimize dissipation of power and to achieve less consumption of power.The proposed research,works by introducing the method namely Interference and throughput aware Optimized Multicast Routing Protocol(IT-OMRP).The main goal of this proposed research method is to introduce the system which can forward the data packets towards the destination securely and successfully.To achieve the bandwidth and throughput in optimized data transmission,proposed multicast tree is selected by Particle Swarm Optimization which will select the most optimal host node as the branches of multi cast tree.Here node selection is done by considering the objectives residual energy,residual bandwidth and throughput.After node selection multi cast routing is done with the concern of interference to ensure the reliable and successful data transmission.In case of transmission range size is higher than the coverage sense range,successful routing is ensured by selecting secondary host forwarders as a backup which will act as intermediate relay forwarders.The NS2 simulator is used to evaluate research outcome from which it is proved that the proposed technique tends to have increased packet delivery ratio than the existing work.