WO2018218460A1 - 基于服务器的智能浇灌花盆系统及使用方法 - Google Patents

基于服务器的智能浇灌花盆系统及使用方法 Download PDF

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WO2018218460A1
WO2018218460A1 PCT/CN2017/086418 CN2017086418W WO2018218460A1 WO 2018218460 A1 WO2018218460 A1 WO 2018218460A1 CN 2017086418 W CN2017086418 W CN 2017086418W WO 2018218460 A1 WO2018218460 A1 WO 2018218460A1
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server
module
flowerpot
flower pot
water
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PCT/CN2017/086418
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English (en)
French (fr)
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王兴华
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九尊城网络科技(深圳)有限公司
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Priority to PCT/CN2017/086418 priority Critical patent/WO2018218460A1/zh
Publication of WO2018218460A1 publication Critical patent/WO2018218460A1/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

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  • the invention relates to a server-based intelligent watering flowerpot system and a using method thereof.
  • the object of the present invention is to solve the technical problems of prior art plants lacking nursing intelligent care, etc.
  • the present invention provides a server-based intelligent watering flowerpot system and a using method thereof.
  • the specific technical solutions of the present invention are as follows:
  • the invention provides a server-based intelligent watering flowerpot system, comprising a flower pot and a server for controlling flower pots, wherein the flower pot comprises a temperature and humidity detecting module for detecting soil temperature and humidity information in the flower pot, and The information is sent to the server; the light detection module is configured to detect the light intensity information of the position of the flowerpot, and send the information to the server; the water injection module is used for injecting water into the soil in the flowerpot under the control of the server; the flowerpot communication module is used Establishing communication with the server; the server, according to the detection information sent by the temperature and humidity detecting module and the light detecting module, after analyzing, determining whether it is necessary to water the soil in the flower pot, and when determining that watering is required, the flower pot is The water injection module in the middle sends out a control command.
  • the flower pot comprises a temperature and humidity detecting module for detecting soil temperature and humidity information in the flower pot, and The information is sent to the server; the light detection module is configured to detect the light intensity information of
  • the server includes
  • a server-side communication module configured to establish communication with the flowerpot communication module
  • a processing module configured to send detection information to the received temperature and humidity detection module and the illumination detection module Analyze to determine whether it is necessary to water the soil in the pot. When it is judged that watering is required, a control command is issued to the water injection module in the pot.
  • the flowerpot further includes a drainage module controlled by the server processing module for discharging excess water in the soil of the flowerpot.
  • the server further includes a timing module for setting the watering timing, and sending a time signal to the processing module when the timing time comes.
  • the water injection module includes a water quantity monitoring unit for detecting the amount of water stored in the water injection module, and when the water quantity is lower than the preset warning value, an alarm signal is issued to remind the water injection.
  • the water quantity monitoring unit sends an alarm signal to play the sound.
  • the invention also provides a server-based intelligent watering flower pot using method, comprising the following steps:
  • the server receives the temperature and humidity information of the soil in the flower pot sent by the temperature and humidity detecting module in the flower pot, and the light intensity information of the position of the flower pot sent by the light detecting module;
  • the server determines whether it is necessary to fill or drain the soil in the flowerpot;
  • the water injection module in the control flowerpot starts to inject water into the soil in the flowerpot.
  • the server determines, according to the result of the analysis, that the watering time is set when the current time does not need to be watered, and when the set time comes, the water injection module in the control flower pot starts to fill the soil in the flower pot.
  • step S3 further includes
  • the method further includes the following steps:
  • the water quantity monitoring unit in the water injection module of the flower pot sends an alarm signal to remind the water injection when detecting that the water quantity stored in the water injection module is lower than the preset warning value.
  • the invention utilizes the temperature and humidity detecting module and the light detecting module arranged in the flower pot to detect the temperature and humidity information of the soil in the flower pot and the illumination information of the position of the flower pot, and the detection information is sent to the server and analyzed by the same,
  • the server controls the active water injection module in the flower pot to fill the soil in the flower pot, and the invention can realize the intelligent nursing of the flower pot to the plant, and can automatically water the plant according to environmental changes.
  • FIG. 1 is a block diagram showing a server-based intelligent watering pot system according to Embodiment 1 of the present invention
  • FIG. 2 is a block diagram showing a server-based intelligent watering pot system according to Embodiment 2 of the present invention.
  • the present invention provides a server-based intelligent watering flowerpot system, including a flower pot and a server for controlling flower pots, wherein the flower pot includes a temperature and humidity detecting module disposed in the flower pot, a light detecting module, and water injection. Module and flower pot communication module. among them,
