Automatic lighting system of the transversal marking for crossing of the pedestrian walkways
10550532 ยท 2020-02-04
Inventors
Cpc classification
F21V23/0485
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V31/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/0464
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S8/032
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S9/032
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V3/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/0471
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S8/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S9/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V3/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V31/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention refers to a lighting automatic system for pedestrian crossing and to a method of making the markings for the pedestrian crossings. The system comprises several lighting units sank in the asphalt made of a box (2)welded by a netting (11) fixed on the bottom of the hole made for the mounting of the lighting units, the box (2) having an external frame (5) and being closed with a detachable cap (4) equipped with a window in which a protection frame is fixed (6) of a piece made of safety glass (8), the cap representing the transversal marking of the pedestrian crossing, in the interior of the box (2) being a LED lighting unit (1) powered by a net or a photovoltaic plant (14) mounted on a pile (17) in the proximity of the pedestrian crossing, on the surface of the cap (4) being poured bitumen subsequently painted with reflecting painting, so that the glass (8) in the mounted state of the system, to be at the level of the roadway (10).
Claims
1. An automatic lighting system of transversal markings of a pedestrian crossings comprising several lighting devices sunk in asphalt each of them comprising a box being closed with a detachable lid having an external frame and being equipped with a window which is fixed by a protection frame, the window being made of tempered glass, the lid representing the transversal marking of the pedestrian crossing, the box comprising in the interior a LED lighting unit powdered by an electrical grid or a photovoltaic plant mounted on a supporting pole in the proximity of the pedestrian crossing, on the surface of the lid being poured bitumen subsequently painted with reflecting paint, so that the glass in the mounted state of the system, to be at the level of a roadway, on the supporting pole of the photovoltaic plant being installed a twilight sensor which will switch on some electric circuits of the LED lighting unit when reaching a certain minimum intensity of natural light.
2. The automatic lighting system of the transversal markings of the pedestrian crossings, according to claim 1, wherein at the longitudinal extremities of the pedestrian crossing made of the lighting devices sunk in asphalt, in the zone of the sidewalks, several laser sensors are provided having the role to trigger automatically the LED lighting unit the moment when a pedestrian enters the range of the mentioned sensors.
3. The automatic lighting system of the transversal markings of the pedestrian crossings, according to claim 1, wherein the longitudinal extremities of the pedestrian crossing made of lighting devices sunk in the asphalt, in the zone of the sidewalks, several pressure sensors are provided, which have the role to automatically trigger the LED lighting unit the moment when a pedestrian applied pressure on them.
4. The automatic lighting system of the transversal markings of the pedestrian crossings, according to claim 1, wherein on the supporting pole of the photovoltaic plant, an electric control panel of the LED lighting unit and of the cells of the photovoltaic plant is provided.
5. The automatic lighting system of the transversal markings of the pedestrian crossings according to claim 1, wherein the tempered glass is sandblasted in order to prevent the reflection of light during shiny days, and wherein between the protection frame and the piece of sandblasted tempered glass a belt of silicone putty is put to isolate the lighting device against water seepages.
6. The automatic lighting system of the transversal markings of the pedestrian crossings, according to claim 1, wherein the lid of the lighting device is provided with closing systems to allow the maintenance operations and to prevent unauthorized access inside the lighting device.
7. A process for obtaining the automatic lighting system of the transversal markings of the pedestrian crossings according to claim 1, comprising the following steps: stripping the asphalt out on all length and width of the old pedestrian crossing, fixing on the bottom of the formed hole a metallic net on which the boxes of the lighting devices of the automatic lighting system are welded, installing the LED lighting unit and coupling it to an electric control panel mounted on a pole near the pedestrian crossing, mounting, with the opportunity of detaching, the lid, of the LED lighting unit equipped with a central window made of tempered glass and fixed by a protection frame the lid representing the transversal marking of the pedestrian crossing, pouring bitumen on the surface of the lid of the LED lighting unit, between its exterior frame and the protection frame and subsequently painting with reflecting paint, so that the tempered glass in the mounted state of the system, to be at the level of the roadway, installing a twilight sensor which will switch on the electric circuits of the LED lighting unit when reaching a certain minimum intensity of the natural light.
8. The process according to claim 7, wherein the process supplementary comprises the step of mounting, at the longitudinal extremities of the pedestrian crossing made of lighting devices sunk in asphalt, in the area of the sidewalks, several laser sensors that have the role of triggering the LED lighting unit automatically when a pedestrian enters the range of action of the above mentioned sensors.
9. The process according to claim 7, wherein the process supplementary comprises the step of mounting, at the longitudinal extremities of the pedestrian crossing made of lighting devices sunk in asphalt, in the area of the sidewalks, several pressure sensors which have the role of triggering automatically the LED lighting unit when a pedestrian applies on them.
10. The automatic lighting system of the transversal markings of the pedestrian crossings, according to claim 3, wherein the longitudinal extremities of the pedestrian crossing made of lighting devices sunk in the asphalt, in the zone of the sidewalks, several pressure sensors are provided, which have the role to automatically trigger the LED lighting unit the moment when a pedestrian applied pressure on them.
