期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
DeepQ Based Automated Irrigation Systems Using Deep Belief WSN
1
作者 E.Gokulakannan 《Intelligent Automation & Soft Computing》 SCIE 2023年第3期3415-3427,共13页
Deep learning is the subset of artificial intelligence and it is used for effective decision making.Wireless Sensor based automated irrigation system is proposed to monitor and cultivate crop.Our system consists of Dis... Deep learning is the subset of artificial intelligence and it is used for effective decision making.Wireless Sensor based automated irrigation system is proposed to monitor and cultivate crop.Our system consists of Distributed wire-less sensor environment to handle the moisture of the soil and temperature levels.It is automated process and useful for minimizing the usage of resources such as water level,quality of the soil,fertilizer values and controlling the whole system.The mobile app based smart control system is designed using deep belief network.This system has multiple sensors placed in agriculturalfield and collect the data.The collected transmitted to cloud server and deep learning process is applied for making decisions.DeepQ residue analysis method is proposed for analyzing auto-mated and sensor captured data.Here,we used 512×512×3 layers deep belief network and 10000 trained data and 2500 test data are taken for evaluations.It is automated process once data is collected deep belief network is generated.The performance is compared with existing results and our process method has 94%of accuracy factor.Also,our system has low cost and energy consumption also suitable for all kind of agriculturalfields. 展开更多
关键词 Wireless sensor network deepq residue automation deep belief network tensorflow
在线阅读 下载PDF
智慧校园通信网络安全通信资源智能分配方法 被引量:5
2
作者 杨志杰 丁国平 潘敏 《长江信息通信》 2024年第9期181-183,共3页
当前校园通信网络资源分配主要依赖目标分配,效率不高,使资源分配易拥塞,为此文章提出智慧校园通信网络安全通信资源智能分配方法。根据当前测定,在进行资源流量预测,采用DQN结构,提升分配效率,设计DQN资源智能分配矩阵的基础上,构建用... 当前校园通信网络资源分配主要依赖目标分配,效率不高,使资源分配易拥塞,为此文章提出智慧校园通信网络安全通信资源智能分配方法。根据当前测定,在进行资源流量预测,采用DQN结构,提升分配效率,设计DQN资源智能分配矩阵的基础上,构建用户优先级网络资源智能分配模型,采用自适应交叉核验的方式来实现资源分配处理。测试结果表明:此次所设计的校园通信网络安全通信资源智能分配方式更加高效、可控,整体的分配环节得到了进一步简化,具有较强的实践性。 展开更多
关键词 智慧校园 资源智能分配 分配方法 深度Q网络
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部