  • the temperature and humidity detection module is configured to detect soil temperature and humidity information in the flower pot and send the information to the control module.
  • the temperature and humidity detection module can detect the soil temperature and humidity information in the flower pot in real time, or it is for energy saving considerations, and automatically detects the soil temperature and humidity information in the flower pot at a predetermined time interval, and sends the information to the control module. Self-closing.
  • the light detection module is used for the light intensity information of the position of the flowerpot and sends the information to the control module.
  • the light detection module may be real-time detecting the light intensity information of the position of the flower pot, or for the purpose of energy saving, automatically starting the light intensity information of the position where the flower pot is detected at a predetermined time interval, and transmitting the information to the control module. , self-closing.
  • a flowerpot communication module for establishing communication with a server.
  • the detection information of the temperature and humidity detection module and the illumination detection module is sent to the server, and receives a control instruction transmitted back by the server.
  • the water injection module is configured to start watering the soil in the flower pot when receiving the water injection operation instruction sent by the server.
  • a plurality of water injection ports can be arranged at equal intervals along the inner wall of the flower pot circumference, thereby ensuring uniform water injection to the soil.
  • the server includes a server segment communication module and a processing module.
  • the server establishes a communication connection with the flowerpot through the server-side communication module, according to the detection information sent by the temperature and humidity detection module and the illumination detection module, after analysis, it is determined whether it is necessary to water the soil in the flowerpot, when it is judged that watering is required.
  • the flowerpot communication module sends a control command to the water injection module in the flowerpot.
  • a communication connection can be established between the server and the flowerpot via wireless or Bluetooth.
  • Embodiment 2 of the present invention provides a server-based intelligent watering flowerpot system, which is substantially the same as the technical solution of Embodiment 1, and the main differences are as follows:
  • the water tank further includes a drainage module
  • the water injection module includes a water quantity monitoring unit (not shown)
  • the server further includes a timing module, wherein
  • the drainage module discharges excess water from the pot soil under the control of the server.
  • the server receives the detection information sent by the temperature and humidity detection module and the illumination detection module, it analyzes whether it is necessary to fill the soil in the flowerpot, and also determines whether it is necessary to drain the soil in the flowerpot. When the analysis determines that the soil moisture in the flower pot is too much and needs to drain, the server issues a control control command to the drainage module in the flower pot, and the drainage module discharges excess water to the outside.
  • the server also includes a timing module for setting the watering timing and sending a time signal to the processing module when the timing time comes.
  • the timing module can be used to set the next watering time.
  • the timing module sends a time signal to the processing module to process The module issues a water injection control command to the pot.
  • the water pot water injection module further comprises a water quantity monitoring unit, wherein the water quantity monitoring unit is configured to detect the amount of water stored in the water injection module, and when the water quantity is lower than a preset warning value, an alarm signal is issued to remind the water injection.
  • the way to send an alarm signal can be by playing sound.
  • the invention utilizes the temperature and humidity detecting module and the light detecting module arranged in the flower pot to detect the temperature and humidity information of the soil in the flower pot and the illumination information of the position of the flower pot, and the detection information is sent to the server and analyzed by the same,
  • the server controls the active water injection module in the flower pot to the flower pot
  • the soil is filled with water, and the invention can realize the intelligent nursing of the flowerpot to the plant, and can automatically water the plant according to environmental changes.
  • the present invention also provides a method for automatically watering a smart flower pot, comprising the following steps:
  • the server receives the temperature and humidity information of the soil in the flower pot sent by the temperature and humidity detecting module in the flower pot, and the light intensity information of the position of the flower pot sent by the light detecting module;
  • the server determines whether it is necessary to fill or drain the soil in the flowerpot;
  • the water injection module in the control flowerpot starts to inject water into the soil in the flowerpot.
  • the server determines, according to the result of the analysis, that the watering time is set when the current time does not need to be watered, and when the set time comes, the water injection module in the control flower pot starts to fill the soil in the flower pot.
  • step S3 further includes
  • the method further includes the following steps:
  • the water quantity monitoring unit in the water injection module of the flower pot sends an alarm signal to remind the water injection when detecting that the water quantity stored in the water injection module is lower than the preset warning value.

