Abstract:
A wireless access device is configured to be electrically connected to a lighting device that communicates with a server. The wireless access device includes a connecting base. The connecting base includes an electrical connection interface, which is configured to be directly and electrically connected to the lighting device and to receive electric power from the lighting device. The wireless access device is configured to communicate with the server through the electrical connection interface and to receive the electric power from the lighting device through the electrical connection interface.
Abstract:
A street lamp controller includes: a switch configured to turn on or turn off a street lamp; a control module adapted to control the turning on and turning off of the switch; at least one detection module adapted to detect at least one data information relevant to operation of the street lamp; a data acquisition module connected to the at least one detection module and adapted to acquire the at least one data information detected by the at least one detection module; and a wireless transmission module communicating with a server and adapted to transmit the at least one data information acquired by the data acquisition module to the server and receive a control instruction sent from the server. The control module is communicated with the backend server via the wireless transmission module and is adapted to control the street lamp based on the control instruction received by the wireless transmission module. Thus, working state of the street lamp may be adjusted in real time based on the detected data information and intelligent control of the street lamp is improved.
Abstract:
A street light mounted device for providing integrated infrastructure facilities comprising a controller implementing street light control coupled to one or more ambient parameter sensors for effecting infrastructure facility functions and one or more communication units enabling data exchange with external such devices. A system comprising a network multiple interconnected such devices is capable of provide one or more infrastructural facilities such as women's security, air pollution monitoring and public transport vehicle tracking.
Abstract:
A lighting system which includes at least one controller which is configured to: obtain lighting logging information related to operation of a lighting system including a plurality of lamps from a lighting logging data portion; model lamp failures in the lighting system in accordance with the lighting logging information in the lighting system and maintenance cost, the model having a time range; predict failures in the lighting system at future times at least in part in accordance with the prediction model; form a graphical user interface (GUI) which includes a graphical depiction of the model; and render the GUI on a rendering device.
Abstract:
A method and system for controlling and monitoring street lights using optical link signaling through free space which does not require an FCC license for operation. The optical link signaling is accomplished in the space between street lights by using LEDs for both area lighting and optical signaling. A Street lighting system luminaire comprises a structural member such as a pole, a lamp comprising one or more LEDs.. and an optical receiver that receives optical signaling from one or more other luminaires in street lighting network. The modulator modulates the output of the lamp to launch data into the street lighting system for transport. The optical receiver and modulator enables strobing and flashing modes such as required to support emergency services.
Abstract:
This disclosure describes systems and techniques for managing streetlights. The subject matter included in this document is embodied in a method that includes receiving, at a computing device, information representative of a location and status of a streetlight included in a network of streetlights. The method also includes presenting a representation of the streetlight in a graphical user-interface in accordance with the received location and status information, and receiving information representing a selection of the streetlight for inclusion in a group of streetlights from the network. The method further includes initiating delivery of one or more control signals to the group of streetlights.
Abstract:
The invention relates to an electronic system (1) comprising at least one electronic functional unit (2), at least one receiver unit (5) for wirelessly transmitting signals, and at least one remote control unit (7) transmitting control signals to the electronic functional unit (2) by means of the receiving unit (5). The remote control unit (7) is thereby part of a conventional object (8, 9, 10) associated with a person.
Abstract:
A method and apparatus for controlling a streetlight is provided. GPS data is required from a GPS coupled to a process of the streetlight. A geographic location of the streetlight is determined from the received GPS data. A real local time is determined from the GPS data and a sunrise and sunset time associated with the geographic location can then be determined. The on and off state of one or more LED lighting modules of the streetlight can then be controlled upon the determined sunrise and sunset times.
Abstract:
Ein Elektronisches System (1) weist mindestens eine elektronischen funktionalen Einheit (2), mindestens eine Empfangseinheit (5) für drahtlose Signalübertragung, und mindestens eine Fernsteuerungseinheit (7) auf, die der elektronischen funktionalen Einheit (2) mittels der Empfangseinheit (5) Steuerungssignale übermittelt. Die Fernsteuerungseinheit (7) ist dabei Teil eines bestimmungsgemäß personenzugeordneten Gegenstandes (8, 9, 10).
Abstract:
The present invention relates to LED assemblies used to replace bulbs in streetlights or similar illumination sources. The LED assemblies are self contained and comprise modules for the function and control, (101), of the LED assembly. The LED assembly can include additional capability for sensors, (105), and for communication, (104), external to the LED assembly. The LED assembly can include advanced features that can be remotely activated. The LED assembly fits within the same volume as the bulb it is replacing and therefore does not require the removal or addition of other hardware during the replacement of the bulb with the LED assembly.