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公开(公告)号:US11568986B2
公开(公告)日:2023-01-31
申请号:US16497022
申请日:2018-03-28
Applicant: GE Healthcare Bio-Sciences AB
Inventor: Key Hyckenberg , Kjell Karlsson , Stefan Willehadson , Orjan Bo Grelsson
IPC: G01N33/543 , B01D15/38 , G06F9/445 , G06F9/455 , G16H40/67 , G06F16/955 , G06F3/0483 , G06F3/04842 , H04L67/025 , H04L67/125
Abstract: Disclosed is a system for remote controlling and monitoring of at least one instrument, for example a bioprocessing instrument, said system comprising: at least one instrument to be controlled and/or monitored; at least one instrument server connected to the at least one instrument, said instrument server comprising an instrument control software; at least one gateway connected to the at least one instrument server; a transferring means provided in the at least one instrument server, said transferring means being arranged to receive information from the at least one connected instrument and forward said information to the at least one gateway; a first self-hosted web server containing a web application provided in the at least one instrument server for providing possibility to control the at least one instrument via a web browser in an instrument control web page; a publishing means provided in the at least one gateway, said publishing means being arranged to receive information from at least one instrument server and publish said information in an instrument monitoring web page; a second self-hosted web server containing a web application provided in the at least one gateway for providing possibility to monitor the at least one instrument in the instrument monitoring web page via a web browser.
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公开(公告)号:US20200326920A1
公开(公告)日:2020-10-15
申请号:US16486546
申请日:2018-02-22
Applicant: GE Healthcare Bio-Sciences AB
Inventor: Key Hyckenberg , Kjell Karlsson , Par Haggblad , Niklas Engblom
IPC: G06F8/61 , G06F8/65 , G06F9/4401
Abstract: Disclosed is a method for automatic installation and setting up of an instrument (1), comprising the steps of: connecting (S1) the instrument (1) to a service software system (15) in a network (19) via a first communication interface (6); sending (S3) identification information (5) of the instrument (1) from the instrument to the service software system (15) via the first communication interface (6); recognizing (S5) in the service software system (15) at least one characteristic of the instrument (1) by analyzing the identification information (5); based on said at least one characteristic or identification information, creating (S7) by the service software system (15) dedicated high level control software (25) comprising parts of the control software needed for the instrument; based on said at least one characteristic or identification information, sending (S9) to the instrument (1) from the service software system (15) software to enable a second communication interface (16), and low level control software components needed for local control of the instrument, installing (S11) and configuring in the instrument the low level control software components received from the service software system; starting (S13) a built-in control software (9) in the instrument; using the (S15) the built-in control software in the instrument to access the high level control software dedicated for the instrument via the first, or a second communication interface (16), said built-in control software using the low level control software to monitor and control the instrument.
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公开(公告)号:US20200381112A1
公开(公告)日:2020-12-03
申请号:US16497022
申请日:2018-03-28
Applicant: GE Healthcare Bio-Sciences AB
Inventor: Key Hyckenberg , Kjell Karlsson , Stefan Willehadson , Orjan Bo Grelsson
IPC: G16H40/67 , H04L29/08 , G06F16/955 , G06F3/0484 , G06F3/0483
Abstract: Disclosed is a system for remote controlling and monitoring of at least one instrument, for example a bioprocessing instrument, said system comprising: at least one instrument to be controlled and/or monitored; at least one instrument server connected to the at least one instrument, said instrument server comprising an instrument control software; at least one gateway connected to the at least one instrument server; a transferring means provided in the at least one instrument server, said transferring means being arranged to receive information from the at least one connected instrument and forward said information to the at least one gateway; a first self-hosted web server containing a web application provided in the at least one instrument server for providing possibility to control the at least one instrument via a web browser in an instrument control web page; a publishing means provided in the at least one gateway, said publishing means being arranged to receive information from at least one instrument server and publish said information in an instrument monitoring web page; a second self-hosted web server containing a web application provided in the at least one gateway for providing possibility to monitor the at least one instrument in the instrument monitoring web page via a web browser.
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公开(公告)号:US20190336886A1
公开(公告)日:2019-11-07
申请号:US16474455
申请日:2017-12-22
Applicant: GE Healthcare Bio-Sciences AB
Inventor: Key Hyckenberg , Mikael Johan Helmer Eugen Berg , Helena Skoglar , Gunnar Malmquist , Linda Mathiasson , Lars Henning Ivar Mattsson , Sara Sendabo
Abstract: The present invention relates to a method for controlling a bioprocess purification system comprising a continuous chromatography configured to operate with at least three columns and configured for cyclic operation, wherein the continuous purification is performed on a sample comprising a target product having desired characteristics. The method comprises detecting (82) at least one parameter indicative of characteristics of the target product, performing (83) real time trend analysis of each detected at least one parameter to identify a deviation from the desired characteristics of the target product, and controlling (84) the bioprocess purification system to meet the desired characteristics based on the identified deviation, whereby the target characteristics is within a pre-determined range.
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