Abstract

基于服务器的智能浇灌花盆系统及使用方法,可根据环境变化,自动给植物浇水。基于服务器的智能浇灌花盆系统包括花盆和控制花盆的移动终端,其中,花盆包括温湿度检测模块、光照检测模块、注水模块和花盆通信模块,服务器接收温湿度检测模块和光照检测模块,并经分析后,判断是否需要向花盆中的土壤浇水,当判断需要浇水时,向花盆中注水模块发出控制指令。

Description

基于服务器的智能浇灌花盆系统及使用方法 技术领域
本发明涉及一种基于服务器的智能浇灌花盆系统及使用方法。
背景技术
随着人们生活水平的提高,人们对于生活质量及生活环境的要求也越来越高。现代生活中,许多人都喜欢在家里养些植物来净化空气,美化环境。要养好植物,必需定期的护理,比如浇水、施肥,否则植物会生长不好甚至凋零死亡。然而,许多人因工作忙碌或者生活琐事忘记了对植物的定期护理,导致植物会凋零死亡。
发明内容
本发明的目的就是为了解决现有技术植物缺乏护理智能照护等技术问题,本发明提供一种基于服务器的智能浇灌花盆系统及使用方法。本发明的具体技术方案如下:
本发明提供一种基于服务器的智能浇灌花盆系统,包括花盆和控制花盆的服务器,其中,所述花盆包括,温湿度检测模块,用于检测花盆内土壤温湿度信息,并将信息发送给服务器;光照检测模块,用于检测花盆所在位置的光照强度信息,并将信息发送给服务器;注水模块,用于在服务器控制下向花盆内土壤注水;花盆通信模块,用于与服务器建立通信;所述服务器,根据温湿度检测模块和光照检测模块发送的检测信息,经分析后,判断是否需要向花盆中的土壤浇水,当判断需要浇水时,向花盆中的注水模块发出控制指令。
进一步的,所述服务器包括,
服务器端通信模块,用于与花盆通信模块建立通信;
处理模块,用于对接收的温湿度检测模块和光照检测模块发送的检测信息 进行分析,判断是否需要向花盆中的土壤浇水,当判断需要浇水时,向花盆中的注水模块发出控制指令。
进一步的,花盆中还包括受控于服务器处理模块的排水模块,用于排出花盆土壤中多余的水分。
进一步的,服务器还包括计时模块,用于设定浇水计时时间,并当计时时间到来时,向处理模块发送时间信号。
进一步的,注水模块中包括水量监控单元,用于检测注水模块中存储的水量,并当水量低于预设的警戒值,发出报警信号,提醒进行注水。
进一步的,所述水量监控单元发出报警信号方式为播放声音。
本发明还提供一种基于服务器的智能浇灌花盆使用方法,包括以下步骤:
S1、服务器,接收来自花盆中温湿度检测模块发送的花盆内土壤温湿度信息,以及光照检测模块发送的花盆所在位置的光照强度信息;
S2、服务器对上述信息经过分析后,判断是否需要对花盆内的土壤进行注水或排水;
S3、当服务器判断需要对花盆内的植物注水时,控制花盆中注水模块开始往花盆内的土壤进行注水。
进一步的,在步骤S2与S3之间还包括步骤
S30、服务器根据分析的结果,判断在当前时刻不需要浇水时,设定下次浇水时间,当设定时间到来时,控制控制花盆中注水模块开始往花盆内的土壤进行注水。
进一步的,步骤S3之中还包括
S31、当服务器判断需要对花盆内的植物排水时,控制花盆中排水模块开始向花盆外排水。
