CN105323940A - Underground parking lot signal enhanced infrared sensing illumination control system - Google Patents

Underground parking lot signal enhanced infrared sensing illumination control system Download PDF

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Publication number
CN105323940A
CN105323940A CN201510907379.9A CN201510907379A CN105323940A CN 105323940 A CN105323940 A CN 105323940A CN 201510907379 A CN201510907379 A CN 201510907379A CN 105323940 A CN105323940 A CN 105323940A
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China
Prior art keywords
triode
electric capacity
resistance
pole
operational amplifier
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CN201510907379.9A
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Chinese (zh)
Inventor
李小林
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Chengdu Eapus Technology Co Ltd
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Chengdu Eapus Technology Co Ltd
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Priority to CN201510907379.9A priority Critical patent/CN105323940A/en
Publication of CN105323940A publication Critical patent/CN105323940A/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

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  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

The invention discloses an underground parking log signal enhanced infrared sensing illumination control system. The underground parking log signal enhanced infrared sensing illumination control system comprises a central controller, a sub-controller which is connected with the central controller, and a power supply and an illumination control circuit with an illumination lamp, which are respectively connected to the sub-controller; and the sub-controller is provided with a signal receiving-transmitting device which is connected with the central controller in a wireless manner, the illumination control circuit is also provided with an infrared sensor, and a signal transmitting end of the signal receiving-transmitting device is also connected with a signal enhanced circuit. By adopting the underground parking log signal enhanced infrared sensing illumination control system, the illumination of an underground parking log is more intelligent, the electric power consumption of the illumination system can be better reduced, and the expense for the electric energy and illumination is saved.

