期刊文献+
共找到384篇文章
< 1 2 20 >
每页显示 20 50 100
Online learning method for predicting air environmental information used in agricultural robots
1
作者 Yueting Wang Minzan Li +3 位作者 Ronghua Ji Minjuan Wang Yao Zhang Lihua Zheng 《International Journal of Agricultural and Biological Engineering》 SCIE 2024年第5期206-212,共7页
Air environmental information plays an important role during plant growth and reproduction, prompt and accurate prediction of atmospheric environmental data is helpful for agricultural robots to make a timely decision... Air environmental information plays an important role during plant growth and reproduction, prompt and accurate prediction of atmospheric environmental data is helpful for agricultural robots to make a timely decision. For efficiency, an online learning method for predicting air environmental information was presented in this work. This method combines the advantages of convolutional neural network (CNN) and experience replay technique: CNN is used to extract features from raw data and predict atmospheric environmental information, experience replay technique can store environmental data over some time and update the hyperparameters of CNN. To validate the effects of this method, this online method was compared with three different predictive methods (including random forest, multi-layer perceptron, and support vector regression) using a public dataset (Jena). According to results, a suitable sample sequence size (e.g., 16) has a smaller number of training sessions and stable results, a larger replay memory size (e.g., 200) can provide enough samples to capture useful features, and 6 d of historical information is the best setting for training predictor. Compared with traditional methods, the method proposed in this study is the only method applied for various conditions. 展开更多
关键词 online learning method conventional neural network real-time prediction air environmental information
原文传递
Low-Cost Real-Time Automated Optical Inspection Using Deep Learning and Attention Map
2
作者 Yu Shih Chien-Chih Kuo Ching-Hung Lee 《Intelligent Automation & Soft Computing》 SCIE 2023年第2期2087-2099,共13页
The recent trends in Industry 4.0 and Internet of Things have encour-aged many factory managers to improve inspection processes to achieve automa-tion and high detection rates.However,the corresponding cost results of... The recent trends in Industry 4.0 and Internet of Things have encour-aged many factory managers to improve inspection processes to achieve automa-tion and high detection rates.However,the corresponding cost results of sample tests are still used for quality control.A low-cost automated optical inspection system that can be integrated with production lines to fully inspect products with-out adjustments is introduced herein.The corresponding mechanism design enables each product to maintain afixed position and orientation during inspec-tion to accelerate the inspection process.The proposed system combines image recognition and deep learning to measure the dimensions of the thread and iden-tify its defects within 20 s,which is lower than the production-line productivity per 30 s.In addition,the system is designed to be used for monitoring production lines and equipment status.The dimensional tolerance of the proposed system reaches 0.012 mm,and a 100%accuracy is achieved in terms of the defect reso-lution.In addition,an attention-based visualization approach is utilized to verify the rationale for the use of the convolutional neural network model and identify the location of thread defects. 展开更多
