WO2017152320A1 - 一种基于物联网的音乐彩灯系统 - Google Patents

一种基于物联网的音乐彩灯系统 Download PDF

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WO2017152320A1
WO2017152320A1 PCT/CN2016/075734 CN2016075734W WO2017152320A1 WO 2017152320 A1 WO2017152320 A1 WO 2017152320A1 CN 2016075734 W CN2016075734 W CN 2016075734W WO 2017152320 A1 WO2017152320 A1 WO 2017152320A1
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thyristor
music
indicator light
capacitor
transformer
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PCT/CN2016/075734
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English (en)
French (fr)
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张舒维
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张舒维
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Priority to PCT/CN2016/075734 priority Critical patent/WO2017152320A1/zh
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S10/00Lighting devices or systems producing a varying lighting effect
    • F21S10/02Lighting devices or systems producing a varying lighting effect changing colors
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V21/00Supporting, suspending, or attaching arrangements for lighting devices; Hand grips
    • F21V21/36Hoisting or lowering devices, e.g. for maintenance
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V33/00Structural combinations of lighting devices with other articles, not otherwise provided for
    • 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

Definitions

  • the invention relates to a music lantern system based on the internet of things.
  • the technical problem to be solved by the present invention is to provide an Internet of Things-based music lantern system with fast response speed and lifting function in order to overcome the shortcomings of the prior art that the reaction control performance is poor and the lifting function is lacking.
  • a music lantern system based on the Internet of Things, comprising a music player, an intelligent communication terminal and a plurality of lanterns, respectively, the smart communication terminal and the lantern and the music player respectively a wireless connection;
  • the music player includes a housing, a display interface disposed on the housing, and a control button;
  • the lantern is provided with an acoustic sensor and a lifting mechanism, wherein the lantern is provided with a music control module, and the sound sensor is electrically connected with the music control module, and the lifting mechanism comprises a lifting rod and a conveyor belt disposed in the lifting rod a transmission mechanism disposed at both ends of the conveyor belt and a driven mechanism disposed on the transmission belt, the transmission mechanism including a driving motor and a driving tooth, wherein the driving motor is drivingly connected to the transmission belt through the driving gear, and the driven mechanism includes the driven tooth The driven tooth is connected to the drive belt;
  • the music control module includes a music control circuit, and the music control circuit includes a first capacitor, a second capacitor, a third capacitor, a fourth capacitor, an adjustable resistor, a transformer, a first indicator light, a second indicator light, and a third An indicator light, a first thyristor, a second thyristor, a third thyristor, an inductor and a plug, wherein the series circuit of the first thyristor and the first indicator light is connected in parallel with the plug, and the series circuit of the second thyristor and the second indicator light
  • the plugs are connected in parallel, and the series circuit of the third thyristor and the third indicator light is connected in parallel with the plug, and the trigger end of the first thyristor is connected to the cathode of the first thyristor through a series circuit composed of an inductor and a secondary side of the transformer, The trigger end of the thyristor is connected to the cathode of the second thyristor
  • the ratio of the number of turns on the primary side of the transformer to the number of turns on the secondary side of the transformer is 400/1200.
  • the first indicator light, the second indicator light, and the third indicator light are all electrically connected to the color light.
  • the servo motor has the characteristics of high precision control, and the reliability of the system is improved.
  • the drive motor is a DC servo motor.
  • the reliability of the system is improved, and the withstand voltages of the first thyristor, the second thyristor, and the third thyristor are 1600V.
  • the display interface is a liquid crystal display
  • the control button is a light touch button
  • the invention has the beneficial effects that the music network system based on the Internet of Things controls the rotation of the conveyor belt by driving the motor, and simultaneously drives the driven teeth to rotate, thereby controlling the lifting and lowering of the lanterns and improving the installation convenience;
  • the unidirectional thyristor in the music control circuit not only reduces the structure of the system, but also improves the performance of the system.
  • FIG. 1 is a schematic structural view of a music lantern system based on the Internet of Things according to the present invention
  • FIG. 2 is a schematic structural view of a lifting mechanism of a music lantern system based on the Internet of Things according to the present invention
