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    • 4. 发明申请
    • Simulation system for a construction crane and the simulation method thereof
    • 一种建筑起重机仿真系统及其仿真方法
    • US20090182537A1
    • 2009-07-16
    • US12314274
    • 2008-12-08
    • Shih-Chung KangHung-Lin ChiWei-Hang Hung
    • Shih-Chung KangHung-Lin ChiWei-Hang Hung
    • G06F17/10G06G7/48
    • G09B9/05B66C13/48B66C23/00
    • A simulation method and a simulation system for a construction crane are disclosed. The simulation system includes an input device, a processing device, and a display device. The input device is used for inputting an instruction. Furthermore, the processing device includes a computation unit, a collision detection unit, a storage unit, and a graphic unit. The computation unit is used for computing the position and the direction of each part of the construction crane and the suspension parts. The collision detection model is used for detecting whether each part of the construction crane and the suspension parts will be in collision. Besides, the data obtained from the simulation method performed in the simulation system is saved in the storage unit. The graphic unit displays the 3D dynamics images of the construction crane and the suspension parts on the display device, corresponding to the data obtained from the computation unit.
    • 公开了一种建筑起重机的仿真方法和仿真系统。 模拟系统包括输入装置,处理装置和显示装置。 输入装置用于输入指令。 此外,处理装置包括计算单元,碰撞检测单元,存储单元和图形单元。 计算单元用于计算建筑起重机和悬架部件各部分的位置和方向。 碰撞检测模型用于检测建筑起重机的每一部分和悬架部分是否碰撞。 此外,从模拟系统中执行的模拟方法获得的数据被存储在存储单元中。 图形单元对应于从计算单元获得的数据,显示建筑起重机和悬挂部件的3D动态图像。
    • 5. 发明授权
    • Simulation system for a construction crane and the simulation method thereof
    • 一种建筑起重机仿真系统及其仿真方法
    • US08014982B2
    • 2011-09-06
    • US12314274
    • 2008-12-08
    • Shih-Chung KangHung-Lin ChiWei-Hang Hung
    • Shih-Chung KangHung-Lin ChiWei-Hang Hung
    • G06F7/70G06F17/50G06F7/60G06G7/48B66C21/00
    • G09B9/05B66C13/48B66C23/00
    • A simulation method and a simulation system for a construction crane are disclosed. The simulation system includes an input device, a processing device, and a display device. The input device is used for inputting an instruction. Furthermore, the processing device includes a computation unit, a collision detection unit, a storage unit, and a graphic unit. The computation unit is used for computing the position and the direction of each part of the construction crane and the suspension parts. The collision detection model is used for detecting whether each part of the construction crane and the suspension parts will be in collision. Besides, the data obtained from the simulation method performed in the simulation system is saved in the storage unit. The graphic unit displays the 3D dynamics images of the construction crane and the suspension parts on the display device, corresponding to the data obtained from the computation unit.
    • 公开了一种建筑起重机的仿真方法和仿真系统。 模拟系统包括输入装置,处理装置和显示装置。 输入装置用于输入指令。 此外,处理装置包括计算单元,碰撞检测单元,存储单元和图形单元。 计算单元用于计算建筑起重机和悬架部件各部分的位置和方向。 碰撞检测模型用于检测建筑起重机的每一部分和悬架部分是否碰撞。 此外,从模拟系统中执行的模拟方法获得的数据被存储在存储单元中。 图形单元对应于从计算单元获得的数据,显示建筑起重机和悬挂部件的3D动态图像。
    • 6. 发明授权
    • Light controller
    • 灯控制器
    • US09351380B2
    • 2016-05-24
    • US13483304
    • 2012-05-30
    • Shih-Chung KangI Ling ChenYi Wen Chen
    • Shih-Chung KangI Ling ChenYi Wen Chen
    • H05B37/02
    • H05B37/0272
    • A light controller is provided in the present invention. The light controller for adjusting a plurality of lights in a space, including a body having a slot, a touch interface and a control module; a spatial information map replaceably contained in the slot and schematically showing an information in the space; a touch interface configured on the body corresponding to the spatial information map and receiving a touch input; and a control module electrically connected with the touch interface and the plurality of lights and setting a controlled relationship on the touch interface with respect to each of the plurality of lights in accordance with the information shown by the spatial information map.