关键词 Automated optical inspection deep learning real-time inspection ATTENTION
下载PDF
Restoring force correction based on online discrete tangent stiffness estimation method for real-time hybrid simulation 被引量:2
3
作者 Huang Liang Guo Tong +1 位作者 Chen Cheng Chen Menghui 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2018年第4期805-820,共16页
In real-time hybrid simulation(RTHS), it is difficult if not impossible to completely erase the error in restoring force due to actuator response delay using existing displacement-based compensation methods. This pa... In real-time hybrid simulation(RTHS), it is difficult if not impossible to completely erase the error in restoring force due to actuator response delay using existing displacement-based compensation methods. This paper proposes a new force correction method based on online discrete tangent stiffness estimation(online DTSE) to provide accurate online estimation of the instantaneous stiffness of the physical substructure. Following the discrete curve parameter recognition theory, the online DTSE method estimates the instantaneous stiffness mainly through adaptively building a fuzzy segment with the latest measurements, constructing several strict bounding lines of the segment and calculating the slope of the strict bounding lines, which significantly improves the calculation efficiency and accuracy for the instantaneous stiffness estimation. The results of both computational simulation and real-time hybrid simulation show that:(1) the online DTSE method has high calculation efficiency, of which the relatively short computation time will not interrupt RTHS; and(2) the online DTSE method provides better estimation for the instantaneous stiffness, compared with other existing estimation methods. Due to the quick and accurate estimation of instantaneous stiffness, the online DTSE method therefore provides a promising technique to correct restoring forces in RTHS. 展开更多
关键词 online discrete tangent stiffness estimation restoring force correction fuzzy segment parameter updating real-time hybrid simulation
下载PDF
Direct immune-SCIR public-opinion propagation model based on real-time online users 被引量:1
4
作者 Yun-Ming Wang Tian-Yi Guo +1 位作者 Wei-Dong Li Bo Chen 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第10期131-142,共12页
