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    • 1. 发明申请
    • System for controlling unmanned vehicles
    • 无人驾驶车辆控制系统
    • US20070032920A1
    • 2007-02-08
    • US11188829
    • 2005-07-25
    • Michael DappAdam JungRobert SzczerbaPaul ThurmJoel Tleon
    • Michael DappAdam JungRobert SzczerbaPaul ThurmJoel Tleon
    • G01C23/00
    • G01C21/12G05D1/0077G05D1/0088
    • A system ensures safety and security of teams of collaborative autonomous unmanned vehicles in executing a mission plan. The system includes a plurality of components, a first device, a second device, and a third device. The plurality of components perform situation analysis, mission planning, mission replanning, mission plan execution, and collaboration between the autonomous unmanned vehicles. The first device identifies safety critical components of the plurality of components. The second device identifies security sensitive components of the plurality of components. The third device isolates the safety critical components from contamination by other components of the plurality of components. The third device isolates security sensitive data from contaminating non-security sensitive components of the plurality of components.
    • 一个系统确保协调的自主无人驾驶车队的执行任务计划的安全和安全。 该系统包括多个组件,第一设备,第二设备和第三设备。 多个组件执行情况分析,任务规划,任务重新安排,任务计划执行以及自主无人驾驶车辆之间的协作。 第一装置识别多个部件的安全关键部件。 第二设备识别多个组件的安全敏感组件。 第三装置将安全关键部件与多个部件中的其他部件的污染隔离开来。 第三设备将安全敏感数据与多个组件中的非安全敏感组件的污染隔离。
    • 2. 发明申请
    • System for automatically designing software agents
    • 自动设计软件代理的系统
    • US20070074209A1
    • 2007-03-29
    • US11188680
    • 2005-07-25
    • Adam JungJohn MoodyRobert SzczerbaJoel Tleon
    • Adam JungJohn MoodyRobert SzczerbaJoel Tleon
    • G06F9/46
    • G06F8/30
    • A system in accordance with the present invention automatically designs a software component to perform a defined task having task inputs and task outputs. The system includes a plurality of modules, a first comparator, a selector, and a second comparator. Each of the plurality of modules has module inputs and module outputs. The first comparator compares the module outputs to the task outputs. The first comparator determines whether the task outputs are achievable by the plurality of modules. The first comparator determines whether at least two of the plurality of modules satisfy one of the task outputs. The selector selects a preferred module from the at least two of the plurality of modules. The second comparator compares at least one of the task inputs to inputs of the preferred module. The second comparator determines whether the inputs of the preferred module are included within the task inputs. The first comparator receives inputs of the preferred module that are not included within the task inputs.
    • 根据本发明的系统自动设计软件组件以执行具有任务输入和任务输出的定义任务。 该系统包括多个模块,第一比较器,选择器和第二比较器。 多个模块中的每一个具有模块输入和模块输出。 第一个比较器将模块输出与任务输出进行比较。 第一比较器确定多个模块是否可以实现任务输出。 第一比较器确定多个模块中的至少两个模块是否满足任务输出之一。 选择器从多个模块中的至少两个模块中选择一个优选模块。 第二比较器将至少一个任务输入与优选模块的输入进行比较。 第二比较器确定优选模块的输入是否包括在任务输入内。 第一个比较器接收到不包括在任务输入内的优选模块的输入。
    • 3. 发明申请
    • Collaborative system for a team of unmanned vehicles
    • 无人驾驶车队合作系统
    • US20070021880A1
    • 2007-01-25
    • US11188830
    • 2005-07-25
    • Brent ApplebyJerry FrankeStephen JamesonAdam JungRobert SzczerbaJoel Tleon
    • Brent ApplebyJerry FrankeStephen JamesonAdam JungRobert SzczerbaJoel Tleon
    • G05D1/00
    • G05D1/104G05D1/0088
    • A system collaboratively and autonomously plans and controls a team of unmanned vehicles within an environment. A mission planning component creates a mission plan for a plurality of members of the team of unmanned vehicles. The mission planning component creates a task plan for each member based on the mission plan. A collaboration component assigns members to the team and roles for the assigned members. The collaboration component updates membership and roles of the members based on the changing situation of the environment. A situational awareness component evaluates the changing situation of the environment based on information from the assigned members of the team. A contingency management component monitors the changing situation of the environment. The contingency management component monitors changes of capabilities of the assigned members of the team and execution of the mission plan and task plans. The contingency management component determines whether to update any of the group consisting of the mission plan and the task plans. A vehicle management component controls movement of each assigned member based on the task plan of each assigned member.
    • 一个系统协调和自主地计划和控制一个环境中的无人驾驶车队。 任务规划部分为无人驾驶车队的多名成员制定了任务计划。 任务规划部分根据任务计划为每个成员创建一个任务计划。 协作组件将成员分配给分配成员的团队和角色。 协作组件根据环境变化情况更新成员的成员和角色。 情境感知组件根据团队指定成员的信息来评估环境变化的情况。 应变管理组件监测环境变化的情况。 应变管理组件监测团队指派成员的能力变化以及执行任务计划和任务计划。 应变管理组件确定是否更新由任务计划和任务计划组成的任何组。 车辆管理部件根据每个分配成员的任务计划来控制每个分配成员的移动。
    • 4. 发明申请
    • System for intelligently controlling a team of vehicles
    • 用于智能控制车队的系统
    • US20070021879A1
    • 2007-01-25
    • US11188685
    • 2005-07-25
    • Dale DelNeroStephen DeMarcoAdam JungJohn MoodyPeter StilesRobert SzczerbaJoel Tleon
    • Dale DelNeroStephen DeMarcoAdam JungJohn MoodyPeter StilesRobert SzczerbaJoel Tleon
    • G06F17/00
    • G05D1/0088
    • A system collaboratively and autonomously plans and controls a team of vehicles having subsystems within an environment. The system includes a mission management component, a communication component, a payload controller component, and an automatic target recognition component. The mission management component plans and executes a mission plan of the team and plans and executes tasks of the vehicles. The communication component plans communication and networking for the team. The communication component manages quality of service for the team. The communication component directs communication subsystems for the team and for the vehicles. The payload controller component directs and executes sensor subsystems for the team and for the vehicles. The automatic target recognition component processes and fuses information from the sensor subsystems and from the vehicles for use by the mission management component.
