Abstract:
An electronic device with a display, processor(s), and memory displays a video monitoring user interface including a video feed from a camera located remotely from the client device in a first region and an event timeline in a second region, the event timeline including event indicators for motion events previously detected by the camera. The electronic device detects a user input selecting a portion of the event timeline, where the selected portion of the event timeline includes a subset of the event indicators. In response to the user input, the electronic device causes generation of a time-lapse video clip of the selected portion of the event timeline. The electronic device displays the time-lapse video clip, where motion events corresponding to the subset of the event indicators are played at a slower speed than the remainder of the selected portion of the event timeline.
Abstract:
A computing device with processor(s) and memory has a video monitoring user interface for displaying a video feed on a display of a client system. When events are detected in the video feed, an events feed is displayed in the video monitoring user interface to present the detected events. For each detected event, the events feed includes a visual representation of the video feed that was recorded at the time of the respective event, an event characteristic indicator indicating a characteristic of the respective event, and a time indicator indicating the time at which the event occurred. Then, in response to detecting the user selection of one of the events included in the events feed, the computing device records the recorded video feed that was recorded during the selected event is recorded, and displays the requested recorded video feed on the video monitoring user interface.
Abstract:
A computing system device with processor(s) and memory displays a video monitoring user interface on the display. The video monitoring user interface includes a first region for displaying a live video feed and/or a recorded video feed from the video camera and a second region for displaying a event timeline. The event timeline includes a plurality of equally spaced time indicators each indicating a specific time and a current video feed indicator indicating the temporal position of the video feed displayed in the first region. The temporal position includes a past time corresponding to the previously recorded video feed from the video camera and a current time corresponding to the live video feed from the video camera. The current video feed indicator is movable relative to the equally spaced time indicators to facilitate a change in the temporal position of the video feed displayed in the first region.
Abstract:
A computing system device with processor(s) and memory displays a video monitoring user interface on the display, the video monitoring user interface including a video feed from a camera located remotely from the client device in a first region of the video monitoring user interface and an event timeline in a second region of the video monitoring user interface, and the event timeline includes indicators corresponding to motion events previously detected by the camera. The computing system obtains an indication of a detected motion event and associates the detected motion event with a respective category. The computing system displays an indicator for the detected motion event on the event timeline with a display characteristic corresponding to the respective category.
Abstract:
An electronic device with a display, processor(s), and memory displays a video monitoring user interface on the display with a plurality of user interface elements associated one or more recognized activities. The electronic device detects a user input selecting a respective user interface element from the plurality of user interface elements in the video monitoring user interface, the respective user interface element being associated with a respective event category of the one or more recognized event categories. In response to detecting the user input, the electronic device displays an editing user interface for the respective event category on the display with a plurality of animated representations in a first region of the editing user interface, where the plurality of animated representations correspond to a plurality of previously captured motion events assigned to the respective event category.
Abstract:
The disclosed embodiments include a system for processing motion events. The system obtains a video stream from a camera, the video stream corresponding to a field of view of the camera and obtains identification of a spatial zone, the spatial zone corresponding to at least a portion of the field of view of the camera. For each motion event detected in the video stream: (1) the system determines whether the motion event involves the spatial zone; and (2), in accordance with a determination that the motion event involves the spatial zone, the system suppresses a first user notification for the motion event.
Abstract:
A computing system device with processor(s) and memory displays a video monitoring user interface on the display. The video monitoring user interface includes a first region for displaying a live video feed and/or a recorded video feed from the video camera and a second region for displaying a single event timeline. A current video feed indicator is movable on the timeline for indicating the temporal position of the video feed displayed in the first region. The temporal position includes a past time and a current time corresponding to the previously recorded video feed and the live video feed, respectively. While the current video feed indicator is moved to indicate the temporal position of the video feed displayed in the first region, video segments corresponding to the one or more events has a higher priority for display in the first region than video segments that do not contain any event.
Abstract:
A computing system obtains a respective motion vector for each of a series of motion event candidates in real-time as said each motion event candidate is detected in a live video stream. In response to receiving the respective motion vector for each of the series of motion event candidates, the computing system determines a spatial relationship between the respective motion vector of said each motion event candidate to one or more existing clusters established based on a plurality of previously processed motion vectors, and in accordance with a determination that the respective motion vector of a first motion event candidate of the series of motion event candidates falls within a respective range of at least a first existing cluster of the one or more existing clusters, assigns the first motion event candidate to at least a first event category associated with the first existing cluster.
Abstract:
A computing system obtains a respective motion vector for each of a series of motion event candidates in real-time as said each motion event candidate is detected in a live video stream. In response to receiving the respective motion vector for each of the series of motion event candidates, the computing system determines a spatial relationship between the respective motion vector of said each motion event candidate to one or more existing clusters established based on a plurality of previously processed motion vectors, and in accordance with a determination that the respective motion vector of a first motion event candidate of the series of motion event candidates falls within a respective range of at least a first existing cluster of the one or more existing clusters, assigns the first motion event candidate to at least a first event category associated with the first existing cluster.
Abstract:
An electronic device with a display, processor(s), and memory displays a video monitoring user interface including a video feed from a camera located remotely from the client device in a first region and an event timeline in a second region, the event timeline including event indicators for motion events previously detected by the camera. The electronic device detects a user input selecting a portion of the event timeline, where the selected portion of the event timeline includes a subset of the event indicators. In response to the user input, the electronic device causes generation of a time-lapse video clip of the selected portion of the event timeline. The electronic device displays the time-lapse video clip, where motion events corresponding to the subset of the event indicators are played at a slower speed than the remainder of the selected portion of the event timeline.