  • FIG. 3 is a circuit schematic diagram of a music control circuit of a music lantern system based on the Internet of Things according to the present invention
  • a music lantern system based on the Internet of Things, comprising a music player, an intelligent communication terminal 4 and a plurality of lanterns 5, respectively, with the lantern 5 and the music player Wireless connection;
  • the music player comprises a casing 1, a display interface 2 disposed on the casing 1 and a control button 3;
  • the color light 5 is provided with an acoustic sensor 6 and a lifting mechanism 7 .
  • the lantern 5 is provided with a music control module.
  • the sound sensor 6 is electrically connected to the music control module.
  • the lifting mechanism 7 includes a lifting rod 8 .
  • a conveyor belt 12 disposed within the lifting rod 8, a transmission mechanism disposed at both ends of the conveyor belt 12, and a driven mechanism disposed on the belt 12, the transmission mechanism including a drive motor 10 and an active tooth 9, the drive motor 10 passing through the active teeth 9 is drivingly connected to the transmission belt 12, the driven mechanism includes a driven tooth 11 , and the driven tooth 11 is drivingly connected with the transmission belt 12 ;
  • the music control module includes a music control circuit, and the music control circuit includes a first capacitor C1, a second capacitor C2, a third capacitor C3, a fourth capacitor C4, an adjustable resistor Rp1, a transformer T1, and a first indicator light L1.
  • the second indicator light L2, the third indicator light L3, the first thyristor U1, the second thyristor U2, the third thyristor U3, the inductor L1 and the plug P1, the series circuit and the plug of the first thyristor U1 and the first indicator light L1 P1 is connected in parallel
  • the series circuit of the second thyristor U2 and the second indicator light L2 is connected in parallel with the plug P1
  • the series circuit of the third thyristor U3 and the third indicator light L3 is connected in parallel with the plug P1, the first thyristor U1
  • the trigger terminal is connected to the cathode of the first thyristor U1 through a series circuit composed of the inductor L1 and the secondary side of
  • the trigger end of the third thyristor U3 is connected to the cathode of the third thyristor U3 through a series circuit composed of a second capacitor C2 and a secondary side of the transformer T1, and the trigger end of the first thyristor U1 is connected
  • the first capacitor C1 is connected to the cathode of the first thyristor U1
  • the trigger end of the second thyristor U2 is connected to the cathode of the second thyristor U2 through the fourth capacitor C4.
  • One end of the transformer T1 is connected to the adjustable resistor Rp1.
  • the adjustable end is connected, and the other end of the primary side of the transformer T1 is connected to one end of the adjustable resistor Rp1.
  • the number of turns of the primary side of the transformer T1 and the number of turns of the secondary side of the transformer T1 are 400/1200.
  • the first indicator light L1, the second indicator light L2 and the third indicator light L3 are electrically connected to the lantern 5.
  • the servo motor has the characteristics of high precision control, and the reliability of the system is improved.
  • the drive motor 10 is a DC servo motor.
  • the reliability of the system is improved, and the withstand voltage of the first thyristor U1, the second thyristor U2, and the third thyristor U3 is 1600V.
  • the display interface 2 is a liquid crystal display
  • the control button 3 is a touch button
  • the intelligent communication terminal 4 is capable of wirelessly monitoring the music player.
  • the color lamp 5 is provided with a sound sensor 6 capable of sensing the sound intensity, and changing the light according to the sound intensity;
  • the driving motor 10 drives the rotation of the conveyor belt 12 through the driving gear 9, and then the conveyor belt 12 can drive the driven tooth 11 to rotate.
  • the driving motor 10 drives the rotation of the conveyor belt 12 through the driving gear 9, and then the conveyor belt 12 can drive the driven tooth 11 to rotate.
  • a unidirectional thyristor In the music control circuit, a unidirectional thyristor is adopted, wherein the unidirectional thyristor has the advantages of good control performance, fast response, small volume, high efficiency, etc., thereby not only reducing the structure of the system, but also improving the performance of the system.
  • the working principle of the circuit is: the signal voltage across the speaker, through the transformer T1 to trigger the thyristor. When the music is strong or weak, the trigger current is large and small, so that the control light flashes brightly and suddenly, thus realizing the control of the music to the lantern.
  • the Internet of Things-based music lantern system controls the rotation of the conveyor belt 12 by driving the motor 10, and simultaneously drives the driven teeth 11 to rotate, thereby controlling the lifting and lowering of the lantern 5, thereby improving the installation convenience.
  • the unidirectional thyristor in the music control circuit not only reduces the structure of the system, but also improves the performance of the system.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)

