Abstract:
A method and a device for determining what commands can be used to operate a receiving device (110) when a user operates a control device (105). After such a determination is made, a first command is transmitted to the receiving device from the control device (105) over a first communication interface and a second command is transmitted to the receiving device (110) over 5 a second communication interface. The communication interface that is selected depends on whether the control device can control the operation of the receiving device (110) with such a command directly or whether an intervening device (130/140) is required to translate the command from a first format to a second format.
Abstract:
A system and a method for remote household appliance control based on a mobile communication network are provided. The system includes: a remote control access device and a remote control executor. The method includes: saving a first corresponding relationship between an infrared code type and identification information of a corresponding controlled household appliance and an operation act; and after receiving an unstructured supplementary service data (USSD) session request from a mobile terminal, sending a locally stored USSD menu to the mobile terminal and starting a USSD session with the mobile terminal; after receiving a USSD session content related to performing an operation act on a household appliance from the mobile terminal, transmitting an infrared control signal according to the corresponding infrared code type searched out according to the first corresponding relationship. The remote control of household appliance is realized conveniently by combining USSD and infrared remote control technologies.
Abstract:
According to one general aspect, a method according to the present application includes remotely controlling wirelessly networked devices via a mobile unit. The method includes receiving, at a mobile unit and from a user, an input, analyzing the input to identify a networked device associated with the input, determining whether the networked device is presently accessible via a wireless network; determining whether to establish a connection with the networked device based on whether the networked device is determined to be presently accessible via the wireless network. The method also includes establishing a connection with the networked device if it is determined that the networked device is accessible via the wireless network and enabling the user to interact with the networked device through the mobile unit to remotely control the networked device.
Abstract:
A communication device for implementing a system for remotely managing at least one item of equipment by a management application able to communicate via a telecommunication network with an application embedded in the item of equipment. The device includes a first communication interface allowing implementation of a local communication link with the embedded application, a second communication interface allowing access to the telecommunication network, and a communication management device configured to communicate with the embedded application via the first interface and with the management application via the second interface, serving as communication relay between the embedded application and the management application, and configured to transmit to one of the two applications a message received from the other application, according to predefined transfer rules and as a function of at least one parameter received with the message.
Abstract:
A method and apparatus for third party control of a device have been disclosed. By utilizing a third party to control a device, view and control of a device may be separated.
Abstract:
An intermediary between a remote control device and a remotely controllable device implements identification and/or authentication. The intermediary is, e.g., a node or set of nodes within a head end of a cable network service provider. A remote control device at a customer premise sends a command intended to control a remotely controllably device which is also located at the same customer premise. The customer premise includes a network interface, e.g., a cable modem, which has associated identification information. The command and the associated network interface identification information are communicated to the intermediary, e.g., via a cable modem. The intermediary accesses a subscriber record corresponding to the location based on the network interface identification information. The intermediary identifies the device to be controlled, e.g., a particular set top box and/or authenticates the remote control device. A command is sent via the network to the device to be controlled.
Abstract:
Provided is a system and method that may perform various operations on a website according to combinations of buttons on a remote controller. A system for supporting a remote controller may include: a profile storage unit to store a plurality of profiles containing functions of the remote controller and information associated with the functions of the remote controller; a receiver to receive an input signal from the remote controller, and to interpret an event of the input signal based on a profile corresponding to the remote controller; and a presentation unit to access a web server, to transform, to a predetermined behavior, at least one event interpreted by the receiver, and to request the web server for an operation corresponding to the behavior.
Abstract:
An Optimized Streetlight Operation (OSLO) system that utilizes a cellular network overlay to broadcast control commands issued by a centralized Streetlight Operation Center (SOC) to RF control modules mounted on each streetlight pole. The cellular network may be a CDMA network utilizing Short Message Service-Broadcast (SMS-B) messaging. When a Mobile Telephone Exchange/Mobile Switching Center (MTX/MSC) receives a SOC control command from the SOC, the MTX/MSC causes a plurality of BSs to broadcast the SOC command in the network operating area a defined number of times. Each RF control module that successfully receives the broadcast SOC control command, performs actions to control operation of the module's associated streetlight, and transmits a confirmation message to the module's serving BS indicating the SOC command was received. The modules are configured to stagger transmission of the confirmation messages over a period of time to reduce a peak load imposed on the cellular network.
Abstract:
A video device and a remote control function for a video device that can be carried out over a remote device such as a phone. The phone connects to the video device over a network.
Abstract:
A method for remotely controlling a device by a fixed transceiver station in a radio cell of a cellular mobile telecommunications network, the cellular mobile telecommunications network being at least one of a Long Term Evolution (LTE) network or a Universal Mobile Telecommunications System (UMTS) Terrestrial Radio Access Network (UTRAN), includes: transmitting to the device on a control channel, by the fixed transceiver station, control information specific to the radio cell; wherein the control channel is a channel or a portion of a channel used to broadcast location information; wherein the control information comprises an identification part for specifying the device; and wherein the device is not required to have a registration with the network.