WO2017132895A1 - 自动浇灌技术的数据采集方法及智能盆栽喷水系统 - Google Patents

自动浇灌技术的数据采集方法及智能盆栽喷水系统 Download PDF

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Publication number
WO2017132895A1
WO2017132895A1 PCT/CN2016/073343 CN2016073343W WO2017132895A1 WO 2017132895 A1 WO2017132895 A1 WO 2017132895A1 CN 2016073343 W CN2016073343 W CN 2016073343W WO 2017132895 A1 WO2017132895 A1 WO 2017132895A1
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soil moisture
moisture information
information
user
current
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PCT/CN2016/073343
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English (en)
French (fr)
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刘芬
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刘芬
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Priority to PCT/CN2016/073343 priority Critical patent/WO2017132895A1/zh
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G27/00Self-acting watering devices, e.g. for flower-pots

Definitions

  • the invention belongs to the field of household appliances, and provides a data collecting method for automatic watering technology and a smart potting water spraying system.
  • 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.
  • the embodiment of the invention provides a data collection method of the automatic watering technology and a smart pot water spraying system, which can match the humidity of the user with the humidity set by the user, so that the system can timely find out whether the soil moisture reaches the standard and then sprays the water.
  • the system adjusts the soil moisture of the potted plants, reduces the workload, improves the scientific level and refinement of the pot culture, and ensures the healthy growth of the plants.
  • it is also convenient for the manufacturers to collect the relevant technologies in a timely and effective manner.
  • the present invention is implemented as follows: a data collection method for automatic watering technology, comprising the following steps:
  • the embodiment of the invention further provides a smart pot water spraying system, comprising:
  • a recording unit for recording user-set pot soil moisture information and current soil moisture information
  • a reading unit wherein the input end is connected to the output end of the recording unit, and is configured to read the user-set pot soil moisture information and the current soil moisture information;
  • a determining unit wherein the input end is connected to the output end of the reading unit, and is configured to determine whether the current soil moisture information is lower than the set soil moisture information
  • control unit wherein the input end is connected to the output end of the determining unit, and is configured to start the water spray system to increase the soil moisture when the current soil moisture information is lower than the set soil moisture information;
  • the data sending unit is connected to the output end of the control unit, and is configured to send technical usage data to a data collection end preset by the manufacturer.
  • the system can timely find out whether the soil moisture is up to standard, and then adjust the soil moisture of the potted soil through the water spray system, reduce the workload, improve the scientific level and refinement of pot culture, and ensure the plant.
  • FIG. 1 is a schematic flow chart of a data collection method of an automatic watering technology according to an embodiment of the present invention
  • FIG. 2 is a schematic structural view of a smart pot water spray system provided by an embodiment of the present invention.
  • figure 1 It is a schematic flowchart of a data collection method of an automatic watering 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 the pot soil moisture information set by the user and the current soil moisture information are recorded.
  • the user needs to determine the pot soil moisture according to the water demand and soil moisture setting of the plant, so as not to frequently spray water and drown the plants because the humidity standard is too high; Can not achieve the desired result because the setting standard is too low. Because the soil moisture and living environment required by different plants are different, they cannot be uniformly set. It should be set by the user according to the characteristics of the plant combined with the knowledge of scientific farming.
  • step S102 the potted soil moisture information set by the user and the current soil moisture information are read.
  • step S103 it is determined whether the current soil moisture information is lower than the set soil moisture information. If no, go to step S104. It is considered to meet the growth requirements of potted plants, and does not start the water spray system; if yes, proceed to step S105, start the water spray system, increase the soil moisture, 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 system can timely find out whether the soil moisture is up to standard, and then adjust the soil moisture of the potted soil through the water spray system, reduce the workload, improve the scientific level and refinement of pot culture, and ensure the plant.
  • FIG. 2 is a schematic structural view of a smart potting water spraying system according to an embodiment of the present invention, the smart potting water spraying system includes:
  • the recording unit 21, the reading unit 22, the judging unit 23, the regulating unit 24, and the data transmitting unit 25 among them
  • a recording unit 21 configured to record user-set pot soil moisture information and current soil moisture information
  • a reading unit 22 an input end thereof and the recording unit 21
  • the output connection is used for reading the user-set pot soil moisture information and the current soil moisture information
  • a judging unit 23 an input end thereof and the reading unit 22 The output end is connected to determine whether the current soil moisture information is lower than the set soil moisture information;
  • Control unit 24 its input terminal and the judging unit 23
  • the output connection is used to determine that the current soil moisture information is lower than the set soil moisture information, start the water spray system, and increase the soil moisture;
  • a data transmitting unit 25 an input end thereof and the regulating unit 24
  • the output connection is used to send technical usage data to the data acquisition terminal preset by the manufacturer.
  • the working principle is: the recording unit 21 records the user-set pot soil moisture information and the current soil moisture information; the reading unit 22 Reading the user-set pot soil moisture information and the current soil moisture information; the determining unit 23 determines whether the current soil moisture information is lower than the set soil moisture information; the regulating unit 24 When the current soil moisture information is lower than the set soil moisture information, the water spray system is started to increase the soil moisture, and at the same time, the data transmitting unit 25 sends the technical use data to the data collection end preset by the manufacturer.
  • the system can timely find out whether the soil moisture is up to standard, and then adjust the soil moisture of the potted soil through the water spray system, reduce the workload, improve the scientific level and refinement of pot culture, and ensure the plant.

