Celestial scheduling of a smart streetlight controller
A method to control a streetlight with a smart streetlight controller, includes isolating a terrestrial position of the smart streetlight controller, isolating a specific date, and calculating, at the smart streetlight controller, a time value associated with an event, such as sunrise or sunset, that is defined by a position of the sun on the specific date. The method further includes generating a streetlight control time by applying an offset to the time value, and executing a streetlight control command, such as a command to turn the streetlight on or off, at the streetlight control time.
1. A luminaire-mountable streetlight controller comprising:
a powerline interface having primary contacts arranged to receive a plurality of power transmission signals from a luminaire connector to which the primary contacts are electromechanically coupled and secondary contacts arranged to communicate illumination commands to a controllable light source of a luminaire;
a location positioning device;
a processor arranged to receive terrestrial position information from the location positioning device; and
a memory coupled to the processor, the memory storing instructions which, when executed by the processor, cause the processor to:
isolate, via the terrestrial position information, a terrestrial position of the location positioning device;
isolate a specific date;
calculate a time value associated with an event defined by a position of the sun on the specific date at the terrestrial position;
generate a streetlight control time by applying an offset to the time value; and
cause the illumination command to be presented to the secondary contacts at the streetlight control time.
2. The streetlight controller of claim 1 , wherein one or more of the illumination commands directs the controllable light source to flash.
3. The streetlight controller of claim 1 , wherein the location positioning device includes a global positioning system (GPS) device, and the terrestrial position includes a latitude value and a longitude value.
4. The streetlight controller of claim 1 , wherein one or more of the illumination commands directs the controllable light source to either turn on or turn off.
5. The streetlight controller of claim 1 , wherein the illumination commands directs the controllable light source to dim to a specific light output.
6. The streetlight controller of claim 1 , wherein the specific date is derived from the terrestrial position information.
7. A streetlight system comprising:
a streetlight support structure;
a luminaire supported by the streetlight support structure and including a controllable light source and a socket connector located on a top side of the luminaire;
a streetlight controller electromechanically coupled to the luminaire, the streetlight controller including:
primary contacts inserted into the socket connector of the luminaire, the primary contacts receiving power signals from the luminaire,
secondary contacts arranged to communicate streetlight control commands to controllable light source,
a location positioning device;
a processor arranged to receive terrestrial position information from the location positioning device; and
a memory coupled to the processor, the memory storing instructions which, when executed by the processor, cause the processor to:
isolate, via the terrestrial position information, a terrestrial position of the location positioning device;
isolate a specific date;
calculate a time value associated with an event defined by a position of the sun on the specific date at the terrestrial position;
generate a streetlight control time by applying an offset to the time value; and
cause the streetlight control commands to be presented to the secondary contacts at the streetlight control time.
8. The streetlight system of claim 7 , wherein one or more of the streetlight control commands directs the controllable light source to flash.
9. The streetlight system of claim 7 , wherein the location positioning device includes a global positioning system (GPS) device, and the terrestrial position includes a latitude value and a longitude value.
10. The streetlight system of claim 7 , wherein one or more of the streetlight control commands directs the controllable light source to either turn on or turn off.
11. The streetlight system of claim 7 , wherein one or more of the streetlight control commands directs the controllable light source to dim to a specific light output.
12. The streetlight system of claim 7 , wherein the specific date is derived from the terrestrial position information.