Abstract

一种基于物联网的音乐彩灯系统,包括音乐播放器、智能通讯终端(4)和若干彩灯(5),所述智能通讯终端(4)分别与彩灯(5)和音乐播放器无线连接;所述音乐播放器包括外壳(1)、设置在外壳(1)上的显示界面(2)和控制按键(3);所述彩灯(5)上设有声音传感器(6)和升降机构(7),所述彩灯(5)内设有音乐控制模块,所述声音传感器(6)与音乐控制模块电连接;该基于物联网的音乐彩灯系统通过驱动电机(10)来控制传送带(12)的转动,同时带动从动齿(11)转动,从而就能够控制彩灯(5)的升降,提高其安装便利性;不仅如此,音乐控制电路中通过单向晶闸管(U1,U2,U3),不仅降低了该系统的结构,同时还提高了系统的性能。

Description

一种基于物联网的音乐彩灯系统 技术领域
本发明涉及一种基于物联网的音乐彩灯系统。
背景技术
随着科技的发展和社会的进步,电力电子技术得到了快速发展,其给人们的生活带来了很大的帮助。
在家庭生活中,我们的灯具都是用来照明,对于其它功能的开发过少,这样大大降低了灯具的实用性。在现有技术中,有部分灯具有音乐控制功能,但是在控制的时候,由于反应速度慢,大大降低了灯具的实用性;不仅如此,现在的灯具还缺少升降功能,当对灯具安装时,这样就降低了其实用性。
发明内容
本发明要解决的技术问题是:为了克服现有技术反应控制性能差且缺少升降功能的不足,提供一种反应速度快且具有升降功能的基于物联网的音乐彩灯系统。
本发明解决其技术问题所采用的技术方案是:一种基于物联网的音乐彩灯系统,包括音乐播放器、智能通讯终端和若干彩灯,所述智能通讯终端分别与彩灯和音乐播放器无线连接;所述音乐播放器包括外壳、设置在外壳上的显示界面和控制按键;
所述彩灯上设有声音传感器和升降机构,所述彩灯内设有音乐控制模块,所述声音传感器与音乐控制模块电连接,所述升降机构包括升降杆、设置在升降杆内的传送带、设置在传送带两端的传动机构和设置在传动带上的从动机构,所述传动机构包括驱动电机和主动齿,所述驱动电机通过主动齿与传动带传动连接,所述从动机构包括从动齿,所述从动齿与传动带传动连接;
所述音乐控制模块包括音乐控制电路,所述音乐控制电路包括第一电容、第二电容、第三电容、第四电容、可调电阻、变压器、第一指示灯、第二指示灯、第三指示灯、第一晶闸管、第二晶闸管、第三晶闸管、电感和插头,所述第一晶闸管和第一指示灯的串联电路与插头并联,所述第二晶闸管和第二指示灯的串联电路与插头并联,所述第三晶闸管和第三指示灯的串联电路与插头并联,所述第一晶闸管的触发端通过电感和变压器二次侧组成的串联电路与第一晶闸管的阴极连接,所述第二晶闸管的触发端通过第三电容和变压器二次侧组成的串联电路与第二晶闸管的阴极连接,所述第三晶闸管的触发端通过第二电容和变压器二次侧组成的串联电路与第三晶闸管的阴极连接,所述第一晶闸管的触发端通过第一电容与第一晶闸管的阴极连接,所述第二晶闸管的触发端通过第四电容与第二晶闸管的阴极连接,所述变压器一次侧的一端与可调电阻的可调端连接,所述变压器一次侧的另一端与可调电阻的一端连接。
作为优选,所述变压器一次侧的匝数与变压器二次侧的匝数比为400/1200。
作为优选,所述第一指示灯、第二指示灯和第三指示灯均与彩灯电连接。
作为优选,利用伺服电机具有控制精确高的特点,提高了系统的可靠性,所述驱动电机为直流伺服电机。
作为优选,提高系统的可靠性,所述第一晶闸管、第二晶闸管和第三晶闸管的耐压为1600V。
作为优选,所述显示界面为液晶显示屏,所述控制按键为轻触按键。
本发明的有益效果是,该基于物联网的音乐彩灯系统通过驱动电机来控制传送带的转动,同时带动从动齿转动,从而就能够控制彩灯的升降,提高其安装便利性;不仅如此,音乐控制电路中通过单向晶闸管,不仅降低了该系统的结构,同时还提高了系统的性能。
附图说明
下面结合附图和实施例对本发明进一步说明。
图1是本发明基于物联网的音乐彩灯系统的结构示意图;
图2是本发明基于物联网的音乐彩灯系统的升降机构的结构示意图;
图3是本发明基于物联网的音乐彩灯系统的音乐控制电路的电路原理图;