Abstract

本发明属于家电领域,提供了一种自动浇灌技术的数据采集方法及智能盆栽喷水系统,所述方法包括:记录用户设定的盆栽土壤湿度信息和当前土壤湿度信息;读取设定的盆栽土壤湿度信息和当前土壤湿度信息;判断设定的土壤湿度信息是否低于当前土壤湿度信息;若否,视为符合盆栽植物生长需求,不启动喷水系统;若是,启动喷水系统,增加土壤湿度,并向厂家预设的数据采集端发送技术使用数据。该发明可以提高盆栽养殖的科学水平和精细化程度,保证植物的健康成长,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

自动浇灌技术的数据采集方法及智能盆栽喷水系统 技术领域
本发明属于家电 领域 ,提供了一种自动浇灌技术的数据采集方法及智能盆栽喷水系统。
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《 根据盆栽土壤湿度匹配浇灌方法及智能盆栽喷水系统 》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
本发明实施例提供了一种自动浇灌技术的数据采集方法及智能盆栽喷水系统,能够通过将土壤湿度与用户设定的湿度相匹配,让系统能够及时发现土壤湿度是否达标,进而通过喷水系统调节盆栽土壤湿度,减少工作量,提高盆栽养殖的科学水平和精细化程度,保证植物的健康成长,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:一种自动浇灌技术的数据采集方法,包括以下步骤:
记录用户设定的盆栽土壤湿度信息和当前土壤湿度信息;
读取用户设定的盆栽土壤湿度信息和当前土壤湿度信息;
判断当前土壤湿度信息是否低于设定的土壤湿度信息;
若否,视为符合盆栽植物生长需求,不启动喷水系统;
若是,启动喷水系统,增加土壤湿度,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智能盆栽喷水系统,包括:
记录单元,用于记录用户设定的盆栽土壤湿度信息和当前土壤湿度信息;
读取单元,其输入端与所述记录单元的输出端连接,用于读取用户设定的盆栽土壤湿度信息和当前土壤湿度信息;
判断单元,其输入端与所述读取单元的输出端连接,用于判断当前土壤湿度信息是否低于设定的土壤湿度信息;
调控单元,其输入端与所述判断单元的输出端连接,用于判断当前土壤湿度信息低于设定的土壤湿度信息时,启动喷水系统,增加土壤湿度;
数据发送单元,其输入端与所述调控单元的输出端连接,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
通过将土壤湿度与用户设定的湿度相匹配,让系统能够及时发现土壤湿度是否达标,进而通过喷水系统调节盆栽土壤湿度,减少工作量,提高盆栽养殖的科学水平和精细化程度,保证植物的健康成长,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自动浇灌技术的数据采集方法 的流程示意图 ;
图 2 是本发明实施例提供的智能盆栽喷水系统的结构示意图。
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自动浇灌技术的数据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,记录用户设定的盆栽土壤湿度信息和当前土壤湿度信息。
记录用户设定的盆栽土壤湿度信息,需要用户根据该类植物的需水量和土壤湿度设定,合理的确定盆栽土壤湿度,不致因为设定湿度标准过高而频繁喷水,淹死植物;也不能因设置标准太低,达不到理想的效果。因为不同的植物需要的土壤湿度和生存环境各不相同,所以不能统一设定,应当由用户根据植物的特性结合科学养殖的知识合理设定。
在步骤 S102 中,读取用户设定的盆栽土壤湿度信息和当前土壤湿度信息。
在步骤 S103 中,判断当前土壤湿度信息是否低于设定的土壤湿度信息。若否,进入步骤 S104 ,视为符合盆栽植物生长需求,不启动喷水系统;若是,进入步骤 S105 ,启动喷水系统,增加土壤湿度,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。
