WO2017124571A1 - 感光路灯技术使用次数采集方法以及感光路灯 - Google Patents

感光路灯技术使用次数采集方法以及感光路灯 Download PDF

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WO2017124571A1
WO2017124571A1 PCT/CN2016/071930 CN2016071930W WO2017124571A1 WO 2017124571 A1 WO2017124571 A1 WO 2017124571A1 CN 2016071930 W CN2016071930 W CN 2016071930W WO 2017124571 A1 WO2017124571 A1 WO 2017124571A1
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street lamp
light intensity
brightness
technology
current
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PCT/CN2016/071930
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French (fr)
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赵政荣
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赵政荣
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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
    • 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
    • H05B47/105Controlling the light source in response to determined parameters
    • H05B47/11Controlling the light source in response to determined parameters by determining the brightness or colour temperature of ambient light
    • 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 belongs to the field of living appliances, and in particular relates to a method for collecting times of use of the sensible street lamp technology and a sensible street lamp.
  • the number of invention patents applied by OPPO in 2014 was 938, while the number of invention patents of Tencent in the same period was 1,447.
  • the inventions of the two companies about 80% of the total number of invention patents related to user experience and direct user operations.
  • similar patent applications, including other companies based on user experience are also of a large order of magnitude, such as Huawei.
  • the patent application process and the post-authorization maintenance process will generate human and financial costs: such as replying to review opinions, paying license fees, etc., for core technologies (such as CDMA underlying technology) or market identification.
  • core technologies such as CDMA underlying technology
  • market identification For relatively high-tech technologies (such as sliding unlocking), the related costs are negligible, and the investment in these technologies is worthwhile, but such technologies are a minority after all, and more technologies have been verified by the market. The user's pain points or itch points cannot be touched, and the patent investment in these technologies is likely to cause cost waste.
  • An embodiment of the invention provides a method for collecting times of use of a sensible street lamp technology, and aims to provide a method for collecting According to the change of light intensity, the brightness of the street lamp is automatically adjusted, which simplifies the operation of manually adjusting the brightness of the street lamp, and is more energy-saving and environmentally friendly. At the same time, timely feedback through the use of technology can also facilitate the timely and effective collection of relevant technologies by the manufacturer.
  • the invention is realized in this way: a method for collecting the number of times of using the sensible street lamp technology, comprising the following steps:
  • the brightness of the street lamp is adjusted to the brightness of the street lamp corresponding to the threshold period to which the current light intensity belongs, and the technical use data is transmitted to the data collection end preset by the manufacturer.
  • the embodiment of the invention further provides a street lamp, comprising:
  • a recording unit configured to record two or more illumination intensity threshold periods and corresponding street lamp brightnesses during each threshold period
  • a detecting unit detecting a current ambient light intensity; determining, according to the current ambient light intensity, a threshold period to which the current light intensity belongs;
  • the control unit is connected to the detecting unit, and is configured to adjust the brightness of the street lamp to a brightness of the street lamp corresponding to a threshold period to which the current light intensity belongs according to the current ambient light intensity;
  • the data sending unit is connected to the control unit, and is configured to send technical usage data to a data collection end preset by the manufacturer.
  • the invention automatically adjusts the brightness of the street lamp according to the change of the illumination intensity, thereby simplifying the operation of manually adjusting the brightness of the street lamp, and is more energy-saving and environmentally friendly.
  • the timely feedback by using the technology also facilitates the timely and effective collection of the relevant technology by the manufacturer.