11. The automatic lighting system of the transversal markings of the pedestrian crossings, according to claim 2, wherein on the supporting pole of the photovoltaic plant, an electric control panel of the LED lighting unit and of the cells of the photovoltaic plant is provided.
12. The automatic lighting system of the transversal markings of the pedestrian crossings, according to claim 3, wherein on the supporting pole of the photovoltaic plant, an electric control panel of the LED lighting unit and of the cells of the photovoltaic plant is provided.
13. The automatic lighting system of the transversal markings of the pedestrian crossings, according to claim 2, wherein the lid of the lighting device is provided with closing systems to allow the maintenance operations and to prevent unauthorized access inside the lighting device.
14. The automatic lighting system of the transversal markings of the pedestrian crossings, according to claim 3, wherein the lid of the lighting device is provided with closing systems to allow the maintenance operations and to prevent unauthorized access inside the lighting device.
15. The automatic lighting system of the transversal markings of the pedestrian crossings, according to claim 4, wherein the lid of the lighting device is provided with closing systems to allow the maintenance operations and to prevent unauthorized access inside the lighting device.
16. The automatic lighting system of the transversal markings of the pedestrian crossings, according to claim 5, wherein the lid of the lighting device is provided with closing systems to allow the maintenance operations and to prevent unauthorized access inside the lighting device.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING
(1) Further, there is an example which is just illustrative and not limitative on how to produce the automatic lighting system of the transversal crossing markings for the pedestrian walkways and on the process of doing them according to the invention, in relation with the attached images, indicating:
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DETAILED DESCRIPTION OF THE INVENTION
(12) According to the invention, the system of automatic lighting of the transversal crossing markings for the pedestrians' crossings, presented in
(13) In
(14) The LED lighting unit 1 will light through the cut of the lid and through the sandblasted tempered glass 8, the transversal crossing mark of the pedestrian walkway which is represented by the lid of the metallic box of the light device represents, see
(15) The sandblasted tempered glass 8 has the role of optic element, protecting the LED lighting unit 1 and the inside of the light metallic device from the external factors. A cord of silicone putty 7 is to be poured between the metallic frames 6 for protection of the glass and the sandblasted tempered glass 8 in order to insulate the metallic light device against the water infiltrations, see
(16) The metallic net 11 is a reinforced steel net, used to reinforce and fix the ensemble formed of metallic light devices in order to increase the reinforcing surface and to stabilize the tension forces occurred after the asphalt layer, as seen in the
(17) The pressure sensors 12 have the role to automatically start the LED lighting unit 1 of the light metallic device. The moment when a pedestrian applies a pressure (steps) on these sensors 12 like in the
(18) Laser sensors (laser barriers) 13 have the role of automatically starting the LED lighting unit 1 of the light metallic box. The interruption of the laser beams of the barrier caused by a pedestrian crossing among the pillars of the laser barrier as in
(19) The twilight sensor (the light sensor) 16 represented in the
(20) The photovoltaic power plant 14 represented in
(21) The electric control panel 15 represented in
(22) According to the invention, the automatic light system of the transversal crossing markings for pedestrian walkways is formed of metallic light devices, equipped with lighting unit 1 with LED technology, introduced below the location of the old pedestrian crossing by stripping of the road like on
(23) The boxes of the metallic light devices are welded on a metallic net 11, places on the bottom of the stripped ditch in the asphalt like in
(24) After these operations, the lids 4 of the metallic light bodies are closed and equipped with sandblasted tempered glass 8 like in
(25) We can see in
(26) So, the lid 4 of the metallic lighting device equipped with sandblasted tempered glass 8 becomes the transversal illuminated marking of the pedestrian road crossing.
(27) In the
(28) In the
(29) The system can be powered up by night time using the batteries of the photovoltaic system 14.
(30) Setup Metode
(31) The asphalt will be stripped out on all length and width of the old crosswalk, as shown on
(32) In
(33) In
(34) After this operation the boxes 2 of the metallic lighting device equipped with the LED lighting unit 1 will be connected in parallel trough the electrical wiring to the electric control panel 15 and to the pressure sensor 12, laser sensor 13 and twilight sensor 16. The electrical wiring will be protected by the Copex metal tubes.
(35) After the above operations, we will start the installation of the pressure sensor 12, laser sensor 13 and twilight sensor 16, of the photovoltaic power plant 14 and of the electric control panel 15 as seen in
(36) In
(37) In
(38) In
(39) In
(40) In
(41) After all these operations the lids 4 of the metallic lighting devices will be mounted and closed equipped with the sandblasted tempered glass 8. It will be poured asphaltic bitumen on top of the metallic lighting device lid 4 between the exterior frame 5 and the protection frame 6 of the sandblasted tempered glass for a good grip of the tires of carssee
(42) TABLE-US-00001 LIST OF REFERENCES NR. CRT NAME 1. LED Lighting kit unit 2. Box of the metallic lighting device a Reinforcing elements 4. Lid of the lighting metallic t device 5. Frame of the lid lighting metallic device 6. Protection frame for tempered glass 7. Silicone putty 8. Sandblasted tempered glass 9. Closing system of the lighting metallic device 10. Road 11. Metallic net 12. Pressure sensors 13. Laser Sensors (Laser barrier) 14. Photovoltaic power plant 15. Electric control panel 16. Twilight sensor 17. Metallic pole