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    • 3. 发明申请
    • ROBOTIC CONTROL SYSTEM USING VIRTUAL REALITY INPUT
    • 使用虚拟现实输入的机器人控制系统
    • WO2015168357A1
    • 2015-11-05
    • PCT/US2015/028416
    • 2015-04-30
    • PARKER, Coleman, P.
    • PARKER, Coleman, P.
    • B25J9/00G05B19/418
    • B25J9/1689B25J9/1612B25J9/163B25J13/08G05B2219/39543G05B2219/40053G05B2219/40131
    • A robotic system and method performs tasks autonomously on real-world objects (RWOs) upon receipt of inputs from a virtual reality environment. A robotic actuator has tools to manipulate the RWOs, and a set of robot- specific instructions for actuating the tools. A first set of rules governs the RWOs, and sensors detect the presence of the RWOs. A virtual reality (VR) computer uses sensor data to generate a virtual world (VW) including virtual world objects (VWOs) representative of RWOs. A second set of rules governs the VWOs. A user manipulates the VWOs to generate a modified virtual world (MVW). A transformation engine captures differences between the VW and MVW, transforms the differences into inputs for the robotic actuator. An autonomous instruction engine receives the inputs to identify RWOs and combines the inputs with the first set of rules to generate combined instructions usable by the robotic actuator to manipulate RWOs autonomously.
    • 机器人系统和方法在接收到来自虚拟现实环境的输入时,对现实世界对象(RWO)自主执行任务。 机器人执行器具有操纵RWO的工具,以及用于启动工具的一组特定于机器人的指令。 第一组规则控制RWO,传感器检测RWO的存在。 虚拟现实(VR)计算机使用传感器数据来生成包括代表RWO的虚拟世界对象(VWO)的虚拟世界(VW)。 第二套规则管理VWO。 用户操纵VWO生成修改后的虚拟世界(MVW)。 变换引擎捕获VW和MVW之间的差异,将差异转换为机器人执行器的输入。 自动指令引擎接收输入以识别RWO并将输入与第一组规则组合以产生由机器人致动器可自主地操纵RWO的组合指令。
    • 4. 发明申请
    • METHOD FOR COMBINING THE MANAGEMENT AND ADMINISTRATION OF MUTUAL FUND AND EXCHANGE- TRADED FUND ASSETS
    • 组合互惠基金和交换基金资产管理与管理的方法
    • WO2013003750A1
    • 2013-01-03
    • PCT/US2012/044993
    • 2012-06-29
    • EATON VANCE CORP.FAUST, Thomas, E. Jr.
    • FAUST, Thomas, E. Jr.
    • G06Q40/00
    • G06Q40/06G06Q40/04
    • California A Mutual fund and ETF master-feeder arrangement includes a Mutual Fund module for a feeder mutual fund that issues and redeems mutual fund shares in transactions with investors primarily for cash, an ETF module for a feeder ETF that issues and redeems ETF shares in transactions with Authorized Participants through in kind transfers, and a Master Portfolio module for a master portfolio that issues and redeems interests through in-kind transactions with the Mutual Fund and the ETF. The Mutual Fund applies cash invested by mutual fund investors to purchase securities in accordance with an asset configuration communicated by the master portfolio; and the ETF conforms the composition of assets received in in-kind transactions to the asset configuration. The Mutual Fund and the ETF increase interests in the master portfolio by contributing assets, wherein transactions in securities to accommodate feeder fund inflows occur outside of the master portfolio.
    • 加利福尼亚共同基金和ETF主要馈线安排包括一个馈线共同基金的共同基金模块,发行和赎回与投资者主要为现金交易的共同基金份额,ETF模块,用于发行和赎回ETF交易中的ETF股票 授权参与者通过实物转移,以及通过与共同基金和ETF进行实物交易发行和赎回利益的主要投资组合的主要投资组合模块。 共同基金应用共同基金投资者投资的现金根据主要投资组合所传达的资产配置购买证券; ETF将实物交易中收到的资产构成符合资产配置。 共同基金和ETF通过提供资产增加对主要投资组合的兴趣,其中证券交易以适应馈入资金流入发生在主投资组合之外。
    • 5. 发明申请
    • INFORMATION GRID
    • 信息网
    • WO2012125308A1
    • 2012-09-20
    • PCT/US2012/027519
    • 2012-03-02
    • REYES, Hector
    • HOPPER, Michael, Blair
    • G08B23/00
    • G01S5/16G08B7/066
    • A lighting system and method is provided for tracking movement within a predetermined area. This system includes a plurality of lights installed at predetermined locations throughout the predetermined area, each having at least one sensor with a field of view. The lights include a computing module operatively associated with each sensor, and a communication module operatively associated with the computing module. The lights are configured to communicate with one another and capture sensor output to identify and record points at which the fields of view overlap with one another, to form a unified sensor network having a composite field of view. The system and method is configured to track changes associated with individual targets within the composite field of view.