Current public-opinion propagation research usually focused on closed network topologies without considering the fluctuation of the number of network users or the impact of social factors on propagation. Thus, it rema... Current public-opinion propagation research usually focused on closed network topologies without considering the fluctuation of the number of network users or the impact of social factors on propagation. Thus, it remains difficult to accurately describe the public-opinion propagation rules of social networks. In order to study the rules of public opinion spread on dynamic social networks, by analyzing the activity of social-network users and the regulatory role of relevant departments in the spread of public opinion, concepts of additional user and offline rates are introduced, and the direct immune-susceptible, contacted, infected, and refractory (DI-SCIR) public-opinion propagation model based on real-time online users is established. The interventional force of relevant departments, credibility of real information, and time of intervention are considered, and a public-opinion propagation control strategy based on direct immunity is proposed. The equilibrium point and the basic reproduction number of the model are theoretically analyzed to obtain boundary conditions for public-opinion propagation. Simulation results show that the new model can accurately reflect the propagation rules of public opinion. When the basic reproduction number is less than 1, public opinion will eventually disappear in the network. Social factors can significantly influence the time and scope of public opinion spread on social networks. By controlling social factors, relevant departments can analyze the rules of public opinion spread on social networks to suppress the propagate of negative public opinion and provide a powerful tool to ensure security and stability of society. 展开更多
关键词 public opinion propagation model direct immunization real-time online users basic reproduction number
下载PDF
A Non-Contact Original-State Online Real-Time Monitoring Method for Complex Liquids in Industrial Processes 被引量:2
5
作者 Ning Duan Linhua Jiang +1 位作者 Fuyuan Xu Ge Zhang 《Engineering》 2018年第3期392-397,共6页
Failures are very common during the online real-time monitoring of large quantities of complex liquids in industrial processes, and can result in excessive resource consumption and pollution. In this study, we introdu... Failures are very common during the online real-time monitoring of large quantities of complex liquids in industrial processes, and can result in excessive resource consumption and pollution. In this study, we introduce a monitoring method capable of non-contact original-state online real-time monitoring for strongly coated, high-salinity, and multi-component liquids. The principle of the method is to establish the relationship among the concentration of the target substance in the liquid (C), the color space coor- dinates of the target substance at different concentrations (L*, a*, b*), and the maximum absorption wave- length (λmax); subsequently, the optimum wavelength λT of the liquid is determined by a high-precision scanning-type monitoring system that is used to detect the instantaneous concentration of the target substance in the flowing liquid. Unlike traditional monitoring methods and existing online monitoring methods, the proposed method does not require any pretreatment of the samples (i.e., filtration, dilution, oxidation/reduction, addition of chromogenic agent, constant volume, etc.), and it is capable of original- state online real-time monitoring. This method is employed at a large electrolytic manganese plant to monitor the Fe3. concentration in the colloidal process of the plant's aging liquid (where the concentra- tions of Fe3+, Mn2+, and (NH4)2SO4 are 0.5-18 mg.L 1, 35-39 g.L 1, and 90-110 g.L 1, respectively). The relative error of this monitoring method compared with an off-line laboratory monitoring is less than 2%. 展开更多
