Abstract:
A luminaire includes a body case and a lighting device mounted on the body case. The lighting device includes: a power generator which generates electric power upon being pressed when the lighting device having a light source is mounted onto the body case; a wireless module which performs wireless communication; and a controller connected to the power generator. When the lighting device is mounted onto the body case, the controller transmits identification information by which the lighting device is identified, via the wireless module using the electric power generated by the power generator.
Abstract:
A lighting device includes: a metal casing; a power supply circuit which is disposed in the metal casing and supplies power to a light source; an antenna disposed in the metal casing; a radio circuit which is disposed in the metal casing and receives a radio signal via the antenna; a control circuit which controls the power supply circuit according to the radio signal received by the radio circuit; at least one opening that communicatively connects an inside and an outside of the metal casing; and a line which is inserted in the at least one opening and insulated from the metal casing, the line being conductive and having open ends.
Abstract:
Illumination control system 1 includes illumination apparatuses 10 and control apparatus 20 for controlling them. Each illumination apparatus 10 includes: communication unit 101 that performs wireless communication with control apparatus 20; and controller 102 that receives from control apparatus 20 instruction on operation and causes illumination apparatus 10 to perform the instructed operation. Control apparatus 20 includes: communication unit 201 that establishes connection to perform wireless communication with illumination apparatuses 10; display unit 202 that displays an icon representing target illumination apparatus 10; second controller 203 that transmits instruction on operation of target illumination apparatus 10 to enable a user to visually confirm target illumination apparatus 10; receiver 204 that receives from the user an identifier identifying a group of target illumination apparatus 10 in association with the icon; and registration unit 205 that registers group information indicating the identified group and connection information in association with each other.
Abstract:
A luminaire is provided. The luminaire includes a luminaire body and a first wireless communication device. The first wireless communication device receives a first control signal wirelessly transmitted from an outside of the luminaire body, and wirelessly transmits a second control signal in response to the first control signal. The luminaire body includes: a light source; a second wireless communication device that receives the second control signal; a light emission control circuit that is electrically connected to the second wireless communication device and controls a light emission state of the light source according to the second control signal; and a case that, with or without a cover, houses the second wireless communication device and the light emission control circuit. The first wireless communication device is attached to the luminaire body.
Abstract:
A lighting driving device is to be installed on a part of a structure. The lighting driving device includes: a metallic casing including a slit through which radio waves pass; a communication circuit which is housed in the metallic casing and performs wireless communication; a driving circuit which is housed in the metallic casing and supplies power to a light emitter; and an insulator which is disposed on the metallic casing and spaces apart the slit from the part of the structure.
Abstract:
A luminaire includes: a light-emitting module; a base having a front surface on which the light-emitting module is disposed; a cover which is translucent and covers the light-emitting module: a controller which is disposed on a back surface of the base and controls the light-emitting module; a first antenna which transmits and receives a first polarized wave; and a control wire which connects the controller and the first antenna. The control wire includes an exposed portion which is a portion of the control wire in a longitudinal direction of the control wire and which is disposed between the base and the cover to transmit and receive a second polarized wave that differs from the first polarized wave in a polarization direction.
Abstract:
A lighting system includes a wireless controller, luminaires each configured to communicating with the wireless controller, and a storage. The wireless controller classifies a first luminaire among the luminaires, which is able to communicate using first transmission power, into a first group and stores the first luminaire on the storage, and classifies a second luminaire among the luminaires, which is able to communicate using second transmission power greater than the first transmission power, into a second group and stores the second luminaire on the storage.
Abstract:
Luminaires in a lighting system have mutually different addresses. A setting device includes a communication unit that transmits an address request signal at a first transmission power level and a control unit that determines whether a total number of the addresses transmitted from one or more of the luminaires in response to receiving the address request signal is within a target range. The control unit instructs the communication unit to transmit the address request signal at a transmission power level different from the first transmission power level when the total number of the addresses is outside the target range, and executes pairing of the one or more of the luminaires that responded to the address request signal with a wireless controller when the total number of the addresses is within the target range.
Abstract:
A lighting control device includes: a first wireless communicator that wirelessly communicates with a lamp; first memory that stores identification information identifying the lighting control device; a first controller that transmits a control command for controlling the lamp to the lamp via the first wireless communicator; an operator interface suspended under its own weight; and a power generator that is connected to the operator interface, generates power from mechanical energy produced by the operator interface being moved in a predetermined direction, and supplies the power to the first controller, the first memory, and the first wireless communicator. When the operator interface is moved and the first controller receives the power, the first controller reads the identification information from the first memory, transmits the identification information and the control command to the lamp via the first wireless communicator, and controls the lamp.
Abstract:
In an information presenting method, visible light including unique information, which is unique to a passenger carrier and specific to a location of the carrier, is emitted. The light is received in the passenger space and the unique information is obtained. One or more stop points at which the carrier is currently stopped or is to subsequently stop are obtained. The one or more stop points are derived from the unique information. An alighting point at which a user is to alight from the carrier is obtained. Whether the alighting point is included in the one or more stop points is determined. Alighting information notifying the user to alight from the bus is presented to the user via a terminal, when the alighting point is determined to be included in the one or more stop points.