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公开(公告)号:US11656628B2
公开(公告)日:2023-05-23
申请号:US17021154
申请日:2020-09-15
Applicant: iRobot Corporation
Inventor: Laura V. Herlant , Aravindh Kuppusamy , Deepak Sharma , Kshitij Bichave , Shao Zhou , Cheuk Wah Wong
CPC classification number: G05D1/0221 , A47L9/009 , A47L9/2826 , A47L9/2852 , A47L9/2894 , G05D1/027 , G05D1/0242 , G05D1/0246 , G05D1/0272 , A47L2201/04 , G05D2201/0215
Abstract: Described herein are systems, devices, and methods for controlling a mobile cleaning robot to escape from a stuck state using a learned robot escape behavior model. The model is trained using reinforcement learning at a cloud-computing device or networked devices. A mobile cleaning robot comprises a drive system, a sensor circuit to collect sensor data associated with a detected stuck state, and a controller circuit that can receive the trained robot escape behavior model, and apply the sensor data associated with the detected stuck state to the trained robot escape behavior model to determine an escape policy. The drive system or one or more actuators of the mobile robot can remove the mobile robot from the stuck state according to the determined escape policy.
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公开(公告)号:US10892052B2
公开(公告)日:2021-01-12
申请号:US15931451
申请日:2020-05-13
Applicant: InTouch Technologies, Inc. , iRobot Corporation
Inventor: Charles S. Jordan , Andy Young , Mei Sheng Ng , Yair Lurie , Fuji Lai , Timothy C. Wright , Cody Herzog , Blair Whitney , Bill Rizzi , James Ballantyne , Yulun Wang , Cheuk Wah Wong , Justin H. Kearns , Orjeta Taka , Ramchandra Karandikar
IPC: H04N7/14 , G16H40/63 , G06Q10/10 , G06F3/0484 , G16Z99/00 , G06F19/00 , G06F3/0488 , G16H40/67 , G06Q50/22
Abstract: The present disclosure describes various aspects of remote presence interfaces (RPIs) for use on portable electronic devices (PEDs) to interface with remote presence devices. An RPI may allow a user to interact with a telepresence device, view a live video feed, provide navigational instructions, and/or otherwise interact with the telepresence device. The RPI may allow a user to manually, semi-autonomously, or autonomously control the movement of the telepresence device. One or more panels associated with a video feed, patient data, calendars, date, time, telemetry data, PED data, telepresence device data, healthcare facility information, healthcare practitioner information, menu tabs, settings controls, and/or other features may be utilized via the RPI.
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公开(公告)号:US10328576B2
公开(公告)日:2019-06-25
申请号:US15720214
申请日:2017-09-29
Applicant: InTouch Technologies, Inc. , iRobot Corporation
Inventor: Marco Pinter , Fuji Lai , Daniel Steven Sanchez , James Ballantyne , David Bjorn Roe , Yulun Wang , Charles S. Jordan , Orjeta Taka , Cheuk Wah Wong
Abstract: Devices, systems, and methods for social behavior of a telepresence robot are disclosed herein. A telepresence robot may include a drive system, a control system, an object detection system, and a social behaviors component. The drive system is configured to move the telepresence robot. The control system is configured to control the drive system to drive the telepresence robot around a work area. The object detection system is configured to detect a human in proximity to the telepresence robot. The social behaviors component is configured to provide instructions to the control system to cause the telepresence robot to operate according to a first set of rules when a presence of one or more humans is not detected and operate according to a second set of rules when the presence of one or more humans is detected.
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公开(公告)号:US09785149B2
公开(公告)日:2017-10-10
申请号:US15139073
申请日:2016-04-26
Applicant: IROBOT CORPORATION , INTOUCH TECHNOLOGIES, INC.
Inventor: Yulun Wang , Charles S. Jordan , Tim Wright , Michael Chan , Marco Pinter , Kevin Hanrahan , Daniel Sanchez , James Ballantyne , Cody Herzog , Blair Whitney , Fuji Lai , Kelton Temby , Eben Christopher Rauhut , Justin H. Kearns , Cheuk Wah Wong , Timothy Sturtevant Farlow
CPC classification number: G05D1/0217 , B25J9/1689 , B25J11/009 , G05D1/0011 , G05D1/0088 , G05D1/0214 , G05D1/024 , G05D1/0259 , G05D1/0261 , G05D1/0274 , G05D1/028 , G05D2201/0206 , G06F19/00 , G06F19/3418 , G06T11/00
Abstract: A telepresence robot may include a drive system, a control system, an imaging system, and a mapping module. The mapping module may access a map of an area and tags associated with the area. In various embodiments, each tag may include tag coordinates and tag information, which may include a tag annotation. A tag identification system may identify tags within a predetermined range of the current position and the control system may execute an action based on an identified tag whose tag information comprises a telepresence robot action modifier. The telepresence robot may rotate an upper portion independent from a lower portion. A remote terminal may allow an operator to control the telepresence robot using any combination of control methods, including by selecting a destination in a live video feed, by selecting a destination on a map, or by using a joystick or other peripheral device.