进一步的,所述步骤S3后还包括步骤:
S32、花盆中注水模块中的水量监控单元当检测到注水模块中存储的水量低于预设的警戒值时,发出报警信号,提醒进行注水。
相较于现有技术,本发明所述基于服务器的智能浇灌花盆系统及使用方法的主要有益效果在于:
本发明利用在花盆中设置的温湿度检测模块和光照检测模块,对花盆中土壤的温湿度信息,以及花盆所在位置的光照信息进行检测,检测信息发送给服务器并经其分析后,当需要注水时,服务器控制花盆中主动注水模块向花盆中的土壤注水,采用本发明可以对实现花盆对植物的智能化护理,可根据环境变化,自动给植物浇水。
附图说明
图1为本发明实施例1基于服务器的智能浇灌花盆系统方框示意图;
图2为本发明实施例2基于服务器的智能浇灌花盆系统方框示意图。
具体实施方式
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,并不用来限定本发明。
实施例1
请参阅图1,本发明提供一种基于服务器的智能浇灌花盆系统,包括花盆和控制花盆的服务器,其中,花盆包括置于花盆中的温湿度检测模块、光照检测模块、注水模块和花盆通信模块。其中,
温湿度检测模块,用于检测花盆内土壤温湿度信息,并将信息发送给控制模块。温湿度检测模块可以是实时检测花盆内土壤温湿度信息,又或者是出于节能考虑,间隔一定预设时间自启动检测花盆内土壤温湿度信息,并在将信息发送给控制模块了,进行自关闭。
光照检测模块,用于花盆所在位置的光照强度信息,并将信息发送给控制模块。光照检测模块可以是实时检测花盆所在位置的光照强度信息,又或者是出于节能考虑,间隔一定预设时间自启动检测花盆所在位置的光照强度信息,并在将信息发送给控制模块了,进行自关闭。
花盆通信模块,用于与服务器建立通信。当温湿度检测模块和光照检测模块的检测信息发送给服务器,并接收服务器传输回的控制指令。
注水模块,用于当接收到服务器发送的注水操作指令时,开始向花盆中的土壤浇水。注水模块在实际的结构设计中,可沿花盆圆周内壁等间距设置多个注水口,从而保证向土壤进行均匀注水。
服务器,包括服务器段通信模块与处理模块。当服务器通过服务器端通信模块与花盆建立通信连接,根据温湿度检测模块和光照检测模块发送的检测信息,经分析后,判断是否需要向花盆中的土壤浇水,当判断需要浇水时,就通过花盆通信模块向花盆中的注水模块发出控制指令。服务器与花盆之间可通过无线或蓝牙建立通信连接。
实施例2
请参阅图2,本发明实施例2提供一种基于服务器的智能浇灌花盆系统,其与实施例1的技术方案大体相同,其主要区别在于:
花盆中还包括排水模块,注水模块中包括水量监控单元(图中未示出),服务器还包括计时模块,其中
排水模块,在服务器的控制下,排出花盆土壤中多余的水分。当服务器接收到温湿度检测模块和光照检测模块发送的检测信息,在分析判断是不是需要往花盆中的土壤进行注水的同时,还对是不是需要对花盆内的土壤进行排水作出判断。当分析判断出花盆中的土壤水分过多,需要排水时,服务器就向花盆中的排水模块发出控制控制指令,排水模块向外排出多余水分。
