Abstract:
Embodiments of the present invention provide a remote electrical tilt unit, a base station, and a method for managing a remote electrical tilt antenna. The method includes: receiving, by the remote electrical tilt unit, permission configuration information sent by a first base station through a group of AISG ports of the remote control unit; configuring management permission of the first base station on the remote electrical tilt unit according to the permission configuration information, where the management permission includes at least control permission and query permission, and control permission on the remote electrical tilt unit can be allocated to only one base station. In this way, multiple base stations jointly manage a remote electrical tilt unit in a remote electrical tilt antenna, and a problem that it is difficult to locate and troubleshoot a fault when configuration of the remote electrical tilt unit is incorrect is resolved.
Abstract:
There is provided a wireless battery system reconcilable with unsuccessful communication due to interference from an external wireless instrument or radio wave reflection or shielding under a surrounding physical environment. A wireless battery system allocates a cell controller to a cell, detects a cell state, and wirelessly communicates a cell state detected by a cell controller to a battery controller. During the wireless communication, the battery controller transmits a beacon to the cell controller and specifies a duration for radio wave environment measurement and a frequency to be measured as a condition. The cell controller performs radio wave environment measurement under the specified condition and then returns a measurement result along with the cell state to the battery controller.
Abstract:
A system includes a processor configured to wirelessly receive a vehicle system command from a remote source over a first communication channel. The processor is also configured to open a second communication channel with an apparent command-originating source, responsive to receiving the command. The processor is further configured to request, over the second communication channel, verification that the command originated from the apparent command-originating source and execute the command responsive to command-origin verification.
Abstract:
The present invention provides an adjustable bed handheld remote control that may include a handheld housing, a touch sensor on a front face of the handheld housing, a transmitter and the like. The touch sensor may be presented in a slider form and may be adapted to facilitate a user in adjusting a frame position of an adjustable bed. The transmitter may be electrically coupled to a processor and may receive input from the touch sensor, for communication control signals to the adjustable bed in accordance with the input received from the touch sensor.
Abstract:
A wireless pairing system includes a remote controller and at least one display device. The remote controller includes a first processing unit, an input unit and a first wireless communication unit. The input unit includes a broadcast request key and a plurality of input keys. The display device includes a second processing unit, a display unit and a second wireless communication unit. The display device has an identification code. When the broadcast request key is triggered, the first processing unit sends out a broadcast request signal through the first wireless communication unit. When the second processing unit receives the broadcast request signal through the second wireless communication unit, the second processing unit controls the display unit to display the identification code. When the input keys are operated to input the identification code of the display device, the remote controller and the display device are paired with each other.
Abstract:
A controlled device generates an authentication random number. A control device accepts input of a random number from an input device. The controlled device verifies if the displayed authentication random number and the random number transferred from the control device are identical to transfer a public key of the controlled device to the control device. The controlled device generates a token. The control device encrypts the token with the public key of the controlled device. The controlled device decrypts the token and verifies if the token transferred from the control device and the generated token are identical to generate a session key. The control device stores the session key into the storage device. The control device controlling the controlled device by encrypted communication using the session key.
Abstract:
In embodiments, apparatuses, methods and storage media are described that are associated with remote control of media devices. A remote control and a content player may be configured to facilitate a secured pairing process. The remote control may be configured to send non-secured signals (such as through an IR transmitter) as well as send and receive secured signals (such as via an RF transceiver). The remote control may non-securely broadcast an uncompressed identifier of itself. Then, in response to being turned on or asked to pair, the remote control may send a pairing request to the player that includes a compressed identifier. The player may then identify the remote control based on the compressed identifier and the previously-broadcast uncompressed identifier and the remote control and player may then perform a pairing process without requiring additional action on the part of a user. Other embodiments may be described and/or claimed.
Abstract:
In embodiments, apparatuses, methods and storage media are described that are associated with remote control of media devices. In embodiments, a remote control and a content player may be configured to facilitate a secured pairing process. The remote control may be configured to send non-secured signals (such as through an IR transmitter) as well as send and receive secured signals (such as via Bluetooth™ using an RF transceiver). The remote control, in response to being turned on or asked to pair, may send a pairing request to the player that includes an identifier for the remote control and which identifies the remote control as an eligible pairing device without requiring separate entry of a security code by a user. The remote control and player may then perform a pairing process without requiring additional action on the part of a user. Other embodiments may be described and/or claimed.
Abstract:
A method is disclosed for remote monitoring of a premises, comprising the steps of operatively coupling a geographically remote client to a security system server which is capable of authenticating a user of the remote client, operatively coupling the remote client to a security gateway which is capable of managing the monitoring of the premises, activating a signal at the premises for notifying an occupant at the premises that remote monitoring is occurring, and transferring information between the security gateway and the remote client. The transfer of information between the security gateway and the remote client is controlled by the user of the remote client. The security gateway may be operably coupled to at least one camera at the premises and to at least one audio station at the premises.
Abstract:
A radio remote control according to the invention is used to control at least one first vehicle function that is relevant for functional safety, and also used to control further vehicle functions not related to functional safety. The remote control comprises input means for the user selection of vehicle functions and for obtaining a user input corresponding to the selected vehicle function. The remote control according to the invention additionally comprises a security device for safeguarding the first vehicle function. The security device itself comprises a security input means, which must be actuated for the first vehicle function to be carried out. The security device moreover comprises a security circuit that is coupled to the security input means and includes security information. The remote control is configured in such a way that, in the case of a user input that is associated with the first vehicle function, the security information is only used to generate transmission data that causes the first vehicle function to be carried out if the security input means was actuated.