图中:1.外壳,2.界面显示,3.控制按钮,4.智能通讯终端,5.彩灯,6.声音传感器,7.升降结构,8.升降杆,9.主动齿,10.驱动电机,11.从动齿,12.传动带,C1.第一电容,C2.第二电容,C3.第三电容,C4.第四电容,Rp1.可调电阻,T1.变压器,L1.第一指示灯,L2.第二指示灯,L3.第三指示灯,U1.第一晶闸管,U2.第二晶闸管,U3.第三晶闸管,L1.电感,P1.插头。
具体实施方式
现在结合附图对本发明作进一步详细的说明。这些附图均为简化的示意图,仅以示意方式说明本发明的基本结构,因此其仅显示与本发明有关的构成。
如图1-图3所示,一种基于物联网的音乐彩灯系统,包括音乐播放器、智能通讯终端4和若干彩灯5,所述智能通讯终端4分别与彩灯5和音乐播放器无线连接;所述音乐播放器包括外壳1、设置在外壳1上的显示界面2和控制按键3;
所述彩灯5上设有声音传感器6和升降机构7,所述彩灯5内设有音乐控制模块,所述声音传感器6与音乐控制模块电连接,所述升降机构7包括升降杆8、设置在升降杆8内的传送带12、设置在传送带12两端的传动机构和设置在传动带12上的从动机构,所述传动机构包括驱动电机10和主动齿9,所述驱动电机10通过主动齿9与传动带12传动连接,所述从动机构包括从动齿11,所述从动齿11与传动带12传动连接;
所述音乐控制模块包括音乐控制电路,所述音乐控制电路包括第一电容C1、第二电容C2、第三电容C3、第四电容C4、可调电阻Rp1、变压器T1、第一指示灯L1、第二指示灯L2、第三指示灯L3、第一晶闸管U1、第二晶闸管U2、第三晶闸管U3、电感L1和插头P1,所述第一晶闸管U1和第一指示灯L1的串联电路与插头P1并联,所述第二晶闸管U2和第二指示灯L2的串联电路与插头P1并联,所述第三晶闸管U3和第三指示灯L3的串联电路与插头P1并联,所述第一晶闸管U1的触发端通过电感L1和变压器T1二次侧组成的串联电路与第一晶闸管U1的阴极连接,所述第二晶闸管U2的触发端通过第三电容C3和变压器T1二次侧组成的串联电路与第二晶闸管U2的阴极连接,所述第三晶闸管U3的触发端通过第二电容C2和变压器T1二次侧组成的串联电路与第三晶闸管U3的阴极连接,所述第一晶闸管U1的触发端通过第一电容C1与第一晶闸管U1的阴极连接,所述第二晶闸管U2的触发端通过第四电容C4与第二晶闸管U2的阴极连接,所述变压器T1一次侧的一端与可调电阻Rp1的可调端连接,所述变压器T1一次侧的另一端与可调电阻Rp1的一端连接。
作为优选,所述变压器T1一次侧的匝数与变压器T1二次侧的匝数比为400/1200。
作为优选,所述第一指示灯L1、第二指示灯L2和第三指示灯L3均与彩灯5电连接。
作为优选,利用伺服电机具有控制精确高的特点,提高了系统的可靠性,所述驱动电机10为直流伺服电机。
作为优选,提高系统的可靠性,所述第一晶闸管U1、第二晶闸管U2和第三晶闸管U3的耐压为1600V。
作为优选,所述显示界面2为液晶显示屏,所述控制按键3为轻触按键。
该基于物联网的音乐彩灯系统中,智能通讯终端4能够对音乐播放器进行无线监控。其中;彩灯5上设有声音传感器6,能够对声音强度进行感应,根据声音强度进行改变灯光;驱动电机10通过主动齿9驱动传送带12的转动,随后传送带12能够带动从动齿11转动,从而就能够控制彩灯5的升降;从而就能够保证在对彩灯5安装时,提高其安装便利性。
该音乐控制电路中,采用了单向晶闸管,其中单向晶闸管具控制性能好、反应快、体积小、效率高等优点,从而不仅降低了该系统的结构,同时还提高了系统的性能。该电路的工作原理是:扬声器两端的信号电压,通过变压器T1去触发晶闸管。当音乐有强有弱时,触发电流就有大有小,从而控制彩灯忽亮忽暗闪烁,从而实现了音乐对彩灯的控制。
与现有技术相比,该基于物联网的音乐彩灯系统通过驱动电机10来控制传送带12的转动,同时带动从动齿11转动,从而就能够控制彩灯5的升降,提高其安装便利性;不仅如此,音乐控制电路中通过单向晶闸管,不仅降低了该系统的结构,同时还提高了系统的性能。
以上述依据本发明的理想实施例为启示,通过上述的说明内容,相关工作人员完全可以在不偏离本项发明技术思想的范围内,进行多样的变更以及修改。本项发明的技术性范围并不局限于说明书上的内容,必须要根据权利要求范围来确定其技术性范围。