关键词 Complex liquid Original-state monitoring online real-time Non-contact identification
下载PDF
High-speed railway track components inspection framework based on YOLOv8 with high-performance model deployment
6
作者 Youzhi Tang Yu Qian 《High-Speed Railway》 2024年第1期42-50,共9页
Railway inspection poses significant challenges due to the extensive use of various components in vast railway networks,especially in the case of high-speed railways.These networks demand high maintenance but offer on... Railway inspection poses significant challenges due to the extensive use of various components in vast railway networks,especially in the case of high-speed railways.These networks demand high maintenance but offer only limited inspection windows.In response,this study focuses on developing a high-performance rail inspection system tailored for high-speed railways and railroads with constrained inspection timeframes.This system leverages the latest artificial intelligence advancements,incorporating YOLOv8 for detection.Our research introduces an efficient model inference pipeline based on a producer-consumer model,effectively utilizing parallel processing and concurrent computing to enhance performance.The deployment of this pipeline,implemented using C++,TensorRT,float16 quantization,and oneTBB,represents a significant departure from traditional sequential processing methods.The results are remarkable,showcasing a substantial increase in processing speed:from 38.93 Frames Per Second(FPS)to 281.06 FPS on a desktop system equipped with an Nvidia RTX A6000 GPU and from 19.50 FPS to 200.26 FPS on the Nvidia Jetson AGX Orin edge computing platform.This proposed framework has the potential to meet the real-time inspection requirements of high-speed railways. 展开更多
关键词 High-speed railway Track inspection Computer vision Deep learning Edge computing real-time decision making
下载PDF
An FPGA-based real-time image processing system
7
作者 ZONG Dexiang HE Yonghui 《Baosteel Technical Research》 CAS 2013年第4期8-10,共3页
This paper analyzes the current difficulties encountered in on-line inspection systems of strip surface quality, specifically relating to problems with real-time processing of huge amounts of data. To address this nee... This paper analyzes the current difficulties encountered in on-line inspection systems of strip surface quality, specifically relating to problems with real-time processing of huge amounts of data. To address this need, this paper describes an FPGA-based high-speed image processing module with both hardware and software aspects. Improving these two aspects together will help the system achieve real-time processing of massive image data, and simplifies the architecture of the strip surface quality on-line inspection system. 展开更多