  • FIG. 1 is a schematic flow chart of a method for collecting usage times of a sensible street lamp technology according to an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of a street lamp according to an embodiment of the present invention.
  • figure 1 It is a schematic flowchart of a method for collecting the number of times of the sensible street lamp technology provided by the embodiment of the present invention. For the convenience of description, only parts related to the embodiment of the present invention are shown.
  • step S101 two or more illumination intensity threshold periods and corresponding streetlight brightness during each threshold period;
  • multiple time periods may be set here to correspond to multiple different light intensities, such as the evening may be micro Light, night to early morning can be strong light, each time period can correspond to the corresponding light intensity.
  • setting time 1 (such as 18 o'clock to 20 o'clock in the evening) is a low light
  • setting time 2 evening to early morning 22 points -- 4 points
  • setting time 1 is a low light
  • setting time 2 is glare
  • step S102 detecting a current ambient light intensity
  • the light intensity of the environment in this weather will be darker than the sunny days of the sun, and a test procedure can be set up, for example, less than 18 o'clock in the evening (18 o'clock - 20 Point) You can enter the evening time 1 and continue lighting instead of always turning off.
  • step S103 according to the current ambient light intensity, the threshold period to which the current light intensity belongs is determined, and then the step is entered.
  • step S104 Adjust the brightness of the street lamp to a brightness of the street lamp corresponding to a threshold period to which the current light intensity belongs, and send the technical use data to the data collection end preset by the manufacturer.
  • the technology uses data for the user to use the data of the technology, that is, the data generated when the method completes the first few steps, the data includes the number of times the user uses the technology (eg, the first time using the technology within a certain period of time) Technology); the specific time point of using the technology; the user's related operations before and after using the technology can help the technology provider to better evaluate the market value of the technology, and better improve the technical data according to the feedback.
  • the invention automatically adjusts the brightness of the street lamp according to the change of the illumination intensity, thereby simplifying the operation of manually adjusting the brightness of the street lamp, and is more energy-saving and environmentally friendly.
  • the timely feedback by using the technology also facilitates the timely and effective collection of the relevant technology by the manufacturer.
  • FIG. 2 is a schematic structural diagram of a street lamp according to an embodiment of the present invention, where the street lamp includes:
  • the recording unit 21 records two or more illumination intensity threshold periods and corresponding street lamp brightnesses during each threshold period;
  • Detection unit 22 Detecting a current ambient light intensity; determining, according to the current ambient light intensity, a threshold period to which the current light intensity belongs;
  • connection is configured to adjust the brightness of the street lamp to a brightness of the street lamp corresponding to a threshold period to which the current light intensity belongs according to the current ambient light intensity;
  • the data sending unit 24 is connected to the control unit 23 and configured to send technical usage data to a data collection terminal preset by the manufacturer.
  • the working principle is: the recording unit 21 records two or more illumination intensity threshold periods and the corresponding street lamp brightness during each threshold period, and the detecting unit 22, detecting a current ambient light intensity, and determining, according to the current ambient light intensity, a threshold period to which the current light intensity belongs, the control unit 23 According to the current ambient light intensity, the brightness of the street lamp is adjusted to the brightness of the street lamp corresponding to the threshold period to which the current light intensity belongs, and at the same time, the data transmitting unit 24 Send technical usage data to the data acquisition terminal preset by the manufacturer.
  • the invention automatically adjusts the brightness of the street lamp according to the change of the illumination intensity, thereby simplifying the operation of manually adjusting the brightness of the street lamp, and is more energy-saving and environmentally friendly.
  • the timely feedback by using the technology also facilitates the timely and effective collection of the relevant technology by the manufacturer.