    • 本发明提供一种光控制器。 光控制器,用于调节空间中的多个光,包括具有槽的主体,触摸接口和控制模块; 可替换地包含在所述时隙中并示意性地示出所述空间中的信息的空间信息图; 配置在身体上的对应于空间信息图并接收触摸输入的触摸界面; 以及控制模块,其与所述触摸界面和所述多个电路电连接,并且根据所述空间信息图所示的信息,针对所述多个灯中的每一个设置所述触摸界面上的受控关系。
    • 8. 发明授权
    • Patrol device and patrol path planning method for the same
    • 巡逻装置和巡逻路径规划方法相同
    • US08396620B2
    • 2013-03-12
    • US12507747
    • 2009-07-22
    • Wei-Han HungShih-Chung KangPeter Liu
    • Wei-Han HungShih-Chung KangPeter Liu
    • G01C22/00G05D1/00
    • G05D1/0214G05D1/0274G05D2201/0209
    • The present invention relates to a patrol device and a patrol path planning method. The patrol device includes an operating unit configured to establish a plurality of patrol paths, each of which has an Average Patrol Omission (APO) value and an Average Patrol Quality (APQ) value, and to determine an optimum patrol path from the plurality of patrol paths according to the APO value and the APQ value; and a moving unit configured to move along the optimum patrol path. The method includes providing a plurality of patrol paths, each of which has an Average Patrol Omission (APO) value and an Average Patrol Quality (APQ) value; and evaluating the plurality of patrol paths according to the respective APO values and the respective APQ values so as to select an optimum patrol path therefrom.
    • 本发明涉及一种巡逻装置和巡检路径规划方法。 巡检装置包括:操作单元,其被配置为建立多个巡视路径,每个巡视路径具有平均巡逻省略值(APO)值和平均巡逻质量(APQ)值,并且从多个巡逻程序确定最佳巡逻路径 根据APO值和APQ值的路径; 以及被配置为沿着最佳巡视路径移动的移动单元。 该方法包括提供多个巡视路径,每个巡视路径具有平均巡逻省略(APO)值和平均巡逻质量(APQ)值; 以及根据各个APO值和各个APQ值来评估多个巡视路径,以便从中选择最佳巡视路径。
    • 10. 发明申请
    • Patrol Device And Patrol Path Planning Method For The Same
    • 巡逻装置与巡逻路径规划方法相同
    • US20100138096A1
    • 2010-06-03
    • US12507747
    • 2009-07-22
    • Wei-Han HungShih-Chung KangPeter Liu
    • Wei-Han HungShih-Chung KangPeter Liu
    • G05D1/00
    • G05D1/0214G05D1/0274G05D2201/0209
    • The present invention relates to a patrol device and a patrol path planning method. The patrol device includes an operating unit configured to establish a plurality of patrol paths, each of which has an Average Patrol Omission (APO) value and an Average Patrol Quality (APQ) value, and to determine an optimum patrol path from the plurality of patrol paths according to the APO value and the APQ value; and a moving unit configured to move along the optimum patrol path. The method includes providing a plurality of patrol paths, each of which has an Average Patrol Omission (APO) value and an Average Patrol Quality (APQ) value; and evaluating the plurality of patrol paths according to the respective APO values and the respective APQ values so as to select an optimum patrol path therefrom.
    • 本发明涉及一种巡逻装置和巡检路径规划方法。 巡检装置包括:操作单元,其被配置为建立多个巡视路径,每个巡视路径具有平均巡逻省略值(APO)值和平均巡逻质量(APQ)值,并且从多个巡逻程序确定最佳巡逻路径 根据APO值和APQ值的路径; 以及被配置为沿着最佳巡视路径移动的移动单元。 该方法包括提供多个巡视路径,每个巡视路径具有平均巡逻省略(APO)值和平均巡逻质量(APQ)值; 以及根据各个APO值和各个APQ值来评估多个巡视路径,以便从中选择最佳巡视路径。