Abstract:
Systems, methods, and related computer program products for controlling one or more HVAC systems using a distributed arrangement of wirelessly connected sensing microsystems are described. A plurality of wirelessly communicating sensing microsystems is provided, each sensing microsystem including a temperature sensor and a processor, at least one of the sensing microsystems being coupled to an HVAC unit for control thereof. The plurality of sensing microsystems is configured to jointly carry out at least one shared computational task associated with control of the HVAC unit. Each sensing microsystem includes a power management circuit configured to determine an amount of electrical power available for dedication to the at least one shared computational task. The at least one shared computational task is apportioned among respective ones of the plurality of sensing microsystems according to the amount of electrical power determined to be available for dedication thereto at each respective sensing microsystem.
Abstract:
Provided according to one or more embodiments is a thermostat having a housing, the housing including a forward-facing surface, the thermostat comprising a passive infrared (PIR) motion sensor disposed inside the housing for sensing occupancy in the vicinity of the thermostat. The PIR motion sensor has a radiation receiving surface and is able to detect the lateral movement of an occupant in front of the forward-facing surface of the housing. The thermostat further comprises a grille member having one or more openings and included along the forward-facing surface of the housing, the grille member being placed over the radiation receiving surface of the PIR motion sensor. The grille member is configured and dimensioned to visually conceal and protect the PIR motion sensor disposed inside the housing, the visual concealment promoting a visually pleasing quality of the thermostat, while at the same time permitting the PIR motion sensor to effectively detect the lateral movement of the occupant. In one embodiment, the grille member openings are slit-like openings oriented along a substantially horizontal direction.
Abstract:
A thermostat is described for controlling air temperature in a building. The time associated with causing the controlled air temperature to reach a target temperature is estimated and displayed to a user. Input from a user indicating the target temperature can be received and the estimating and displaying can be carried out in real time. The thermostat can be wall-mounted or the user input can be received and estimated time can be displayed using a remote device, for example that communicates wirelessly with other components of the HVAC system.
Abstract:
Content signaturing is provided by a display device comprising one or more source inputs, where each source input is configured to receive a content signal from a corresponding content source. The display device further comprises a content identification module to send sample information derived from each received content signal to a signature processor and to receive from the signature processor content information for each corresponding content source. The display device further comprises a user interface module to produce a unified user interface including a menu option for each content source, where each menu option includes content information identified via the content identification module for the corresponding content source. The display device further comprises a display to visually present the unified user interface.
Abstract:
A media discovery module (MDM) is described that facilitates a user's access to desired media items. The MDM presents a series of arrays of media items to the user. The user's selection within any array governs the composition of media items that are presented in a subsequent array. Different linking criteria can define the relationship among arrays. In one case, the MDM uses a time-based linking criterion, allowing a user to examine a media item at increasing levels of temporal granularity. In another case, the MDM uses a subject matter-based criterion, allowing a user to examine one or more media items at increasing levels of detail with respect to a subject matter index. The MDM can employ various tools to establish the relationship among media items, including image analysis tools, audio analysis tools, metadata analysis tools, and so on.
Abstract:
A system coupled to a display device, such as, for example, a television, having a screen. The system display media content on the screen. The system receives a command to display on the screen an electronic program guide. In response to the command, the system displays, concurrently with displaying the media content, a first dynamic video program within a first portion of the screen.
Abstract:
Video insertion is described for unavailable content. In an implementation, a method includes determining whether a portion of each of a plurality of content items is available for output by a client and generating an EPG for output by the client. The EPG includes a plurality of cells, each of which describes a respective one of the content items. The EPG is configured based on the determining such that when the portion of the respective content item is available, the EPG includes the portion when output, and otherwise the EPG includes a video insertion when output that does not include the portion.
Abstract:
An exemplary multi-axis television navigation system defines television navigation axes according to attributes of television programs. In one implementation, if a television program has an attribute defining an axis, then the exemplary system links a predefined database query associated with the axis to metadata for the television program. When launched, the predefined query returns a sequence of navigable television programs having the attribute that defines the axis.
Abstract:
The present disclosure relates to displaying full scale images with overlaid similar scaled images and a graphical user device in a display of a client device. The client device receives video streams of the full scale images and scaled images. The video streams are broadcast independent of one another, and a user of the client device may manipulate the format of the images of either or both streams, and/or place the scaled image on any portion of the full scaled image. The graphical user interface is placed so it does not obscure the scaled image. Alternatively a single video stream may be received by the client device. When a single video stream is received, the client device creates two video streams, one stream comprising full scale images and the other stream comprising scaled images. The full scale image is overlaid with the scaled image and the graphical user interface.
Abstract:
The current application is directed to an intelligent-thermostat-controlled environmental-conditioning system in which computational tasks and subcomponents with associated intelligent-thermostat functionalities are distributed to one or more of concealed and visible portions of one or more intelligent thermostats and, in certain implementations, to one or more intermediate boxes. The intelligent thermostats are interconnected to intermediate boxes by wired and/or wireless interfaces and intelligent thermostats intercommunicate with one another by wireless communications. Wireless communications include communications through a local router and an ISP, 3G and 4G wireless communications through a mobile service provider. Components of the intelligent-thermostat-controlled thermostat-controlled environmental-conditioning system may also be connected by wireless communications to remote computing facilities.