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

Abstract

一种感光路灯技术使用次数采集方法以及感光路灯,所述方法包括:记录两个以上的光照强度阈值期间以及各阈值期间对应的路灯亮度(S101);检测当前的环境光照强度(S102);根据当前的环境光照强度,判断当前所述光照强度所属的阈值期间(S103);将路灯亮度调整为与当前光照强度所属的阈值期间相对应的路灯亮度,并向厂家预设的数据采集端发送技术使用数据(S104)。该方法根据光照强度的变化自动调节路灯亮度,从而简化了人工调节路灯亮度的操作,更加节能环保,同时,通过使用技术后的及时反馈,也方便厂家及时有效的采集相关技术的使用情况。

Description

感光路灯技术使用次数采集方法以及感光路灯 技术领域
本发明属于生活器具领域,尤其是涉及一种感光路灯技术使用次数采集方法以及感光路灯。
背景技术
现在企业申请的专利数量越来越多,而且将专利用在市场上、产品中的情形也越来越多。
根据国家知识产权的数据库显示,OPPO公司在2014年申请的发明专利数为938个,而同期的腾讯公司的发明专利数为1447个。这两家公司的发明中,有关于用户体验和用户直接操作相关的发明专利约占总数的80%左右。当然包括其他以用户体验为主的公司的类似专利申请也是具有很大的数量级,比如小米公司等。
考虑到技术使用的同时,专利的申请过程和授权后的维护过程都会产生人力、财力上的成本:如答复审查意见、缴纳授权费等,对于核心技术(如:CDMA的底层技术)或市场认同度比较高的技术(如:滑动解锁)而言,那么相关成本就可以忽略不计,对于这些技术的投入是值得的,但这类技术毕竟是少数,更多的技术经过市场验证后,其实并不能触及用户的痛点或痒点,而对这些技术的专利投入,就容易造成成本的浪费。
所以需要有一种方法能够通过实在的数据,及时评估相关技术的市场接受度或价值,同时,为了使得本人的上一个申请《 调节路灯光亮强度的方法以及感光路灯 》中的相关技术得到及时评估,特提出一种技术使用数据的采集/发送的方法。
技术问题
本发明实施例一种感光路灯技术使用次数采集方法,目的在于提供一种 根据光照强度的变化自动调节路灯亮度,从而简化了人工调节路灯亮度的操作,更加节能环保,同时,通过使用技术后的及时反馈,也方便厂家及时有效的采集相关技术的使用情况。
技术解决方案
本发明是这样实现的:一种感光路灯技术使用次数采集方法,包括以下步骤:
记录两个以上的光照强度阈值期间以及各阈值期间对应的路灯亮度;
检测当前的环境光照强度;
根据当前的环境光照强度,判断当前所述光照强度所属的阈值期间;
将路灯亮度调整为与当前光照强度所属的阈值期间相对应的路灯亮度,并向厂家预设的数据采集端发送技术使用数据。
本发明实施例还提供了一种路灯,包括:
记录单元,用于记录两个以上的光照强度阈值期间以及各阈值期间对应的路灯亮度;
检测单元,检测当前的环境光照强度;根据当前的环境光照强度,判断当前所述光照强度所属的阈值期间;
调控单元,与所述检测单元连接,用于根据当前的环境光照强度,将路灯亮度调整为与当前光照强度所属的阈值期间相对应的路灯亮度;
数据发送单元,与所述调控单元连接,用于向厂家预设的数据采集端发送技术使用数据。
有益效果
该发明根据光照强度的变化自动调节路灯亮度,从而简化了人工调节路灯亮度的操作,更加节能环保,同时,通过使用技术后的及时反馈,也方便厂家及时有效的采集相关技术的使用情况。
附图说明
图 1 是本发明实施例提供的一种感光路灯技术使用次数采集方法的流程示意图;
图 2 是本发明实施例提供的路灯的结构示意图。
本发明的实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
图 1 是发明实施例提供的一种感光路灯技术使用次数采集方法的流程示意图,为了便于说明,只示出了与本发明实施例相关的部分。
在步骤 S101 中 记录两个以上的光照强度阈值期间以及各阈值期间对应的路灯亮度;
