Abstract:
Embodiments are disclosed that relate to translating remote control commands. One embodiment provides a remote control command translation device comprising a network receiver configured to receive one or more metacommands via a first protocol and a transmitter configured to output one or more translated commands via a unidirectional protocol, wherein the unidirectional protocol is different than the first protocol. The remote control command translation device further comprises a logic subsystem configured to execute instructions and a data-holding subsystem comprising mass storage containing translation information and instructions executable by the logic subsystem to receive, via the network receiver, a metacommand from a remote device via the first protocol, to translate the metacommand into a translated command based on the translation information, and to transmit, via the transmitter, the translated command corresponding to the metacommand via the unidirectional protocol.
Abstract:
We describe a solar photovoltaic monitoring system for monitoring and controlling a solar photovoltaic inverter, comprising: a wireless transceiver coupled to a solar photovoltaic inverter, the inverter comprising a device monitor for monitoring and controlling the inverter, wherein the monitoring comprises generating monitoring data defining a status of the system and transmitting the data using the transceiver coupled to the inverter; a wireless repeater for receiving data from the inverter and retransmitting the data; a transceiver coupled to a gateway capable of communicating the retransmitted data received to a monitoring station, the gateway transmitting control data received from the monitoring station; wherein the repeater receives control data from the gateway and retransmits data to the inverter; and wherein the controlling in the inverter comprises receiving the retransmitted control data from the transceiver coupled to the inverter and controlling the inverter dependent on the data.
Abstract:
A scalable apparatus and a network environment dynamically changes the light transparency of a single SPD device, a small number of SPD devices or thousands of such SPD devices installed in windows in automobiles, aircraft, trains, marine vehicles, residential homes, commercial buildings and skyscrapers. A scalable apparatus and a network environment dynamically changes the light transparency of a single SPD device or thousands of such SPD devices in the presentation of a multi-media special effects display. Textual messages, graphical images and simulated motion effects are driven. Such scalable apparatus being capable of driving and using several operational parameters of SPD materials such as frequency range, AC voltage and temperature so as to provide fine control of SPD characteristics such as switching speed and power consumption.
Abstract:
A system and method for wirelessly transmitting both real-time data streams and remote control signals is described. A first transceiver can be used for detecting remote control signals associated with an end device (e.g. a television), transforming these remote control signals into wireless signals, and transmitting the wireless signals. A second transceiver can be used for receiving the wireless signals and transforming the wireless signals into the recreated remote control signals. The recreated remote control signals can then be sent to a source device (e.g. a DVD player). Because wireless signals are used (instead of infrared (IR) signals, for example), the source device can be outside the line of sight of the end device and still respond to the remote control signals.
Abstract:
The present invention is generally directed to a system for monitoring a variety of environmental and/or other conditions within a defined remotely located region. Such a system may be configured to monitor utility meters in a defined area. The system is implemented by using a plurality of wireless transmitters, wherein each wireless transmitter is integrated into a sensor adapted to monitor a particular data input. The system also includes a plurality of transceivers that are dispersed throughout the region at defined locations. The system uses a local gateway to translate and transfer information from the transmitters to a dedicated computer on a network. The dedicated computer, collects, compiles, and stores the data for retrieval upon client demand across the network. The computer further includes means for evaluating the received information and identifying an appropriate control signal, the system further including means for applying the control signal at a designated actuator.
Abstract:
An appurtenant remote control adapter device suited for application with portable remote controllers commonly used with entertainment equipment including television receptors. The proxy adaptor is configured to intercept a sequence of wireless command signals emitted by the remote control. The intercepted command signals are adapted for temporal storage in a memory. A singular “SEND” command button may be subsequently actuated by a user to urge discharge of the temporarily stored wireless command signal from the memory for forthright translation to a remotely controlled apparatus as a usually singular packetized data burst of wireless signal. The adapter allows a user to leisurely enter individual keystrokes composing the command signal sequence and only then necessarily aim the adapter towards the remotely controlled apparatus with a concurrent singular actuation of the SEND key-button to translate the wireless signal to command the remotely controlled apparatus.
Abstract:
A communication system is provided which implements more comfortable user operation where an electric apparatus which is remotely controlled by a remote controller (remote control apparatus) carries out processing operation in which an information recording medium is used. Remote controller data, remote controller controlling commands and reader/writer commands are placed into and transmitted by command data cmdDATA in packets of the same format. Further, reader/writer command data rwDATA and a reader/writer communication footer (parity for an error check and so forth) rwFT which have a longer data length are divided and placed divisionally into and transmitted together with the command data cmdDATA in communication packets. The transmitted data are received and merged.
Abstract:
A scalable apparatus and a network environment dynamically changes the light transparency of a single SPD device, a small number of SPD devices or thousands of such SPD devices installed in windows in automobiles, aircraft, trains, marine vehicles, residential homes, commercial buildings and skyscrapers. A scalable apparatus and a network environment dynamically changes the light transparency of a single SPD device or thousands of such SPD devices in the presentation of a multi-media special effects display. Textual messages, graphical images and simulated motion effects are driven. Such scalable apparatus being capable of driving and using several operational parameters of SPD materials such as frequency range, AC voltage and temperature so as to provide fine control of SPD characteristics such as switching speed and power consumption.
Abstract:
An electronic device (1) which is remote controllable has a conversion table storing unit (31) for holding a conversion table for converting an incompatible control signal that does not support the electronic device (1) into a compatible control signal that supports the electronic device (1), an input receiving unit (32) for receiving the input of the incompatible control signal based on the output of an incompatible remote control (4) that does not output the compatible control signal, a conversion unit (33) for converting the incompatible control signal the input of which has been received by the input receiving unit (32) into the compatible control signal according to the conversion table, and a control unit (34) for controlling the electronic device (1) according to the compatible control signal converted by the conversion unit (33).
Abstract:
A system for mounting to a vehicle including a user interface element and for controlling a transmitter device configured to send an expected transmission to receiving device is provided. The system includes a transceiver. The system further includes an interface for receiving a first signal from the user interface element. The system yet further includes a processor configured to establish a bi-directional data communication link between the transceiver and the transmitter device. The processor is further configured to cause the transceiver to send a second signal to the transmitter device via the bi-directional data communication link based upon the first signal received at the interface. The processor is yet further configured to format the second signal so that the transmitter device will send the expected transmission to the receiving device.