通过将土壤湿度与用户设定的湿度相匹配,让系统能够及时发现土壤湿度是否达标,进而通过喷水系统调节盆栽土壤湿度,减少工作量,提高盆栽养殖的科学水平和精细化程度,保证植物的健康成长,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智能盆栽喷水系统的结构示意图,该智能盆栽喷水系统包括:
记录单元 21 ,读取单元 22 ,判断单元 23 ,调控单元 24 ,数据发送单元 25 ,其中
记录单元 21 ,用于记录用户设定的盆栽土壤湿度信息和当前土壤湿度信息;
读取单元 22 ,其输入端与所述记录单元 21 的输出端连接,用于读取用户设定的盆栽土壤湿度信息和当前土壤湿度信息;
判断单元 23 ,其输入端与所述读取单元 22 的输出端连接,用于判断当前土壤湿度信息是否低于设定的土壤湿度信息;
调控单元 24 ,其输入端与所述判断单元 23 的输出端连接,用于判断当前土壤湿度信息低于设定的土壤湿度信息时,启动喷水系统,增加土壤湿度;
数据发送单元 25 ,其输入端与所述调控单元 24 的输出端连接,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 记录用户设定的盆栽土壤湿度信息和当前土壤湿度信息;读取单元 22 读取用户设定的盆栽土壤湿度信息和当前土壤湿度信息;判断单元 23 判断当前土壤湿度信息是否低于设定的土壤湿度信息;调控单元 24 在当前土壤湿度信息低于设定的土壤湿度信息时,启动喷水系统,增加土壤湿度,同时,数据发送单元 25 向厂家预设的数据采集端发送技术使用数据。
通过将土壤湿度与用户设定的湿度相匹配,让系统能够及时发现土壤湿度是否达标,进而通过喷水系统调节盆栽土壤湿度,减少工作量,提高盆栽养殖的科学水平和精细化程度,保证植物的健康成长,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. 一种自动浇灌技术的数据采集方法,其特征在于,所述方法包括如下步骤:
    记录用户设定的盆栽土壤湿度信息和当前土壤湿度信息;
    读取用户设定的盆栽土壤湿度信息和当前土壤湿度信息;
    判断当前土壤湿度信息是否低于设定的土壤湿度信息;
    若否,视为符合盆栽植物生长需求,不启动喷水系统;
    若是,启动喷水系统,增加土壤湿度,并向厂家预设的数据采集端发送技术使用数据。
  2. 一种智能盆栽喷水系统,其特征在于,所述智能盆栽喷水系统包括:
    记录单元,用于记录用户设定的盆栽土壤湿度信息和当前土壤湿度信息;
    读取单元,其输入端与所述记录单元的输出端连接,用于读取用户设定的盆栽土壤湿度信息和当前土壤湿度信息;
    判断单元,其输入端与所述读取单元的输出端连接,用于判断当前土壤湿度信息是否低于设定的土壤湿度信息;
    调控单元,其输入端与所述判断单元的输出端连接,用于判断当前土壤湿度信息低于设定的土壤湿度信息时,启动喷水系统,增加土壤湿度;
    数据发送单元,其输入端与所述调控单元的输出端连接,用于向厂家预设的数据采集端发送技术使用数据。
PCT/CN2016/073343 2016-02-03 2016-02-03 自动浇灌技术的数据采集方法及智能盆栽喷水系统 WO2017132895A1 (zh)

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CN105230452A (zh) * 2015-11-06 2016-01-13 南京工业职业技术学院 一种智能浇花系统

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CN114460195A (zh) * 2022-01-27 2022-05-10 河北科技大学 一种大气颗粒物中全氟和多氟烷基化合物的采样检测方法
CN114460195B (zh) * 2022-01-27 2023-09-22 河北科技大学 一种大气颗粒物中全氟和多氟烷基化合物的采样检测方法

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