    • 提供照明系统和方法来跟踪在预定区域内的运动。 该系统包括安装在整个预定区域的预定位置的多个灯,每个灯具有至少一个具有视场的传感器。 灯包括与每个传感器可操作地相关联的计算模块,以及与计算模块可操作地相关联的通信模块。 灯被配置为彼此通信并捕获传感器输出以识别和记录视场彼此重叠的点,以形成具有复合视场的统一传感器网络。 系统和方法被配置为跟踪在复合视场内与各个目标相关联的变化。
    • 6. 发明申请
    • TRACKING METHOD AND SYSTEM
    • 跟踪方法和系统
    • WO2012106458A1
    • 2012-08-09
    • PCT/US2012/023526
    • 2012-02-01
    • REYES, Hector
    • HOPPER, Michael, Blair
    • G01S17/66
    • G08B23/00
    • A lighting system and method is provided for tracking movement within a predetermined area. This system includes a plurality of lights installed at predetermined locations throughout the predetermined area, each having at least one sensor with a field of view. The lights include a computing module operatively associated with each sensor, and a communication module operatively associated with the computing module. The lights are configured to communicate with one another and capture sensor output to identify and record points at which the fields of view overlap with one another, to form a unified sensor network having a composite field of view.
    • 提供照明系统和方法来跟踪在预定区域内的运动。 该系统包括安装在整个预定区域的预定位置的多个灯,每个灯具有至少一个具有视场的传感器。 灯包括与每个传感器可操作地相关联的计算模块,以及与计算模块可操作地相关联的通信模块。 灯被配置为彼此通信并捕获传感器输出以识别和记录视场彼此重叠的点,以形成具有复合视场的统一传感器网络。
    • 7. 发明申请
    • DYNAMIC, INTERACTIVE, WEB-BASED TREATMENT SYSTEM
    • 动态,互动,基于WEB的处理系统
    • WO2010123693A1
    • 2010-10-28
    • PCT/US2010/030392
    • 2010-04-08
    • IGETBETTER, INC.MARTEN, ChristianHABERMEYER, Stephant, T.
    • MARTEN, ChristianHABERMEYER, Stephant, T.
    • A61B5/00
    • G06F19/3481G06F19/00G06F19/325G06Q50/22G16H80/00
    • A treatment system and method includes a treatment system server having a building block module to generate modular, interactive building blocks for treatment regimens. The building blocks represent a time-sensitive aspect of the treatment regimen, and are selectively assembled by a care provider client computer in substantially any combination, to form a customized treatment regimen. An assembly module transforms the building blocks into entries on a calendar viewable on a patient client computer. A transformation module transforms the patient input data into a display of patient progress. A series of servers permits selective access to the treatment program by client computers, hosts a website to enable client computers to access the treatment system server, store the assembled treatment plans and provide a secure communications between care provider client computers and patient client computers, and between the web server and a patient record database.
    • 治疗系统和方法包括具有构建块模块的治疗系统服务器,以生成用于治疗方案的模块化的交互式构建块。 构建块代表治疗方案的时间敏感方面,并且由护理提供者客户计算机以基本上任何组合选择性组装,以形成定制的治疗方案。 组装模块将构建块转换成可在病人客户端计算机上查看的日历上的条目。 转换模块将患者输入数据转换为患者进展的显示。 一系列服务器允许客户端计算机选择性地访问治疗程序,托管网站以使客户端计算机能够访问治疗系统服务器,存储组装的治疗计划并提供护理提供者客户端计算机与病人客户端计算机之间的安全通信,以及 在Web服务器和病人记录数据库之间。
    • 9. 发明申请
    • NON-METALLIC FLOW-THROUGH ELECTRODELESS CONDUCTIVITY SENSOR WITH LEAK AND TEMPERATURE DETECTION
    • 具有漏电和温度检测的非金属流通电导率传感器
    • WO2008085683A1
    • 2008-07-17
    • PCT/US2007/088222
    • 2007-12-19
    • INVENSYS SYSTEMS, INC.QUACKENBUSH, John, KevinBOWER, Michael, M.TALUTIS, Stephen, B.MCKINLAY, Donald, S.TOWER III, Daniel, G.