关键词 real-time image processing FPGA strip surface quality on-line inspection system
下载PDF
“新农科”背景下《茶叶审评与检验》教学改革与实践
8
作者 李适 林勇 +2 位作者 李银花 周跃斌 黄建安 《中国茶叶》 2024年第11期75-79,共5页
《茶叶审评与检验》作为涉茶院校专业核心课程,一直以来在茶学本科教学中占据重要地位。文章结合《茶叶审评与检验》课程教学工作实践,对课程教学内容、教学方法、考核方式等方面做出的创新和改革进行梳理,旨在为“新农科”背景下如何... 《茶叶审评与检验》作为涉茶院校专业核心课程,一直以来在茶学本科教学中占据重要地位。文章结合《茶叶审评与检验》课程教学工作实践,对课程教学内容、教学方法、考核方式等方面做出的创新和改革进行梳理,旨在为“新农科”背景下如何培养满足茶叶产业发展需求的高质量茶学专业人才提供参考。 展开更多
关键词 茶叶审评与检验 教学改革 线上线下教学
下载PDF
智慧系统在液体散货码头装卸工艺中的应用
9
作者 李艺颖 王媞 《水运工程》 2024年第8期245-249,共5页
结合智慧港口应用热点和当前行业发展现状,以某液体散货码头为例,针对码头装卸工艺中智慧系统的应用,从智能装卸臂、在线腐蚀监测、在线自动取样、管道无人巡检等系统进行多角度的分析,提出可在当前液体散货码头装卸工艺中落实的智慧系... 结合智慧港口应用热点和当前行业发展现状,以某液体散货码头为例,针对码头装卸工艺中智慧系统的应用,从智能装卸臂、在线腐蚀监测、在线自动取样、管道无人巡检等系统进行多角度的分析,提出可在当前液体散货码头装卸工艺中落实的智慧系统模块的应用方案。该方案可减少现场工人的工作量,通过数据赋能提升码头运营、管理等作业效率,提高港口管理的信息化、精准化,并可为类似工程提供参考。 展开更多
关键词 智慧化 智能装卸臂 在线腐蚀监测系统 在线自动取样系统 管道无人巡检系统
下载PDF
新版《化妆品抽样检验管理办法》简介及亮点和实施建议
10
作者 余燕 何德金 +1 位作者 利惠桃 林瑶琪 《品牌与标准化》 2024年第5期201-203,共3页
新版《化妆品抽样检验管理办法》明确了化妆品抽样检验的计划制定、抽样、检验和结果报送、异议和复检、核查处置、信息公开等全环节的具体要求,其一系列亮点进一步提升了化妆品质量安全治理水平,对打击化妆品非法添加禁用原料、未经许... 新版《化妆品抽样检验管理办法》明确了化妆品抽样检验的计划制定、抽样、检验和结果报送、异议和复检、核查处置、信息公开等全环节的具体要求,其一系列亮点进一步提升了化妆品质量安全治理水平,对打击化妆品非法添加禁用原料、未经许可生产化妆品、生产经营未经注册特殊化妆品等严重违法行为具有重要意义。笔者结合广东省化妆品抽检工作的实践经验,浅析办法中的若干亮点,为提升我国化妆品抽检工作和化妆品质量安全治理水平提供参考。 展开更多
关键词 化妆品 抽样检验 管理办法 网络抽检
下载PDF
基于智能预警技术的输电线路在线巡视方法 被引量:1
11
作者 于长任 杨新宇 +2 位作者 陈东 季宁 刘明辉 《信息技术》 2024年第1期163-169,共7页
针对常规技术对输电线路在线巡视效率低下、误差率高的问题,提出了基于智能预警技术的输电线路在线巡视方法,设计一套基于5G通信和无线数据通信技术的输电线路在线智能预警系统,通过ARM+DSP双核处理器实现输电线路故障识别。采用无人机... 针对常规技术对输电线路在线巡视效率低下、误差率高的问题,提出了基于智能预警技术的输电线路在线巡视方法,设计一套基于5G通信和无线数据通信技术的输电线路在线智能预警系统,通过ARM+DSP双核处理器实现输电线路故障识别。采用无人机技术实现高空输电线路巡检,通过改进型蚁群算法模型实现输电线路故障检测,并设计了故障检测定位技术,利用融入行波定位技术的蚁群算法模型提高了输电线路在线巡视能力。实验表明,方法定位精确、误检率低,具有一定的实际应用价值。 展开更多
关键词 输电线路 在线巡视 智能预警 蚁群算法模型 行波定位
下载PDF
苯酚管道数字射线在线检测试验研究
12
作者 郝刚 段志祥 +2 位作者 韩红伟 胡杭健 代淮北 《化工装备技术》 CAS 2024年第1期5-10,共6页
针对化工装置的苯酚管道在线检测的需求,通过制作含埋藏缺陷的不同管径的试样,选择合适的透照工艺参数,在有无介质的两种工况下,分别开展数字射线检测试验,研究缺陷的检出情况。通过对比研究检测结果发现后,管径DN 250 mm及以下含介质管... 针对化工装置的苯酚管道在线检测的需求,通过制作含埋藏缺陷的不同管径的试样,选择合适的透照工艺参数,在有无介质的两种工况下,分别开展数字射线检测试验,研究缺陷的检出情况。通过对比研究检测结果发现后,管径DN 250 mm及以下含介质管道,气孔、未焊透等体积型可以有效检出,裂纹等面积型缺陷一定条件下可以检出,说明苯酚管道数字射线在线检测具有可行性。 展开更多
关键词 苯酚管道 在线检测 数字射线检测 缺陷 试验
下载PDF
城轨交通接触网安全在线监测系统 被引量:1
13
作者 于秋波 倪国政 王志锐 《中国铁路》 北大核心 2024年第3期50-56,共7页
接触网是城轨交通供电系统的重要组成部分,为降低接触网故障对安全运营的影响,提出城轨交通接触网安全在线监测系统。通过计算机视觉、深度学习技术并研发相关硬件,对接触网设备导高值、拉出值、磨耗、悬挂部件、弓网燃弧及温度等状态... 接触网是城轨交通供电系统的重要组成部分,为降低接触网故障对安全运营的影响,提出城轨交通接触网安全在线监测系统。通过计算机视觉、深度学习技术并研发相关硬件,对接触网设备导高值、拉出值、磨耗、悬挂部件、弓网燃弧及温度等状态实现在线自动检测,为检修运维提供数字化、可视化、智能化的技术手段,全面实现设备智能化巡视和设备状态感知。重点阐述监测系统总体架构、功能、关键技术,以及在天津地铁6号线的实际应用。应用效果表明:系统对缺陷检测精度高、对缺陷位置定位误差小,提升了接触网故障处理效率和应急响应速度,实现了接触网巡视、动态检测、静态检测、磨耗检测作业的少人化和无纸化,并逐渐实现接触网维护工作由计划修向状态修过渡。 展开更多
关键词 轨道交通 接触网 在线监测 智慧运维 缺陷检测 智能分析
下载PDF
基于OBE-CDIO理念的水质理化检验教学体系设计与实践
14
作者 周励 任甫 +1 位作者 杨宇 范荣华 《化工管理》 2024年第13期17-20,共4页
水质理化检验是卫生检验与检疫专业的重要核心课程,以往传统教学模式存在需要改进的问题。因此,通过不断实际探索,文章基于OBE-CDIO理念,以培养基本理论知识扎实、创新实践能力强、综合素质高的卫生检验与检疫人才为目标,设计线上线下... 水质理化检验是卫生检验与检疫专业的重要核心课程,以往传统教学模式存在需要改进的问题。因此,通过不断实际探索,文章基于OBE-CDIO理念,以培养基本理论知识扎实、创新实践能力强、综合素质高的卫生检验与检疫人才为目标,设计线上线下混合式教学体系,在落实立德树人根本任务的同时,完善教学内容,强调以学生为中心,创新多元化考核评估方式以提升学生自主学习兴趣。实践结果表明,学生对基于OBE-CDIO理念的线上线下混合式教学模式满意度高,育人效果良好。 展开更多
关键词 水质理化检验 OBE-CDIO 卫生检验与检疫 混合式教学
下载PDF
