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GIS中的通用水文模型数据结构研究 被引量:5
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作者 卢家波 向小华 +1 位作者 李超 王志伟 《水资源保护》 CAS CSCD 北大核心 2021年第5期89-93,共5页
针对水文模型与GIS平台数据结构不一致这一数字流域集成的最大障碍,从模型角度研究地理数据与GIS融合的标准方法,并设计了标准化地理数据接口和可复用地理数据组件。自定义GIS兼容的地理数据结构,解决了GIS与水文模型高度集成的时空特... 针对水文模型与GIS平台数据结构不一致这一数字流域集成的最大障碍,从模型角度研究地理数据与GIS融合的标准方法,并设计了标准化地理数据接口和可复用地理数据组件。自定义GIS兼容的地理数据结构,解决了GIS与水文模型高度集成的时空特征和拓扑结构不匹配问题。以软件工程中常用的组件接口技术为核心方法,提炼水文模型所采用的地理数据共同点。提出ArcGIS平台能够接受的模型通用地理数据标准并编列相应的标准接口和组件,推动GIS与水文模型紧密耦合的研究与应用。 展开更多
关键词 水文模型 GIS 模型耦合方法 通用地理数据标准 数字流域平台
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Contouring error modeling and simulation of a four-axis motion control system
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作者 张代林 张旭 +3 位作者 谢经明 袁楚明 陈幼平 汤漾平 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期141-149,共9页
A layered modeling method is proposed to resolve the problems resulting from the complexity of the error model of a multi-axis motion control system. In this model, a low level layer can be used as a virtual axis by t... A layered modeling method is proposed to resolve the problems resulting from the complexity of the error model of a multi-axis motion control system. In this model, a low level layer can be used as a virtual axis by the high level layer. The first advantage of this model is that the complex error model of a four-axis motion control system can be divided into several simple layers and each layer has different coupling strength to match the real control system. The second advantage lies in the fact that the controller in each layer can be designed specifically for a certain purpose. In this research, a three-layered cross coupling scheme in a four-axis motion control system is proposed to compensate the contouring error of the motion control system. Simulation results show that the maximum contouring error is reduced from 0.208 mm to 0.022 mm and the integration of absolute error is reduced from 0.108 mm to 0.015 mm, which are respectively better than 0.027 mm and 0.037 mm by the traditional method. And in the bottom layer the proposed method also has remarkable ability to achieve high contouring accuracy. 展开更多
关键词 layered modeling ship model machining motion control cross coupling control
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