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公开(公告)号:US10085683B1
公开(公告)日:2018-10-02
申请号:US15675142
申请日:2017-08-11
Applicant: Wellen Sham
Inventor: Wellen Sham
Abstract: Embodiments can provide a real-time fatigue monitoring system for detecting and/or monitoring a fatigue condition of a driver of a driving apparatus. In some embodiments, the fatigue monitoring system can include a set of one or more sensors for detecting a physiological condition of the driver, a head movement detection device, one or more processing devices, and/or any other components. In some embodiments, the fatigue condition detection system may include a processing device configured to determine occurrence of a fatigue condition in response to the detection of a physiological condition of the driver is below a threshold while the driver's head movement is tilting downwards.
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公开(公告)号:US20180213184A1
公开(公告)日:2018-07-26
申请号:US15926486
申请日:2018-03-20
Applicant: Wellen Sham
Inventor: Wellen Sham
CPC classification number: H04N7/147 , B64C39/024 , B64C2201/127 , B64C2201/146 , B64D47/08 , G05D1/0094 , H04B7/18506 , H04L65/1069 , H04L65/403 , H04N5/23238 , H04N7/15
Abstract: Embodiments are provided for facilitating a wide-view video conference through a UAV network. For facilitating the wide-view video conference, UAVs can be employed to capture and transmit video data at locations of parties involved in the wide-view video conference. One or more UAVs in the UAV network can be instructed to locate the party's location and zoom-in onto the party's location. In some examples, the UAV(s) can be equipped with a 360 degree video camera such that a wide-area covered by the 360 degree video can be captured. The video data can be transmitted to a video data processing center in real-time or substantially in real-time. The video data transmission by the given UAV to the video data processing center can be through a UAV network. The video stream can be output at a location of a given party in the video conference.
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公开(公告)号:US09955115B2
公开(公告)日:2018-04-24
申请号:US15341813
申请日:2016-11-02
Applicant: Wellen Sham
Inventor: Wellen Sham
CPC classification number: H04N7/147 , B64C39/00 , B64C39/024 , B64C2201/127 , B64C2201/146 , B64D47/08 , G05D1/0094 , H04B7/18506 , H04L65/00 , H04N5/23238 , H04N7/15
Abstract: Embodiments are provided for facilitating a wide-view video conference through a UAV network. For facilitating the wide-view video conference, UAVs can be employed to capture and transmit video data at locations of parties involved in the wide-view video conference. One or more UAVs in the UAV network can be instructed to locate the party's location and zoom-in onto the party's location. In some examples, the UAV(s) can be equipped with a 360 degree video camera such that a wide-area covered by the 360 degree video can be captured. The video data can be transmitted to a video data processing center in real-time or substantially in real-time. The video data transmission by the given UAV to the video data processing center can be through a UAV network. The video stream can be output at a location of a given party in the video conference.
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公开(公告)号:US20180033298A1
公开(公告)日:2018-02-01
申请号:US15717483
申请日:2017-09-27
Applicant: Wellen Sham
Inventor: Wellen Sham
CPC classification number: G08G1/0175 , B64C39/024 , B64C2201/12 , B64D47/08 , G01S5/16 , G01S13/74 , G05D1/104 , G06F16/00 , G06K9/0063 , G08G1/012 , G08G1/04 , G08G5/0013 , G08G5/0069 , G08G5/0078 , G08G5/0095 , H04L65/1069 , H04L67/12 , H04W4/00 , H04W4/02
Abstract: Embodiments are provided for providing location positioning service for locating a transportation apparatus through a UAV network. A location center may be employed to receive a location service request for locating a specific transportation apparatus. After receiving such a request, the location center may inquire a location database for last known location of the requested transportation apparatus. Based on the last known location of the requested transportation apparatus, the location center may predict one or more areas in which the requested transportation apparatus may be currently in. Based on the prediction, the location center may be configured to generate one or more control instructions to one or more UAVs in the UAV network to locate the requested transportation apparatus in those areas.
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公开(公告)号:US20170195694A1
公开(公告)日:2017-07-06
申请号:US15341824
申请日:2016-11-02
Applicant: Wellen Sham
Inventor: Wellen Sham
IPC: H04N21/214 , H04N21/414 , B64C39/02 , H04N21/482
CPC classification number: H04N21/214 , B64C39/02 , B64C2201/122 , G06K9/00838 , G06Q30/0265 , H04B7/18504 , H04N21/41422 , H04N21/482
Abstract: Embodiments are provided for deliver multimedia information to a transportation apparatus through a UAV network. After the transportation apparatus enters an area, one or more UAVs may be configured to capture one or more images of an interior of the transportation apparatus. Geographical location of the transportation apparatus can be obtained. Image analysis may be employed to analyze the images to obtain passenger. Based on the geographical information regarding the transportation apparatus, and passenger, specific multimedia information can be determined for presentation to the passenger(s) in the transportation apparatus. The determined multimedia information may include media contents of interest to the passenger(s) and available in the geographical location the transportation apparatus is currently traveling in. The determined multimedia information can be transmitted to transportation apparatus for presentation to the passenger.