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公开(公告)号:US09776327B2
公开(公告)日:2017-10-03
申请号:US14931641
申请日:2015-11-03
Applicant: InTouch Technologies, Inc. , iRobot Corporation
Inventor: Marco Pinter , Fuji Lai , Daniel Steven Sanchez , James Ballantyne , David Bjorn Roe , Yulun Wang , Charles S. Jordan , Orjeta Taka , Cheuk Wah Wong
CPC classification number: B25J9/1676 , G06F19/00 , G06F19/3418 , G06Q50/22 , G16H40/67 , Y10S901/01 , Y10S901/47 , Y10S901/49
Abstract: Devices, systems, and methods for social behavior of a telepresence robot are disclosed herein. A telepresence robot may include a drive system, a control system, an object detection system, and a social behaviors component. The drive system is configured to move the telepresence robot. The control system is configured to control the drive system to drive the telepresence robot around a work area. The object detection system is configured to detect a human in proximity to the telepresence robot. The social behaviors component is configured to provide instructions to the control system to cause the telepresence robot to operate according to a first set of rules when a presence of one or more humans is not detected and operate according to a second set of rules when the presence of one or more humans is detected.
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公开(公告)号:US20160046021A1
公开(公告)日:2016-02-18
申请号:US14924471
申请日:2015-10-27
Applicant: IROBOT CORPORATION , INTOUCH TECHNOLOGIES, INC.
Inventor: Yulun Wang , Charles S. Jordan , Tim Wright , Michael Chan , Marco Pinter , Kevin Hanrahan , Daniel Sanchez , James Ballantyne , Cody Herzog , Blair Whitney , Fuji Lai , Kelton Temby , Eben Christopher Rauhut , Justin H. Kearns , Cheuk Wah Wong , Timothy Sturtevant Farlow
IPC: B25J9/16 , B25J5/00 , G06T11/60 , G06T15/10 , G06F3/0482 , G06F3/0484
CPC classification number: B25J9/1664 , B25J5/00 , B25J9/1689 , B25J9/1697 , B25J11/009 , B25J11/0095 , G05D1/0038 , G05D1/024 , G05D1/0274 , G05D2201/0206 , G06F3/0482 , G06F3/04842 , G06F3/04847 , G06F19/00 , G06F19/3418 , G06T11/00 , G06T11/60 , G06T15/10 , G06T2200/24 , Y10S901/01 , Y10S901/47
Abstract: A telepresence robot may include a drive system, a control system, an imaging system, and a mapping module. The mapping module may access a plan view map of an area and tags associated with the area. In various embodiments, each tag may include tag coordinates and tag information, which may include a tag annotation. A tag identification system may identify tags within a predetermined range of the current position and the control system may execute an action based on an identified tag whose tag information comprises a telepresence robot action modifier. The telepresence robot may rotate an upper portion independent from a lower portion. A remote terminal may allow an operator to control the telepresence robot using any combination of control methods, including by selecting a destination in a live video feed, by selecting a destination on a plan view map, or by using a joystick or other peripheral device.
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公开(公告)号:US20150298317A1
公开(公告)日:2015-10-22
申请号:US14620051
申请日:2015-02-11
Applicant: IROBOT CORPORATION , INTOUCH HEALTH
Inventor: Yulun Wang , Charles S. Jordan , Tim Wright , Michael Chan , Marco Pinter , Kevin Hanrahan , Daniel Sanchez , James Ballantyne , Cody Herzog , Blair Whitney , Fuji Lai , Kelton Temby , Eben Christopher Rauhut , Justin H. Kearns , Cheuk Wah Wong , Timothy Sturtevant Farlow
Abstract: A telepresence robot may include a drive system, a control system, an imaging system, and a mapping module. The mapping module may access a plan view map of an area and tags associated with the area. In various embodiments, each tag may include tag coordinates and tag information, which may include a tag annotation. A tag identification system may identify tags within a predetermined range of the current position and the control system may execute an action based on an identified tag whose tag information comprises a telepresence robot action modifier. The telepresence robot may rotate an upper portion independent from a lower portion. A remote terminal may allow an operator to control the telepresence robot using any combination of control methods, including by selecting a destination in a live video feed, by selecting a destination on a plan view map, or by using a joystick or other peripheral device.