由于路灯的使用可能为了满足多个环境下的使用需求,或者为了满足不同时间段的使用需求,所以此处可以设置多个时间段,用以对应多个不同的光亮强度,比如傍晚可以是微光、晚上至凌晨可以是强光,每个时间段都可以对应相应的光亮强度。
在本发明实施例中,设置时间 1 (如傍晚 18 点 --20 点)为微光,设置时间 2 (晚上至凌晨 22 点 --4 点)为强光。
在步骤 S102 中,检测当前的环境光照强度;
某些特殊的情况下,例如阴雨天,这种天气下环境的光照强度会比艳阳高照的晴天更显得阴暗,可以设置一个检测程序,例如还不到傍晚( 18 点 --20 点)可以提前进入傍晚时间 1 ,继续照明,而不是一直关闭。
在步骤 S103 中,根据当前的环境光照强度,判断当前所述光照强度所属的阈值期间,之后进入步骤 S104 ,将路灯亮度调整为与当前光照强度所属的阈值期间相对应的路灯亮度,并向厂家预设的数据采集端发送技术使用数据。
所述技术使用数据为用户使用该技术的数据,即所述方法走完前几个步骤时产生的数据,所述数据包括用户使用该技术的次数(如在一定时间内是第几次使用该技术);使用该技术的具体时间点;使用该技术前后用户的相关操作等有助于技术提供方更好的评价技术的市场价值,并根据所述反馈更好的改进技术的数据。
该发明根据光照强度的变化自动调节路灯亮度,从而简化了人工调节路灯亮度的操作,更加节能环保,同时,通过使用技术后的及时反馈,也方便厂家及时有效的采集相关技术的使用情况。
图 2 是本发明实施例提供的一种 路灯 的结构示意图,该路灯包括:
记录单元 21 ,记录两个以上的光照强度阈值期间以及各阈值期间对应的路灯亮度;
检测单元 22 ,检测当前的环境光照强度;根据当前的环境光照强度,判断当前所述光照强度所属的阈值期间;
调控单元 23 ,与所述检测单元 22 连接,用于根据当前的环境光照强度,将路灯亮度调整为与当前光照强度所属的阈值期间相对应的路灯亮度;
数据发送单元 24 ,与所述调控单元 23 连接,用于向厂家预设的数据采集端发送技术使用数据。
其工作原理是:记录单元 21 记录两个以上的光照强度阈值期间以及各阈值期间对应的路灯亮度,检测单元 22 ,检测当前的环境光照强度,根据当前的环境光照强度,判断当前所述光照强度所属的阈值期间,调控单元 23 根据当前的环境光照强度,将路灯亮度调整为与当前光照强度所属的阈值期间相对应的路灯亮度,同时,数据发送单元 24 向厂家预设的数据采集端发送技术使用数据。
该发明根据光照强度的变化自动调节路灯亮度,从而简化了人工调节路灯亮度的操作,更加节能环保,同时,通过使用技术后的及时反馈,也方便厂家及时有效的采集相关技术的使用情况。
以上仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (2)

  1. 一种感光路灯技术使用次数采集方法,其特征在于,所述方法包括如下步骤:
    记录两个以上的光照强度阈值期间以及各阈值期间对应的路灯亮度;
    检测当前的环境光照强度;
    根据当前的环境光照强度,判断当前所述光照强度所属的阈值期间;
    将路灯亮度调整为与当前光照强度所属的阈值期间相对应的路灯亮度,并向厂家预设的数据采集端发送技术使用数据。
  2. 一种感光路灯,其特征在于,所述感光路灯包括:
    记录单元,用于记录两个以上的光照强度阈值期间以及各阈值期间对应的路灯亮度;
    检测单元,检测当前的环境光照强度;根据当前的环境光照强度,判断当前所述光照强度所属的阈值期间;
    调控单元,与所述检测单元连接,用于根据当前的环境光照强度,将路灯亮度调整为与当前光照强度所属的阈值期间相对应的路灯亮度;
    数据发送单元,与所述调控单元连接,用于向厂家预设的数据采集端发送技术使用数据。
PCT/CN2016/071930 2016-01-24 2016-01-24 感光路灯技术使用次数采集方法以及感光路灯 WO2017124571A1 (zh)

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