    • QUACKENBUSH, John, KevinBOWER, Michael, M.TALUTIS, Stephen, B.MCKINLAY, Donald, S.TOWER III, Daniel, G.
    • G01M3/04
    • G01N27/023
    • A non metallic flow through electrodeless conductivity sensor is provided with a conduit having primary and secondary process fluid flow paths to form a fluid loop. At least one drive and one sense toroid surround the conduit on the fluid loop. Voltage supplied to the drive toroid induces a current in the sense toroid via the fluid loop to eliminate any need for metallic electrodes in contact with the process fluid. At least one additional drive and/or sense toroid is disposed on the fluid loop to enhance induction. Optionally one or more sense coils are disposed about the conduit outside of the fluid loop to cancel out stray electrical noise. An optional conductor disposed along the conduit detects any fluid leakage through changes in resistance thereof. A temperature detector is supported within an electrically non- conductive holder extending into the fluid flow path, so that the detector is free from physical contact with the fluid. An optional enclosure is provided with ports to enable a user to purge any gas permeating the conduit walls.
    • 通过无电极电导率传感器的非金属流提供有具有初级和次级过程流体流动路径以形成流体回路的导管。 至少一个驱动器和一个感测环绕环绕流体回路上的导管。 提供给驱动环形电极的电压通过流体回路在一定程度上引起电流,以消除与工艺流体接触的金属电极的任何需要。 至少一个额外的驱动和/或感测环形线圈设置在流体回路上以增强感应。 可选地,一个或多个感测线圈布置在流体回路外部的导管周围以消除杂散的电噪声。 沿着管道设置的可选导体通过其电阻的变化来检测任何流体泄漏。 温度检测器被支撑在延伸到流体流路中的非导电保持器内,使得检测器与流体没有物理接触。 可选的外壳提供有端口,以使用户能够清除渗透导管壁的任何气体。
    • 10. 发明申请
    • SAMPLE ANALYZER AND SAMPLING SYSTEM
    • 样品分析仪和采样系统
    • WO2008042957A2
    • 2008-04-10
    • PCT/US2007/080298
    • 2007-10-03
    • INVENSYS SYSTEMS, INC.TRYGSTAD, W., MarcusJACKSON, RussellKEEN, Bruce, A.
    • TRYGSTAD, W., MarcusJACKSON, RussellKEEN, Bruce, A.
    • G01N21/75
    • G01N24/08G01N24/081G01N24/085G01N33/2823G01R33/30G01R33/307G01R33/31G01R33/44
    • A spectroscopic sample analysis apparatus includes an actively controlled, direct contact heat exchanger in serial fluid communication with a spectroscopic analyzer, and a controller communicably coupled to the heat exchanger. The heat exchanger is disposed downstream of a fluid handler in the form of a stream selection unit (SSU), a solvent/standard recirculation unit (SRU), and/or an auto-sampling unit (ASU). The SSU selectively couples individual stream inputs to an output port. The SRU includes a solvent/standard reservoir, and selectively couples output ports to the heat exchanger, and returns the solvent/standard sample to the reservoirs. The ASU includes a sample reservoir having a sample transfer pathway with a plurality of orifices disposed at spaced locations along a length thereof. The controller selectively actuates the fluid handler, enabling sample to flow therethrough to the heat exchanger, and actuates the heat exchanger to maintain the sample at a predetermined temperature.
    • 光谱样本分析设备包括与光谱分析仪串行流体连通的主动控制的直接接触式热交换器,以及可通信地耦合到热交换器的控制器。 热交换器以流选择单元(SSU),溶剂/标准再循环单元(SRU)和/或自动采样单元(ASU)的形式布置在流体处理器的下游。 SSU有选择地将各个流输入耦合到输出端口。 SRU包括一个溶剂/标准储存器,并有选择地将输出端口连接到热交换器,并将溶剂/标准样本返回到储存器。 ASU包括具有样本转移路径的样本容器,样本转移路径具有沿着其长度在间隔位置设置的多个孔口。 控制器选择性地启动流体处理器,使得样品流过热交换器,并且启动热交换器以将样品保持在预定温度。