    • 一个系统协同和自主地计划和控制一个在环境中具有子系统的车队。 该系统包括任务管理组件,通信组件,有效载荷控制器组件和自动目标识别组件。 任务管理部门计划并执行小组的任务计划,并计划并执行车辆任务。 通信组件规划了团队的通信和网络。 通信组件管理团队的服务质量。 通信组件指导团队和车辆的通信子系统。 有效负载控制器组件指导和执行团队和车辆的传感器子系统。 自动目标识别组件处理和融合来自传感器子系统和车辆的信息,以供任务管理组件使用。
    • 6. 发明申请
    • System for predictively managing communication attributes of unmanned vehicles
    • 用于预测性管理无人驾驶车辆通信属性的系统
    • US20060121418A1
    • 2006-06-08
    • US11002057
    • 2004-12-02
    • Stephen DeMarcoRobert Szczerba
    • Stephen DeMarcoRobert Szczerba
    • F41A33/00
    • G05D1/0088F41H13/00
    • A system predictively determines data transmitted within a wireless network in accordance with a mission plan and changes to the mission plan. The system includes a first team member and a second team member. The first team member includes a first module for evaluating the changes to the mission plan encountered by the first team member and determining whether to transmit information of the change to the second team member. The first team member further includes a second module containing rules for evaluating changes to the mission plan encountered by the first team member. The first module utilizes the rules of the second module to predictively alter the mission plan.
    • 系统根据任务计划和任务计划的变化预测性地确定在无线网络内传输的数据。 该系统包括第一个团队成员和第二个团队成员。 第一个团队成员包括第一个模块,用于评估第一个团队成员遇到的任务计划的变化,并确定是否将更改的信息传送给第二个团队成员。 第一个团队成员进一步包括第二个模块,其中包含用于评估第一个团队成员遇到的任务计划变更的规则。 第一个模块利用第二个模块的规则预测性地改变任务计划。
    • 7. 发明授权
    • Apparatus and method for controlling allocation of resources and task execution
    • 用于控制资源分配和任务执行的装置和方法
    • US06859927B2
    • 2005-02-22
    • US09740418
    • 2000-12-19
    • John O. MoodyIra GlicksteinRobert Szczerba
    • John O. MoodyIra GlicksteinRobert Szczerba
    • G06F9/00G06Q10/00
    • G06Q10/06
    • A distributed data processing system and method are presented herein for purposes of controlling allocation of resources and task execution. The system includes a communication network that passes messages between computers connected to the network. A plurality of computers are connected to the network and run programs thereon including a central authority and at least first and second autonomous agents. The central authority generates a graph associated with each agent and wherein each graph represents for the associated agent what resources that agent has and what task or tasks that agent may perform. Each agent employs the associated graph to determine what resource or resources are needed by that agent to carry out the task of tasks to be performed by that agent. The agents negotiate with each other for the resources needed to carry out the task or tasks to be performed by the agents.
    • 本文提出了分布式数据处理系统和方法,用于控制资源分配和任务执行。 该系统包括通信网络,其在连接到网络的计算机之间传递消息。 多个计算机连接到网络并在其上运行程序,包括中央机构和至少第一和第二自主代理。 中央权力机构生成与每个代理相关联的图形,其中每个图形代表关联代理程序代理具有哪些资源以及代理可以执行的任务或任务。 每个代理使用关联的图来确定该代理需要什么资源或资源来执行由该代理执行的任务的任务。 代理人协商执行执行由代理人执行的任务或任务所需的资源。
    • 10. 发明申请
    • APPARATUS AND METHOD FOR CONTROLLING ALLOCATION OF RESOURCES AND TASK EXECUTION
    • 用于控制资源分配和任务执行的装置和方法
    • US20050005272A1
    • 2005-01-06
    • US09740418
    • 2000-12-19
    • John MoodyIra GlicksteinRobert Szczerba
    • John MoodyIra GlicksteinRobert Szczerba
    • G06F9/00G06Q10/00
    • G06Q10/06
    • A distributed data processing system and method are presented herein for purposes of controlling allocation of resources and task execution. The system includes a communication network that passes messages between computers connected to the network. A plurality of computers are connected to the network and run programs thereon including a central authority and at least first and second autonomous agents. The central authority generates a graph associated with each agent and wherein each graph represents for the associated agent what resources that agent has and what task or tasks that agent may perform. Each agent employs the associated graph to determine what resource or resources are needed by that agent to carry out the task of tasks to be performed by that agent. The agents negotiate with each other for the resources needed to carry out the task or tasks to be performed by the agents.
    • 本文提出了分布式数据处理系统和方法,用于控制资源分配和任务执行。 该系统包括通信网络,其在连接到网络的计算机之间传递消息。 多个计算机连接到网络并在其上运行程序,包括中央机构和至少第一和第二自主代理。 中央权力机构生成与每个代理相关联的图形,其中每个图形代表关联代理程序代理具有哪些资源以及代理可以执行的任务或任务。 每个代理使用关联的图来确定该代理需要什么资源或资源来执行由该代理执行的任务的任务。 代理人协商执行执行由代理人执行的任务或任务所需的资源。