Description

Underground parking field signal enhancement mode infrared induction Lighting Control Assembly
Technical field
The invention belongs to architectural lighting field, specifically refer to a kind of underground parking field signal enhancement mode infrared induction Lighting Control Assembly effectively can saving power consumption.
Background technology
Along with the development of society, automobile progressively universal, along with the increase of the automobile volume of holding per capita, needs larger ground with the underground space for parking cars when the building of building, in underground parking, larger relative to its lighting requirements amount of ground.And in prior art, usual employing be all continue illumination, and along with the area of parking lots day by day increased, continue the also increase day by day of the required electricity consumed of illumination, so just considerably increase the charge costs of property and owner, also waste a large amount of electric power resources simultaneously.
Summary of the invention
The object of the invention is to overcome the problems referred to above, a kind of underground parking field signal enhancement mode infrared induction Lighting Control Assembly is provided, make the illumination of underground parking more intelligent, better reduce the power consumption of illuminator, and then save electric energy and the expense needed for illumination.
Object of the present invention is achieved through the following technical solutions:
Underground parking field signal enhancement mode infrared induction Lighting Control Assembly, comprises central controller, the sub-controller be connected with this central controller, and is all connected to power supply on sub-controller and is provided with the illumination control circuit of illuminating lamp; Sub-controller is provided with and makes itself and central controller by the wireless signal receiving/transmission device be connected, this illumination control circuit is also provided with infrared inductor, on the signal transmitting terminal of signal receiving/transmission device, be also connected with signal intensifier circuit simultaneously.
Further, above-mentioned illumination control circuit is by time-base integrated circuit IC1, triode VT1, triode VT2, triode VT3, illuminating lamp EL, one end is connected with the pin 8 of time-base integrated circuit IC1 after resistance R1, the other end is connected with the pin one of time-base integrated circuit IC1 after resistance R2, the slide rheostat RP1 that sliding end is connected with the base stage of triode VT1, one end is connected with the collector electrode of triode VT1, the resistance R3 that the other end is connected with the pin two of time-base integrated circuit IC1, one end is connected with the collector electrode of triode VT2, the resistance R4 that the other end is connected with the pin 8 of time-base integrated circuit IC1, positive pole is connected with the pin 5 of time-base integrated circuit IC1, the electric capacity C1 that negative pole is connected with the emitter of triode VT2 after resistance R5, N pole is connected with the negative pole of electric capacity C1, the diode D2 that P pole is connected with the base stage of triode VT3, positive pole is connected with the P pole of diode D2, the electric capacity C2 that negative pole is connected with the N pole of diode D2, N pole is connected with the pin 8 of time-base integrated circuit IC1, the diode D1 that P pole is connected with the collector electrode of triode VT3, and form with the relay K that diode D1 is arranged in parallel, wherein, slide rheostat RP1 is Vin input with the tie point of resistance R1 and is connected with infrared inductor, the pin 8 of time-base integrated circuit IC1 is connected with pin 4, the pin two of time-base integrated circuit IC1 is connected with pin 6, the emitter of triode VT1 is connected with the base stage of triode VT2, the negative pole of electric capacity C1 is connected with the pin one of time-base integrated circuit IC1, the pin 3 of time-base integrated circuit IC1 is connected with the base stage of triode VT3, the emitter of triode VT3 is connected with the negative pole of electric capacity C2, one end of illuminating lamp EL is connected with the N pole of diode D1, the other end is connected with the negative pole of electric capacity C2 after the normally opened contact K-1 of relay K, the N pole of diode D1 forms the input of this circuit with the negative pole of electric capacity C2 and is connected with sub-controller.
Further, above-mentioned signal intensifier circuit is by operational amplifier P1, operational amplifier P2, triode VT4, antenna N, positive pole is connected with the negative input end of operational amplifier P1 after electric capacity C3, the electric capacity C4 that negative pole is connected with the negative power end of operational amplifier P1, one end is connected with the negative input end of operational amplifier P1, the resistance R6 that the other end is connected with the negative pole of electric capacity C4, one end is connected with the positive input terminal of operational amplifier P1, the resistance R7 that the other end is connected with the output of operational amplifier P1, positive pole is connected with the positive input terminal of operational amplifier P1 after resistance R8, the electric capacity C5 that negative pole is connected with the negative pole of electric capacity C4, one end is connected with the negative pole of electric capacity C5, the resistance R10 that the other end is connected with the positive power source terminal of operational amplifier P1 after resistance R11, negative pole is connected with the tie point of resistance R11 with resistance R10 after inductance L 1, positive pole is in turn through electric capacity C7 that electric capacity C6 is connected with the output of operational amplifier P1 after resistance R9, positive pole is connected with the negative pole of electric capacity C7, the electric capacity C8 that negative pole is connected with the base stage of triode VT4, one end is connected with the negative pole of electric capacity C8, the resistance R12 that the other end is connected with the negative power end of operational amplifier P2, be serially connected in the resistance R13 between the negative power end of operational amplifier P2 and positive input terminal, and positive pole is connected with the output of operational amplifier P2, the electric capacity C9 that negative pole is connected with antenna N forms, wherein, the positive supply termination 5V power supply of operational amplifier P1, its negative power end ground connection, the collector electrode of triode VT4 is connected with the positive input terminal of operational amplifier P2, the emitter of triode VT4 is connected with the tie point of resistance R11 with resistance R10, the negative supply termination 5V power supply of operational amplifier P2, its positive power source terminal are connected and ground connection with the emitter of triode VT4 with its negative input end respectively, the positive pole of electric capacity C4 as this circuit input and be connected with the signal transmitting terminal of signal receiving/transmission device.
As preferably, the model of described time-base integrated circuit IC1 is NE555, and the model of operational amplifier P1 and operational amplifier P2 is LM324, and triode VT1, triode VT2, triode VT3 and triode VT4 are NPN type triode.
The present invention compared with prior art, has the following advantages and beneficial effect:
(1) the present invention can open and close the illuminator of whole underground parking automatically according to infrared signal, when without the need to throwing light on, illuminator will be closed, well reduce the power consumption of whole system, not only save electric power resource, also reduce the cost of property and owner, well can also extend the useful life of illuminating lamp simultaneously, reduce further the use cost of system.
(2) the present invention is provided with illumination control circuit, the infrared signal automatic open close illuminating lamp that can send according to infrared inductor, making it only just throw light on when needed, can close voluntarily when without the need to throwing light on, well improve the intelligent of whole system.
(3) the present invention is provided with signal intensifier circuit, making sub-controller can be good at ruuning situation to be sent in central controller, without the need to carrying out the laying of circuit, greatly reducing the cost of system erection, improve the maintenance efficiency of system, reduce the cost of maintenance.
Accompanying drawing explanation
Fig. 1 is structured flowchart of the present invention.
Fig. 2 is the circuit diagram of illumination control circuit of the present invention.
Fig. 3 is the circuit diagram of signal intensifier circuit of the present invention.
Embodiment