Abstract translation: 远程呈现机器人可以包括驱动系统,控制系统,成像系统和映射模块。 映射模块可以访问与该区域相关联的区域和标签的平面图。 在各种实施例中,每个标签可以包括标签坐标和标签信息,其可以包括标签注释。 标签识别系统可以识别当前位置的预定范围内的标签,并且控制系统可以基于识别的标签来执行动作,其标签信息包括远程呈现机器人动作修改器。 远程呈现机器人可以独立于下部旋转上部部分。 远程终端可以允许操作者使用控制方法的任何组合来控制远程呈现机器人,包括通过在平面视图中选择目的地,或者通过使用操纵杆或其它外围设备来选择实况视频馈送中的目的地。
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公开(公告)号:US12165776B2
公开(公告)日:2024-12-10
申请号:US18229570
申请日:2023-08-02
Applicant: Teladoc Health, Inc. , iRobot Corporation
Inventor: Charles S. Jordan , Andy Young , Mei Sheng Ng , Yair Lurie , Fuji Lai , Timothy C. Wright , Cody Herzog , Blair Whitney , Bill Rizzi , James Ballantyne , Yulun Wang , Cheuk Wah Wong , Justin H. Kearns , Orjeta Taka , Ramchandra Karandikar
IPC: H04N7/14 , G06F3/04847 , G06F3/04883 , G06Q10/10 , G16H40/63 , G16H40/67 , G16H80/00 , G16Z99/00 , G06Q50/22
Abstract: The present disclosure describes various aspects of remote presence interfaces (RPIs) for use on portable electronic devices (PEDs) to interface with remote presence devices. An RPI may allow a user to interact with a telepresence device, view a live video feed, provide navigational instructions, and/or otherwise interact with the telepresence device. The RPI may allow a user to manually, semi-autonomously, or autonomously control the movement of the telepresence device. One or more panels associated with a video feed, patient data, calendars, date, time, telemetry data, PED data, telepresence device data, healthcare facility information, healthcare practitioner information, menu tabs, settings controls, and/or other features may be utilized via the RPI.
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公开(公告)号:US11830618B2
公开(公告)日:2023-11-28
申请号:US17694348
申请日:2022-03-14
Applicant: InTouch Technologies, Inc. , iRobot Corporation
Inventor: Yulun Wang , Charles S. Jordan , Tim Wright , Michael Chan , Marco Pinter , Kevin Hanrahan , Daniel Sanchez , James Ballantyne , Cody Herzog , Blair Whitney , Fuji Lai , Kelton Temby , Eben Christopher Rauhut , Justin H. Kearns , Cheuk Wah Wong , Timothy Sturtevant Farlow
IPC: G05D1/00 , G16H40/67 , B25J11/00 , G05D1/02 , G06T11/00 , B25J9/16 , B25J5/00 , G06F3/0482 , G06F3/04842 , G06F3/04847 , G06T11/60 , G06T15/10
CPC classification number: G16H40/67 , B25J5/00 , B25J9/1664 , B25J9/1689 , B25J9/1697 , B25J11/009 , B25J11/0095 , G05D1/0038 , G05D1/024 , G05D1/0274 , G06F3/0482 , G06F3/04842 , G06F3/04847 , G06T11/00 , G06T11/60 , G06T15/10 , G05D2201/0206 , G06T2200/24 , Y10S901/01 , Y10S901/47
Abstract: A telepresence robot may include a drive system, a control system, an imaging system, and a mapping module. The mapping module may access a plan view map of an area and tags associated with the area. In various embodiments, each tag may include tag coordinates and tag information, which may include a tag annotation. A tag identification system may identify tags within a predetermined range of the current position and the control system may execute an action based on an identified tag whose tag information comprises a telepresence robot action modifier. The telepresence robot may rotate an upper portion independent from a lower portion. A remote terminal may allow an operator to control the telepresence robot using any combination of control methods, including by selecting a destination in a live video feed, by selecting a destination on a plan view map, or by using a joystick or other peripheral device.
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10.
公开(公告)号:US20230377761A1
公开(公告)日:2023-11-23
申请号:US18229570
申请日:2023-08-02
Applicant: Teladoc Health, Inc. , iRobot Corporation
Inventor: Charles S. Jordan , Andy Young , Mei Sheng Ng , Yair Lurie , Fuji Lai , Timothy C. Wright , Cody Herzog , Blair Whitney , Bill Rizzi , James Ballantyne , Yulun Wang , Cheuk Wah Wong , Justin H. Kearns , Orjeta Taka , Ramchandra Karandikar
IPC: G16H80/00 , H04N7/14 , G06Q10/10 , G06F3/04847 , G16Z99/00 , G06F3/04883 , G16H40/63 , G16H40/67
CPC classification number: G16H80/00 , H04N7/142 , H04N7/147 , G06Q10/10 , G06F3/04847 , G16Z99/00 , G06F3/04883 , G16H40/63 , G16H40/67 , G06Q50/22
Abstract: The present disclosure describes various aspects of remote presence interfaces (RPIs) for use on portable electronic devices (PEDs) to interface with remote presence devices. An RPI may allow a user to interact with a telepresence device, view a live video feed, provide navigational instructions, and/or otherwise interact with the telepresence device. The RPI may allow a user to manually, semi-autonomously, or autonomously control the movement of the telepresence device. One or more panels associated with a video feed, patient data, calendars, date, time, telemetry data, PED data, telepresence device data, healthcare facility information, healthcare practitioner information, menu tabs, settings controls, and/or other features may be utilized via the RPI.
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