Utilizing artificial intelligence(AI)to protect smart coastal cities has become a novel vision for scientific and industrial institutions.One of these AI technologies is using efficient and secure multi-environment Un...Utilizing artificial intelligence(AI)to protect smart coastal cities has become a novel vision for scientific and industrial institutions.One of these AI technologies is using efficient and secure multi-environment Unmanned Vehicles(UVs)for anti-submarine attacks.This study’s contribution is the early detection of a submarine assault employing hybrid environment UVs that are controlled using swarm optimization and secure the information in between UVs using a decentralized cybersecurity strategy.The Dragonfly Algorithm is used for the orientation and clustering of the UVs in the optimization approach,and the Re-fragmentation strategy is used in the Network layer of the TCP/IP protocol as a cybersecurity solution.The research’s noteworthy findings demonstrate UVs’logistical capability to promptly detect the target and address the problem while securely keeping the drone’s geographical information.The results suggest that detecting the submarine early increases the likelihood of averting a collision.The dragonfly strategy of sensing the position of the submersible and aggregating around it demonstrates the reliability of swarm intelligence in increasing access efficiency.Securing communication between Unmanned Aerial Vehicles(UAVs)improves the level of secrecy necessary for the task.The swarm navigation is based on a peer-to-peer system,which allows each UAV to access information from its peers.This,in turn,helps the UAVs to determine the best route to take and to avoid collisions with other UAVs.The dragonfly strategy also increases the speed of the mission by minimizing the time spent finding the target.展开更多
航空反潜战中,潜艇处于不利地位,如何提高潜艇对抗反潜机的作战能力,是亟待解决的问题。分析了潜艇通过拖曳综合浮标和电子支援措施Electronic Support Measure(ESM)设备对声纳浮标阵进行估计定位的单站双址交叉测向和基于方位角变化率...航空反潜战中,潜艇处于不利地位,如何提高潜艇对抗反潜机的作战能力,是亟待解决的问题。分析了潜艇通过拖曳综合浮标和电子支援措施Electronic Support Measure(ESM)设备对声纳浮标阵进行估计定位的单站双址交叉测向和基于方位角变化率的方法,以及潜艇方位角、角速率和航速对定位误差的影响。建立了潜艇对声纳浮标位置估计模型,提出了潜艇突破声纳浮标阵封锁应采用的规避策略。结果表明,潜艇可以对声纳浮标进行定位,为潜艇规避声纳浮标阵提供参考。展开更多
基金This work was funded by the research center of the Future University in Egypt,in 2023.
文摘Utilizing artificial intelligence(AI)to protect smart coastal cities has become a novel vision for scientific and industrial institutions.One of these AI technologies is using efficient and secure multi-environment Unmanned Vehicles(UVs)for anti-submarine attacks.This study’s contribution is the early detection of a submarine assault employing hybrid environment UVs that are controlled using swarm optimization and secure the information in between UVs using a decentralized cybersecurity strategy.The Dragonfly Algorithm is used for the orientation and clustering of the UVs in the optimization approach,and the Re-fragmentation strategy is used in the Network layer of the TCP/IP protocol as a cybersecurity solution.The research’s noteworthy findings demonstrate UVs’logistical capability to promptly detect the target and address the problem while securely keeping the drone’s geographical information.The results suggest that detecting the submarine early increases the likelihood of averting a collision.The dragonfly strategy of sensing the position of the submersible and aggregating around it demonstrates the reliability of swarm intelligence in increasing access efficiency.Securing communication between Unmanned Aerial Vehicles(UAVs)improves the level of secrecy necessary for the task.The swarm navigation is based on a peer-to-peer system,which allows each UAV to access information from its peers.This,in turn,helps the UAVs to determine the best route to take and to avoid collisions with other UAVs.The dragonfly strategy also increases the speed of the mission by minimizing the time spent finding the target.
文摘航空反潜战中,潜艇处于不利地位,如何提高潜艇对抗反潜机的作战能力,是亟待解决的问题。分析了潜艇通过拖曳综合浮标和电子支援措施Electronic Support Measure(ESM)设备对声纳浮标阵进行估计定位的单站双址交叉测向和基于方位角变化率的方法,以及潜艇方位角、角速率和航速对定位误差的影响。建立了潜艇对声纳浮标位置估计模型,提出了潜艇突破声纳浮标阵封锁应采用的规避策略。结果表明,潜艇可以对声纳浮标进行定位,为潜艇规避声纳浮标阵提供参考。