Below in conjunction with embodiment, the present invention is described in further detail, but embodiments of the present invention are not limited thereto.
Embodiment
As shown in Figure 1, the present invention includes central controller, the sub-controller be connected with this central controller, and be all connected to power supply on sub-controller and be provided with the illumination control circuit of illuminating lamp; Sub-controller is provided with and makes itself and central controller by the wireless signal receiving/transmission device be connected, this illumination control circuit is also provided with infrared inductor, on the signal transmitting terminal of signal receiving/transmission device, be also connected with signal intensifier circuit simultaneously.
During use, first in control room, set up central controller, then the illuminator being provided with sub-controller is laid in underground parking, this central controller can be server, PC computer, industrial computer etc., and sub-controller can be PLC, PC computer, industrial computer, panel computer etc.Connection signal R-T unit on the sub-controller set up, sub-controller can be connected with central controller by signal receiving/transmission device, and in order to make the signal of sub-controller better through the obstruct of body of wall, the signal output part of signal receiving/transmission device can arrange a signal intensifier circuit to improve the penetration capacity of its signal.The illuminator of whole underground parking is then completed automatically by the illumination control circuit be connected on sub-controller, this illumination control circuit directly can complete the keying of illuminating lamp according to the induction of infrared inductor to human body, can save a large amount of electric energy at nobody time.
As shown in Figure 2, above-mentioned illumination control circuit by time-base integrated circuit IC1, triode VT1, triode VT2, triode VT3, illuminating lamp EL, resistance R1, resistance R2, resistance R3, resistance R4, resistance R5, slide rheostat RP1, relay K, diode D1, diode D2, electric capacity C1, electric capacity C2 form.
During connection, one end of slide rheostat RP1 is connected with the pin 8 of time-base integrated circuit IC1 after resistance R1, the other end is connected with the pin one of time-base integrated circuit IC1 after resistance R2, sliding end is connected with the base stage of triode VT1, one end of resistance R3 is connected with the collector electrode of triode VT1, the other end is connected with the pin two of time-base integrated circuit IC1, one end of resistance R4 is connected with the collector electrode of triode VT2, the other end is connected with the pin 8 of time-base integrated circuit IC1, the positive pole of electric capacity C1 is connected with the pin 5 of time-base integrated circuit IC1, negative pole is connected with the emitter of triode VT2 after resistance R5, the N pole of diode D2 is connected with the negative pole of electric capacity C1, P pole is connected with the base stage of triode VT3, the positive pole of electric capacity C2 is connected with the P pole of diode D2, negative pole is connected with the N pole of diode D2, the N pole of diode D1 is connected with the pin 8 of time-base integrated circuit IC1, P pole is connected with the collector electrode of triode VT3, relay K and diode D1 are arranged in parallel, wherein, slide rheostat RP1 is Vin input with the tie point of resistance R1 and is connected with infrared inductor, the pin 8 of time-base integrated circuit IC1 is connected with pin 4, the pin two of time-base integrated circuit IC1 is connected with pin 6, the emitter of triode VT1 is connected with the base stage of triode VT2, the negative pole of electric capacity C1 is connected with the pin one of time-base integrated circuit IC1, the pin 3 of time-base integrated circuit IC1 is connected with the base stage of triode VT3, the emitter of triode VT3 is connected with the negative pole of electric capacity C2, one end of illuminating lamp EL is connected with the N pole of diode D1, the other end is connected with the negative pole of electric capacity C2 after the normally opened contact K-1 of relay K, the N pole of diode D1 forms the input of this circuit with the negative pole of electric capacity C2 and is connected with sub-controller.
During use, Vin input inputs different voltage signals according to the difference of infrared inductor induction situation, when infrared inductor captures human body signal, Vin inputs high-potential voltage, the composite amplifier saturation conduction be made up of triode VT1 and triode VT2, current potential on resistance R3 is reduced, and the level of trigger end lower than the pin two place of time-base integrated circuit IC1, and then make its output pin 3 in high level, and make triode VT3 conducting, after triode VT3 conducting, relay K obtains electric, the normally opened contact K-1 of the relay K of connecting with illuminating lamp EL closes, illuminating lamp obtains electric-opening and throws light on.Otherwise input low-potential voltage when infrared inductor catches Vin after less than human body signal, finally make relay K power-off, its normally opened contact K-1 disconnects, and illuminating lamp power-off is closed.
As shown in Figure 3, above-mentioned signal intensifier circuit by operational amplifier P1, operational amplifier P2, triode VT4, antenna N, resistance R6, resistance R7, resistance R8, resistance R9, resistance R10, resistance R11, resistance R12, resistance R13, electric capacity C3, electric capacity C4, electric capacity C5, electric capacity C6, electric capacity C7, electric capacity C8, electric capacity C9, inductance L 1 forms.
During connection, the positive pole of electric capacity C4 is connected with the negative input end of operational amplifier P1 after electric capacity C3, negative pole is connected with the negative power end of operational amplifier P1, one end of resistance R6 is connected with the negative input end of operational amplifier P1, the other end is connected with the negative pole of electric capacity C4, one end of resistance R7 is connected with the positive input terminal of operational amplifier P1, the other end is connected with the output of operational amplifier P1, the positive pole of electric capacity C5 is connected with the positive input terminal of operational amplifier P1 after resistance R8, negative pole is connected with the negative pole of electric capacity C4, one end of resistance R10 is connected with the negative pole of electric capacity C5, the other end is connected with the positive power source terminal of operational amplifier P1 after resistance R11, the negative pole of electric capacity C7 is connected with the tie point of resistance R11 with resistance R10 after inductance L 1, positive pole is connected with the output of operational amplifier P1 after resistance R9 through electric capacity C6 in turn, the positive pole of electric capacity C8 is connected with the negative pole of electric capacity C7, negative pole is connected with the base stage of triode VT4, one end of resistance R12 is connected with the negative pole of electric capacity C8, the other end is connected with the negative power end of operational amplifier P2, between the negative power end that resistance R13 is serially connected in operational amplifier P2 and positive input terminal, the positive pole of electric capacity C9 is connected with the output of operational amplifier P2, negative pole is connected with antenna N, wherein, the positive supply termination 5V power supply of operational amplifier P1, its negative power end ground connection, the collector electrode of triode VT4 is connected with the positive input terminal of operational amplifier P2, the emitter of triode VT4 is connected with the tie point of resistance R11 with resistance R10, the negative supply termination 5V power supply of operational amplifier P2, its positive power source terminal are connected and ground connection with the emitter of triode VT4 with its negative input end respectively, the positive pole of electric capacity C4 as this circuit input and be connected with the signal transmitting terminal of signal receiving/transmission device.
Signal on the signal output part of signal receiving/transmission device can amplify by signal intensifier circuit, output signal and progressively amplified after the discharge circuit through two operational amplifier compositions, improve the penetration capacity of signal, avoid signal to be stopped by body of wall, substantially increase communication capacity of the present invention, avoid central controller that signal deletion causes to the misjudgment of underground lighting condition running status, improve the result of use of product.
The model of described time-base integrated circuit IC1 is NE555, and the model of operational amplifier P1 and operational amplifier P2 is LM324, and triode VT1, triode VT2, triode VT3 and triode VT4 are NPN type triode.
As mentioned above, just well the present invention can be realized.