Claims (6)

  1. 一种基于物联网的音乐彩灯系统,其特征在于,包括音乐播放器、智能通讯终端(4)和若干彩灯(5),所述智能通讯终端(4)分别与彩灯(5)和音乐播放器无线连接;所述音乐播放器包括外壳(1)、设置在外壳(1)上的显示界面(2)和控制按键(3);
    所述彩灯(5)上设有声音传感器(6)和升降机构(7),所述彩灯(5)内设有音乐控制模块,所述声音传感器(6)与音乐控制模块电连接,所述升降机构(7)包括升降杆(8)、设置在升降杆(8)内的传送带(12)、设置在传送带(12)两端的传动机构和设置在传动带(12)上的从动机构,所述传动机构包括驱动电机(10)和主动齿(9),所述驱动电机(10)通过主动齿(9)与传动带(12)传动连接,所述从动机构包括从动齿(11),所述从动齿(11)与传动带(12)传动连接;
    所述音乐控制模块包括音乐控制电路,所述音乐控制电路包括第一电容(C1)、第二电容(C2)、第三电容(C3)、第四电容(C4)、可调电阻(Rp1)、变压器(T1)、第一指示灯(L1)、第二指示灯(L2)、第三指示灯(L3)、第一晶闸管(U1)、第二晶闸管(U2)、第三晶闸管(U3)、电感(L1)和插头(P1),所述第一晶闸管(U1)和第一指示灯(L1)的串联电路与插头(P1)并联,所述第二晶闸管(U2)和第二指示灯(L2)的串联电路与插头(P1)并联,所述第三晶闸管(U3)和第三指示灯(L3)的串联电路与插头(P1)并联,所述第一晶闸管(U1)的触发端通过电感(L1)和变压器(T1)二次侧组成的串联电路与第一晶闸管(U1)的阴极连接,所述第二晶闸管(U2)的触发端通过第三电容(C3)和变压器(T1)二次侧组成的串联电路与第二晶闸管(U2)的阴极连接,所述第三晶闸管(U3)的触发端通过第二电容(C2)和变压器(T1)二次侧组成的串联电路与第三晶闸管(U3)的阴极连接,所述第一晶闸管(U1) 的触发端通过第一电容(C1)与第一晶闸管(U1)的阴极连接,所述第二晶闸管(U2)的触发端通过第四电容(C4)与第二晶闸管(U2)的阴极连接,所述变压器(T1)一次侧的一端与可调电阻(Rp1)的可调端连接,所述变压器(T1)一次侧的另一端与可调电阻(Rp1)的一端连接。
  2. 如权利要求1所述的基于物联网的音乐彩灯系统,其特征在于,所述变压器(T1)一次侧的匝数与变压器(T1)二次侧的匝数比为400/1200。
  3. 如权利要求1所述的基于物联网的音乐彩灯系统,其特征在于,所述第一指示灯(L1)、第二指示灯(L2)和第三指示灯(L3)均与彩灯(5)电连接。
  4. 如权利要求1所述的基于物联网的音乐彩灯系统,其特征在于,所述驱动电机(10)为直流伺服电机。
  5. 如权利要求1所述的基于物联网的音乐彩灯系统,其特征在于,所述第一晶闸管(U1)、第二晶闸管(U2)和第三晶闸管(U3)的耐压为1600V。
  6. 如权利要求1所述的基于物联网的音乐彩灯系统,其特征在于,所述显示界面(2)为液晶显示屏,所述控制按键(3)为轻触按键。
PCT/CN2016/075734 2016-03-06 2016-03-06 一种基于物联网的音乐彩灯系统 WO2017152320A1 (zh)

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