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    • 2. 发明申请
    • JOB MANAGEMENT SYSTEM FOR A FLEET OF AUTONOMOUS MOBILE ROBOTS
    • 自动移动机器人作业管理系统
    • US20140365258A1
    • 2014-12-11
    • US14370383
    • 2013-02-08
    • Adept Technology, Inc.
    • Matthew VestalMatthew LaFaryPeter Stopera
    • G06Q10/06
    • G06Q10/063114G05D1/024G05D1/0246G05D1/0255G05D1/0274G05D1/0297G05D2201/0211G05D2201/0216Y10S901/01
    • The Job Management System (JMS) of the present invention processes job requests in an automated physical environment, such as a factory, hospital, order processing facility or office building, wherein the job requests are handled by a fleet of autonomously-navigating mobile robots. The JMS includes a map defining a floor plan, a set of virtual job locations and a set of one or more virtual job operations associated with virtual job locations. The JMS automatically determines the actual locations and actual job operations for the job requests, and intelligently selects a suitable mobile robot to handle each job request based on the current status and/or the current configuration for the selected mobile robot. The JMS also sends commands to the selected mobile robot to cause the mobile robot to automatically drive the actual job location, to automatically perform the actual job operations, or both.
    • 本发明的作业管理系统(JMS)在诸如工厂,医院,订单处理设施或办公楼的自动化物理环境中处理作业请求,其中作业请求由自动导航的移动机器人的机器人来处理。 JMS包括定义平面图的映射,一组虚拟作业位置以及与虚拟作业位置相关联的一组或多个虚拟作业操作的集合。 JMS自动确定作业请求的实际位置和实际作业操作,并根据所选移动机器人的当前状态和/或当前配置,智能地选择合适的移动机器人来处理每个作业请求。 JMS还向选定的移动机器人发送命令,使移动机器人自动驱动实际的作业位置,自动执行实际的作业操作,或两者兼而有之。
    • 4. 发明申请
    • Systems and methods for simulation, analysis and design of automated assembly systems
    • 自动装配系统的仿真,分析和设计的系统和方法
    • US20020128810A1
    • 2002-09-12
    • US10020277
    • 2001-12-18
    • ADEPT TECHNOLOGY, INC.
    • John J. CraigRick L. Guptill
    • G06F017/50
    • G05B17/02G05B19/41805G05B2219/31066Y02P90/04Y02P90/26
    • A method for simulating, analyzing and/or designing an automated assembly system including a plurality of resources comprises: defining at least one cell from an automated assembly line; associating an action table with each cell; calculating a duration, a success rate and a repair time for each process step using fundamental data of the resources; and associating the duration, the success rate and the repair time with each process step in each action table. The action table of a respective cell specifies all process steps that are executed in the respective cell. A system for simulating, analyzing and/or designing an automated assembly system comprises a discrete event simulator and a three-dimensional kinematic and dynamic simulator coupled with the discrete event simulator. The kinematic and dynamic simulator generates timing data for the automated assembly system that is used by the discrete event simulator. A system for determining a costed-throughput is also provided.
    • 一种用于模拟,分析和/或设计包括多个资源的自动组装系统的方法包括:从自动装配线定义至少一个单元; 将动作表与每个单元相关联; 使用资源的基础数据计算每个处理步骤的持续时间,成功率和修复时间; 并将持续时间,成功率和修复时间与每个操作表中的每个处理步骤相关联。 相应小区的动作表指定在各个小区中执行的所有处理步骤。 用于模拟,分析和/或设计自动组装系统的系统包括离散事件模拟器和与离散事件模拟器耦合的三维运动学和动态模拟器。 运动和动态模拟器生成由离散事件模拟器使用的自动装配系统的定时数据。 还提供了一种用于确定成本吞吐量的系统。