Claims (4)

1. underground parking field signal enhancement mode infrared induction Lighting Control Assembly, is characterized in that: comprise central controller, the sub-controller be connected with this central controller, and is all connected to power supply on sub-controller and is provided with the illumination control circuit of illuminating lamp; Sub-controller is provided with and makes itself and central controller by the wireless signal receiving/transmission device be connected, this illumination control circuit is also provided with infrared inductor, on the signal transmitting terminal of signal receiving/transmission device, be also connected with signal intensifier circuit simultaneously.
2. underground parking field signal enhancement mode infrared induction Lighting Control Assembly according to claim 1, it is characterized in that: described illumination control circuit is by time-base integrated circuit IC1, triode VT1, triode VT2, triode VT3, illuminating lamp EL, one end is connected with the pin 8 of time-base integrated circuit IC1 after resistance R1, the other end is connected with the pin one of time-base integrated circuit IC1 after resistance R2, the slide rheostat RP1 that sliding end is connected with the base stage of triode VT1, one end is connected with the collector electrode of triode VT1, the resistance R3 that the other end is connected with the pin two of time-base integrated circuit IC1, one end is connected with the collector electrode of triode VT2, the resistance R4 that the other end is connected with the pin 8 of time-base integrated circuit IC1, positive pole is connected with the pin 5 of time-base integrated circuit IC1, the electric capacity C1 that negative pole is connected with the emitter of triode VT2 after resistance R5, N pole is connected with the negative pole of electric capacity C1, the diode D2 that P pole is connected with the base stage of triode VT3, positive pole is connected with the P pole of diode D2, the electric capacity C2 that negative pole is connected with the N pole of diode D2, N pole is connected with the pin 8 of time-base integrated circuit IC1, the diode D1 that P pole is connected with the collector electrode of triode VT3, and form with the relay K that diode D1 is arranged in parallel, wherein, slide rheostat RP1 is Vin input with the tie point of resistance R1 and is connected with infrared inductor, the pin 8 of time-base integrated circuit IC1 is connected with pin 4, the pin two of time-base integrated circuit IC1 is connected with pin 6, the emitter of triode VT1 is connected with the base stage of triode VT2, the negative pole of electric capacity C1 is connected with the pin one of time-base integrated circuit IC1, the pin 3 of time-base integrated circuit IC1 is connected with the base stage of triode VT3, the emitter of triode VT3 is connected with the negative pole of electric capacity C2, one end of illuminating lamp EL is connected with the N pole of diode D1, the other end is connected with the negative pole of electric capacity C2 after the normally opened contact K-1 of relay K, the N pole of diode D1 forms the input of this circuit with the negative pole of electric capacity C2 and is connected with sub-controller.
3. underground parking field signal enhancement mode infrared induction Lighting Control Assembly according to claim 2, it is characterized in that: described signal intensifier circuit is by operational amplifier P1, operational amplifier P2, triode VT4, antenna N, positive pole is connected with the negative input end of operational amplifier P1 after electric capacity C3, the electric capacity C4 that negative pole is connected with the negative power end of operational amplifier P1, one end is connected with the negative input end of operational amplifier P1, the resistance R6 that the other end is connected with the negative pole of electric capacity C4, one end is connected with the positive input terminal of operational amplifier P1, the resistance R7 that the other end is connected with the output of operational amplifier P1, positive pole is connected with the positive input terminal of operational amplifier P1 after resistance R8, the electric capacity C5 that negative pole is connected with the negative pole of electric capacity C4, one end is connected with the negative pole of electric capacity C5, the resistance R10 that the other end is connected with the positive power source terminal of operational amplifier P1 after resistance R11, negative pole is connected with the tie point of resistance R11 with resistance R10 after inductance L 1, positive pole is in turn through electric capacity C7 that electric capacity C6 is connected with the output of operational amplifier P1 after resistance R9, positive pole is connected with the negative pole of electric capacity C7, the electric capacity C8 that negative pole is connected with the base stage of triode VT4, one end is connected with the negative pole of electric capacity C8, the resistance R12 that the other end is connected with the negative power end of operational amplifier P2, be serially connected in the resistance R13 between the negative power end of operational amplifier P2 and positive input terminal, and positive pole is connected with the output of operational amplifier P2, the electric capacity C9 that negative pole is connected with antenna N forms, wherein, the positive supply termination 5V power supply of operational amplifier P1, its negative power end ground connection, the collector electrode of triode VT4 is connected with the positive input terminal of operational amplifier P2, the emitter of triode VT4 is connected with the tie point of resistance R11 with resistance R10, the negative supply termination 5V power supply of operational amplifier P2, its positive power source terminal are connected and ground connection with the emitter of triode VT4 with its negative input end respectively, the positive pole of electric capacity C4 as this circuit input and be connected with the signal transmitting terminal of signal receiving/transmission device.
4. underground parking field signal enhancement mode infrared induction Lighting Control Assembly according to claim 3, it is characterized in that: the model of described time-base integrated circuit IC1 is NE555, the model of operational amplifier P1 and operational amplifier P2 is LM324, and triode VT1, triode VT2, triode VT3 and triode VT4 are NPN type triode.
CN201510907379.9A 2015-12-09 2015-12-09 Underground parking lot signal enhanced infrared sensing illumination control system Withdrawn CN105323940A (en)