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公开(公告)号:US20170195048A1
公开(公告)日:2017-07-06
申请号:US15341797
申请日:2016-11-02
Applicant: Wellen Sham
Inventor: Wellen Sham
IPC: H04B10/112 , H04B7/155 , H04B7/185
CPC classification number: H04B10/1129 , H04B7/155 , H04B7/18506 , H04N7/22 , H04W84/005
Abstract: Embodiments are provided for facilitating an unmanned aerial vehicle (UAV) network. The UAV network in accordance with the disclosure can comprise multiple UAVs, ground processing stations, and/or any other components. A particular UAV in the network can carry payloads consisting of optical image sensors, processing devices, communication systems, and/or any other components. An individual UAV in the network can comprise photovoltaic cells capable of absorbing solar energy. Embodiments are provided for converting the solar energy to electricity for providing power to payloads aboard the UAV and as well as charging a battery aboard the UAV. In certain embodiments, the UAV can fly up to 65,000 feet and can cover as much as 500 km in range. One motivation of the present disclosure is to “outsource” some or entire information processing by an UAV to existing infrastructure, such as the ground processing station.
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27.
公开(公告)号:US20070162393A1
公开(公告)日:2007-07-12
申请号:US11315168
申请日:2005-12-23
Applicant: Wellen Sham
Inventor: Wellen Sham
IPC: G06Q99/00
CPC classification number: G11B20/00 , G11B20/00086
Abstract: The present invention relates to an apparatus for preventing unauthorized copying that comprises a casing, an optical storage device, a control center installed in the casing and coupled to the optical storage device, and an input/output port installed in the casing and exposed from the casing and coupled to an electronic device, such that if a user places a medium into the optical storage device, the control center will determine whether or not the medium is a read-once medium; if yes, then the content of the medium will be copied to the control center. In the meantime, the electronic device is examined to check whether or not the electronic device is a copy permit user; if yes, then the control center will copy the content of the medium to the electronic device. The present invention also provides a method for preventing unauthorized copying.
Abstract translation: 本发明涉及一种防止非法复制的装置,包括壳体,光学存储装置,安装在壳体中并耦合到光学存储装置的控制中心,以及安装在壳体中并从外部暴露的输入/输出端口 壳体并耦合到电子设备,使得如果用户将介质放置在光存储设备中,则控制中心将确定介质是否是一次读介质; 如果是,则介质的内容将被复制到控制中心。 同时检查电子设备,检查电子设备是否为复制许可用户; 如果是,则控制中心将将介质的内容复制到电子设备。 本发明还提供一种防止未授权复制的方法。
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公开(公告)号:US10668819B2
公开(公告)日:2020-06-02
申请号:US15601688
申请日:2017-05-22
Applicant: Wellen Sham
Inventor: Wellen Sham
Abstract: Embodiments facilitate wireless charging of the EV by using a charging method that employs higher voltages with higher power transmission rate than induction wireless charging. A few charging methods satisfying such criteria are provided: including microwave and laser charging. Components may be designed to facilitate charging of EVs using such methods. For example, components may be designed to create a vacuum between a power transmitter fixed to parking spot and a power receiver fixed to the EV. The microwave or laser may be transmitted through this vacuum.
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公开(公告)号:US20200016985A1
公开(公告)日:2020-01-16
申请号:US16035707
申请日:2018-07-16
Applicant: Wellen Sham
Inventor: Wellen Sham
Abstract: Embodiments facilitate handling of charging parking interactions between electric vehicles (EVs) and parking structures having charging parking spaces. For example, a parking deck has a large number of parking spaces on multiple levels, and is accessible by one or more entrances. Some of the parking spaces in the parking deck are charging parking spaces that each include a EV charging subsystem in communication with a charging parking controller. Upon entering the parking deck, an EV can request charging parking (charging while parking) during a charging parking timeframe. The charging parking controller can compute an interaction schedule of EV parking and/or charging resources of the parking structure according to the charging parking timeframe and can facilitate automatic or manual execution of the scheduled interaction between the requesting EV and the parking structure.
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公开(公告)号:US20190047497A1
公开(公告)日:2019-02-14
申请号:US15675108
申请日:2017-08-11
Applicant: Wellen Sham
Inventor: Wellen Sham
IPC: B60R16/037 , B60Q3/80 , A61B5/18 , A61B5/00
Abstract: Embodiments can provide a real-time system that can automatically adjust various components within a driving apparatus automatically in response to certain conditions being detected. The real-time system may be configured to control these components in response to detection of certain conditions, which may include external conditions and/or internal conditions. In some embodiments, a user of the driving apparatus may be facilitated to provide his/her personal settings to configure the real-time system. In those embodiments, an interface may be provided to the user to instruct the real-time system to adjust one or more components within the driving apparatus in accordance with the user provided personal settings in response to one or more specific conditions being detected.
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