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    • 1. 发明申请
    • PROCESS CONTROL OF AN INDUSTRIAL PLANT
    • 工业厂房工艺控制
    • WO2008018805A3
    • 2008-06-26
    • PCT/NZ2007000211
    • 2007-08-06
    • AUCKLAND UNISERVICES LTDCHEN JOHN J J
    • CHEN JOHN J J
    • G05B19/048C25C3/06
    • G05B19/41835C25C3/06C25C3/20G05B11/01G05B23/0294G05B2219/31455G05B2219/32009
    • A system (10) for controlling an industrial plant (12) comprises automatic control equipment (14) comprising a plurality of measurement sensors (16) for sensing predetermined variables associated with components of the industrial plant (12). The sensors (16) generate measured data relating to operation of the components of the industrial plant (12). A database (20) contains operational data, including observational data, regarding the industrial plant (12). A processor (18) is in communication with the automatic control equipment (14) and the database (20) for receiving the measured data from the sensors (16) of the automatic control equipment (14) and the operational data from the database (20). The processor (18) manipulates the measured and operational data to provide an evolving description of a process condition of each component over time, along with output information relating to operational control of the industrial plant (12) and for updating the database (20).
    • 用于控制工业设备(12)的系统(10)包括自动控制设备(14),其包括用于感测与工业设备(12)的组件相关联的预定变量的多个测量传感器(16)。 传感器(16)产生与工业设备(12)的部件的操作有关的测量数据。 数据库(20)包含关于工厂(12)的操作数据,包括观察数据。 处理器(18)与自动控制设备(14)和数据库(20)进行通信,用于从自动控制设备(14)的传感器(16)接收测量数据,并从数据库(20)接收操作数据 )。 处理器(18)操纵测量和操作数据以提供随时间的每个部件的处理条件的演进描述,以及与工业设备(12)的操作控制相关的输出信息和用于更新数据库(20)的输出信息。
    • 4. 发明申请
    • STENT RETAINING HYBRID SLEEVE MATERIAL AND STRUCTURE
    • STENT保持混合套管材料和结构
    • WO0239929A3
    • 2002-11-28
    • PCT/US0150707
    • 2001-10-24
    • SCIMED LIFE SYSTEMS INCCHEN JOHN JHORN DANIEL J
    • CHEN JOHN JHORN DANIEL J
    • A61F2/00A61F2/95A61F2/958A61M25/00A61F2/06
    • A61F2/95A61F2002/9583A61F2250/0019
    • A stent delivery system comprising a catheter including a stent mounting region. A stent disposed about the stent mounting region of the catheter, the stent having a distal end and a proximal end, the stent further having an unexpanded state and an expanded state. At least one stent retaining sleeve having a first end overlying an end of the stent when the stent is in the unexpanded state, a second end engaged to at least a portion of the catheter adjacent to the stent mounting region. The outside surface of the stent retaining sleeve being composed of a first material, at least a portion of the first end of the inside surface being composed of a second material. The first material having a first predetermined hardness, the second material having a second predetermined hardness, the second predetermined hardness having a higher durometer value than the first predetermined hardness.
    • 一种支架输送系统,其包括包括支架安装区域的导管。 支架设置在导管的支架安装区域附近,支架具有远端和近端,支架还具有未膨胀状态和膨胀状态。 当支架处于未膨胀状态时,至少一个支架保持套筒具有覆盖支架端部的第一端,第二端部接合到邻近支架安装区域的导管的至少一部分。 支架保持套筒的外表面由第一材料构成,内表面的第一端的至少一部分由第二材料构成。 所述第一材料具有第一预定硬度,所述第二材料具有第二预定硬度,所述第二预定硬度具有比所述第一预定硬度更高的硬度值。
    • 6. 发明申请
    • PROCESS CONTROL OF AN INDUSTRIAL PLANT
    • 工业厂房工艺控制
    • WO2008018805A8
    • 2010-07-29
    • PCT/NZ2007000211
    • 2007-08-06
    • AUCKLAND UNISERVICES LTDTAYLOR MARK PCHEN JOHN J J
    • TAYLOR MARK PCHEN JOHN J J
    • G05B19/048C25C3/06
    • G05B19/41835C25C3/06C25C3/20G05B11/01G05B23/0294G05B2219/31455G05B2219/32009
    • A system (10) for controlling an industrial plant (12) comprises automatic control equipment (14) comprising a plurality of measurement sensors (16) for sensing predetermined variables associated with components of the industrial plant (12). The sensors (16) generate measured data relating to operation of the components of the industrial plant (12). A database (20) contains operational data, including observational data, regarding the industrial plant (12). A processor (18) is in communication with the automatic control equipment (14) and the database (20) for receiving the measured data from the sensors (16) of the automatic control equipment (14) and the operational data from the database (20). The processor (18) manipulates the measured and operational data to provide an evolving description of a process condition of each component over time, along with output information relating to operational control of the industrial plant (12) and for updating the database (20).
    • 用于控制工业设备(12)的系统(10)包括自动控制设备(14),其包括用于感测与工业设备(12)的组件相关联的预定变量的多个测量传感器(16)。 传感器(16)产生与工业设备(12)的部件的操作有关的测量数据。 数据库(20)包含关于工厂(12)的操作数据,包括观察数据。 处理器(18)与自动控制设备(14)和数据库(20)进行通信,用于从自动控制设备(14)的传感器(16)接收测量数据,并从数据库(20)接收操作数据 )。 处理器(18)操纵测量和操作数据以提供随时间的每个部件的处理条件的演进描述,以及与工业设备(12)的操作控制相关的输出信息和用于更新数据库(20)的输出信息。
    • 9. 发明申请
    • PROCESS CONTROL OF AN INDUSTRIAL PLANT
    • 工业厂房过程控制
    • WO2008018805A2
    • 2008-02-14
    • PCT/NZ2007/000211
    • 2007-08-06
    • AUCKLAND UNISERVICES LIMITEDCHEN, John, J., J.TITCHENER, Mark, P.
    • CHEN, John, J., J.TITCHENER, Mark, P.
    • G05B19/41835C25C3/06C25C3/20G05B11/01G05B23/0294G05B2219/31455G05B2219/32009
    • A system 10 for controlling an industrial plant 12 comprises automatic control equipment 14 comprising a plurality of measurement sensors 16 for sensing predetermined variables associated with components of the industrial plant 12. The sensors 16 generate measured data relating to operation of the components of the industrial plant 12. A database 20 contains operational data, including observational data, regarding the industrial plant 12. A processor 18 is in communication with the automatic control equipment 14 and the database 20 for receiving the measured data from the sensors 16 of the automatic control equipment 14 and the operational data from the database 20. The processor 18 manipulates the measured and operational data to provide an evolving description of a process condition of each component over time, along with output information relating to operational control of the industrial plant 12 and for updating the database 20.
    • 用于控制工业设备12的系统10包括自动控制设备14,其包括用于感测与工业设备12的组件相关联的预定变量的多个测量传感器16.传感器16生成与工业设备的部件的操作有关的测量数据 数据库20包含关于工业设备12的操作数据,包括观察数据。处理器18与自动控制设备14和数据库20通信,用于从自动控制设备14的传感器16接收测量数据 以及来自数据库20的操作数据。处理器18操纵测量和操作数据,以随时间提供每个部件的处理条件的演进描述以及与工业设备12的操作控制相关的输出信息,并且用于更新 数据库20。