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CN201510907379.9A CN105323940A (en) 2015-12-09 2015-12-09 Underground parking lot signal enhanced infrared sensing illumination control system

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106572558A (en) * 2016-11-03 2017-04-19 中山市荣亮照明有限公司 LED mirror front lamp
CN108230738A (en) * 2018-01-31 2018-06-29 四川驿停车智慧科技有限公司 Stop induction system for a kind of staggered form parking stall

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103929844A (en) * 2013-01-14 2014-07-16 海洋王(东莞)照明科技有限公司 Automatic control device for lamp cyclic test
CN204392669U (en) * 2015-03-09 2015-06-10 四川圣典节能服务有限公司 Indoor intelligent controls power saving apparatus
CN105007674A (en) * 2015-08-13 2015-10-28 林育成 Intelligent lamp control system
CN204810638U (en) * 2015-08-25 2015-11-25 梅玉刚 Infrared sensing corridor of solar electric source LED lamp of adjusting luminance

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103929844A (en) * 2013-01-14 2014-07-16 海洋王(东莞)照明科技有限公司 Automatic control device for lamp cyclic test
CN204392669U (en) * 2015-03-09 2015-06-10 四川圣典节能服务有限公司 Indoor intelligent controls power saving apparatus
CN105007674A (en) * 2015-08-13 2015-10-28 林育成 Intelligent lamp control system
CN204810638U (en) * 2015-08-25 2015-11-25 梅玉刚 Infrared sensing corridor of solar electric source LED lamp of adjusting luminance

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106572558A (en) * 2016-11-03 2017-04-19 中山市荣亮照明有限公司 LED mirror front lamp
CN108230738A (en) * 2018-01-31 2018-06-29 四川驿停车智慧科技有限公司 Stop induction system for a kind of staggered form parking stall

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Application publication date: 20160210