《中华人民共和国行政许可法》视域下档案行政许可程序的完善
15
作者 梅帅 《档案管理》 北大核心 2024年第2期63-67,71,共6页
作为档案行政许可程序的立法依据之一,《中华人民共和国行政许可法》对档案行政许可程序的完善具有重要的指引意义。我国档案行政许可程序主要存在于《档案行政许可程序规定》中,存在立法规定亟待更新、立法理念较为滞后、审查方式有待... 作为档案行政许可程序的立法依据之一,《中华人民共和国行政许可法》对档案行政许可程序的完善具有重要的指引意义。我国档案行政许可程序主要存在于《档案行政许可程序规定》中,存在立法规定亟待更新、立法理念较为滞后、审查方式有待健全、制度建设存在缺位等方面的问题。有鉴于此,应结合档案行政许可的特点,重视《中华人民共和国行政许可法》对档案行政许可程序完善的指引功能。具体而言,建议更新完善《档案行政许可程序规定》,落实简政放权、相对人权益保障、档案信息化等理念,健全档案行政许可线上审查、告知承诺和默示许可等方式,完善档案行政许可费用制度、责任制度和监督检查制度,助力档案行政许可程序法治再上新台阶。 展开更多
关键词 行政许可 档案 行政许可程序 权益保障 电子化 线上审查 监督检查
下载PDF
面向防洪工程隐患调查的成果上报与质检审核平台设计与实现
16
作者 林斌 陈亮雄 杨静学 《广东水利水电》 2024年第2期92-96,107,共6页
防洪工程隐患调查是水旱灾害风险普查项目中的一项重点任务,由省市县三级水利部门联合填报与审核,具有工作范围广、涉及相关技术人员众多、成果质量控制难度较大等特点。为了提高普查数据采集的效率,保障成果质量的可靠性,该文采用微服... 防洪工程隐患调查是水旱灾害风险普查项目中的一项重点任务,由省市县三级水利部门联合填报与审核,具有工作范围广、涉及相关技术人员众多、成果质量控制难度较大等特点。为了提高普查数据采集的效率,保障成果质量的可靠性,该文采用微服务的软件开发方法,对整体业务流程和质检审核分析流程进行了设计,实现了“查、填、审、抽、督”一体化的成果上报与质检审核平台和基于规则驱动的在线质检审核服务,大幅度提升了广东省普查工作的效率和成果质量。 展开更多
关键词 防洪工程隐患调查 在线质检审核 审核规则 数据质量
下载PDF
基于多策略融合的自动摘酒系统的设计 被引量:1
17
作者 任东平 刘勇 +1 位作者 孙云权 周海龙 《自动化应用》 2024年第1期71-75,共5页
针对目前我国摘酒工艺自动化程度低、稳定性差、方式单一、无统一量化标准等问题,设计了一种多策略融合的自动摘酒系统。该系统以PLC为核心控制器,触摸屏为人机交互单元,通过在线检测和处理酒精浓度、流速、温度等参数,结合糟源信息自... 针对目前我国摘酒工艺自动化程度低、稳定性差、方式单一、无统一量化标准等问题,设计了一种多策略融合的自动摘酒系统。该系统以PLC为核心控制器,触摸屏为人机交互单元,通过在线检测和处理酒精浓度、流速、温度等参数,结合糟源信息自动选择相应的摘酒策略,控制伺服电机驱动分酒管,将酒液分配至不同接酒口,实现全自动摘酒过程。通过旁路采样检测以及酒精度异常值剔除,酒精度实际检测精度达到±0.5%(体积分数),累积流量的检测精度达到±1 L。基于此设计加工样机,在四川泸州某浓香型酒厂进行了测试,结果表明,自动摘酒与人工摘酒在不同糟型及不同分段依据下的相对误差均小于2%(体积分数),说明该系统稳定性强,能适应实际酿造过程。 展开更多
关键词 多策略融合 自动摘酒 在线检测 摘酒策略
下载PDF
煤矿井下带式输送机智能巡检机器人系统的应用与研究 被引量:1
18
作者 赵国江 《自动化应用》 2024年第3期4-6,共3页
为解决煤矿井下带式输送机传统人工巡检存在劳动强度大、巡检效率低、结果不准确以及潜在故障无法查明等问题,设计了一种轻量化轨道式智能巡检机器人系统。通过多种传感器实时采集煤矿井下带式输送机运行参数,并由智能软件分析系统分析... 为解决煤矿井下带式输送机传统人工巡检存在劳动强度大、巡检效率低、结果不准确以及潜在故障无法查明等问题,设计了一种轻量化轨道式智能巡检机器人系统。通过多种传感器实时采集煤矿井下带式输送机运行参数,并由智能软件分析系统分析参数特征,可准确判断故障。根据参数的波动情况准确判断潜在事故,可有效预防事故发生,保证设备稳定运行。结果表明,带式输送机智能巡检机器人可替代4~5人完成井下的巡检任务,故障识别率达99.3%以上,识别响应时间不超过0.98 s,平均每年可节省企业成本50万元左右,取得了满意的应用效果。 展开更多
关键词 煤矿 带式输送机 智能巡检机器人 在线监测 远程运维
下载PDF
矿石品位在线检测技术发展研究
19
作者 王怀远 刘政宇 +4 位作者 曲福明 王连成 岳星彤 张兴帆 邵安林 《中国工程科学》 CSCD 北大核心 2024年第3期152-163,共12页
矿石品位是衡量矿产经济价值的核心指标,相应在线检测能力事关矿山企业经济效益、环境影响和生产智能化水平。本文论述了矿石品位在线检测技术的应用价值及分类情况,从放射性检测、光学检测、电磁检测、机器视觉检测等技术方向出发,梳... 矿石品位是衡量矿产经济价值的核心指标,相应在线检测能力事关矿山企业经济效益、环境影响和生产智能化水平。本文论述了矿石品位在线检测技术的应用价值及分类情况,从放射性检测、光学检测、电磁检测、机器视觉检测等技术方向出发,梳理了矿石品位在线检测技术研究与应用进展;辨识了相关技术发展面临的挑战,涵盖技术研究层面的精度瓶颈与干扰因素、信号解析与优化难题、模型构建与数据依赖关系,实际应用层面的辐射安全与成本效益考量、适应多样矿石特性的技术突破、恶劣环境下稳定运行与即时反馈。进一步阐述了矿石品位在线检测技术未来发展方向,包括多模态融合与智能感知技术前沿探索、智能感知与数据处理算法迭代升级、微型化/远程化/智能化设备研发、实时动态监测网络系统构建与优化等关键技术攻关突破内容,深度学习促进微观与宏观特征融合分析、量子计算与生物启发算法、智能传感器网络与物联网技术等新兴技术前瞻探索内容。建议在技术创新与设备升级、标准制定与规范建设、“产学研用”合作机制深化、人才培养与队伍建设、国际合作与资源共享等方面积极行动,以矿石品位在线检测技术提升促进矿产资源开发利用的智能化、高效化发展。 展开更多
关键词 矿石品位 在线检测 放射性检测 光学检测 电磁检测 机器视觉检测
下载PDF
浙江省在线标准地址库自动化质检研究与设计
20
作者 闻达 吴夏倩 +3 位作者 潘慧婕 周煜 沈钜龙 卢春阳 《地理空间信息》 2024年第1期117-119,123,共4页
依据浙江省标准地址库日常更新运维情况,为了满足多源数据质检要求,解决人工质检效率低、错误率高、缺乏自动化程序跟踪处理等问题,为离线和在线地址库数据设计了质检规则,归纳和分析了地址库的空间关系和属性关系,并开发了对应的质检模... 依据浙江省标准地址库日常更新运维情况,为了满足多源数据质检要求,解决人工质检效率低、错误率高、缺乏自动化程序跟踪处理等问题,为离线和在线地址库数据设计了质检规则,归纳和分析了地址库的空间关系和属性关系,并开发了对应的质检模块,形成了质检流程闭环,以满足质量评定和质检规范要求,实现标准地址库数据自动化、智能化、规范化质检,进而提高浙江省标准地址库整体质检效率,节约了人力和时间成本,大幅提高了数据质量。 展开更多
关键词 地址库 在线质检 数据质量
下载PDF
上一页 1 2 20 下一页 到第
使用帮助 返回顶部