服务器还包括计时模块,用于设定浇水计时时间,并当计时时间到来时,向处理模块发送时间信号。当处理模块根据接收的检测信息,判断在当前时刻不需要注水时,可通过控制计时模块,设定下次浇水时间,当设定时间到来时,计时模块向处理模块爱发送时间信号,处理模块就向花盆发出注水控制指令。
花盆注水模块中还包括水量监控单元,该水量监控单元用于检测注水模块中存储的水量,并当水量低于预设的警戒值,发出报警信号,提醒进行注水。发出报警信号的方式可以是采用播放声音的方式。
本发明利用在花盆中设置的温湿度检测模块和光照检测模块,对花盆中土壤的温湿度信息,以及花盆所在位置的光照信息进行检测,检测信息发送给服务器并经其分析后,当需要注水时,服务器控制花盆中主动注水模块向花盆中 的土壤注水,采用本发明可以对实现花盆对植物的智能化护理,可根据环境变化,自动给植物浇水。
请一并参阅图1和图2,本发明还提供一种自动浇灌的智能花盆使用方法,包括以下步骤:
S1、服务器,接收来自花盆中温湿度检测模块发送的花盆内土壤温湿度信息,以及光照检测模块发送的花盆所在位置的光照强度信息;
S2、服务器对上述信息经过分析后,判断是否需要对花盆内的土壤进行注水或排水;
S3、当服务器判断需要对花盆内的植物注水时,控制花盆中注水模块开始往花盆内的土壤进行注水。
进一步的,在步骤S2与S3之间还包括步骤
S30、服务器根据分析的结果,判断在当前时刻不需要浇水时,设定下次浇水时间,当设定时间到来时,控制控制花盆中注水模块开始往花盆内的土壤进行注水。
进一步的,步骤S3之中还包括
S31、当服务器判断需要对花盆内的植物排水时,控制花盆中排水模块开始向花盆外排水。
进一步的,所述步骤S3后还包括步骤:
S32、花盆中注水模块中的水量监控单元当检测到注水模块中存储的水量低于预设的警戒值时,发出报警信号,提醒进行注水。
应说明的是,以上实施例仅用以说明本发明的技术方案而非限制,尽管参照较佳实施例对本发明进行了详细说明,本领域的普通技术人员应当理解,可以对本发明的技术方案进行修改或者等同替换,而不脱离本发明技术方案的精神和范围,其均应涵盖在本发明的权利要求范围当中。

Claims (10)

  1. 一种基于服务器的智能浇灌花盆系统,其特征在于,包括花盆和控制花盆的服务器,其中,所述花盆包括,
    温湿度检测模块,用于检测花盆内土壤温湿度信息,并将信息发送给服务器;
    光照检测模块,用于检测花盆所在位置的光照强度信息,并将信息发送给服务器;
    注水模块,用于在服务器控制下向花盆内土壤注水;
    花盆通信模块,用于与服务器建立通信;
    所述服务器,根据温湿度检测模块和光照检测模块发送的检测信息,经分析后,判断是否需要向花盆中的土壤浇水,当判断需要浇水时,向花盆中的注水模块发出控制指令。
  2. 根据权利要求1所述的基于服务器的智能浇灌花盆系统,其特征在于,所述服务器包括,
    服务器端通信模块,用于与花盆通信模块建立通信;
    处理模块,用于对接收的温湿度检测模块和光照检测模块发送的检测信息进行分析,判断是否需要向花盆中的土壤浇水,当判断需要浇水时,向花盆中的注水模块发出控制指令。
  3. 根据权利要求1所述的基于服务器的智能浇灌花盆系统,其特征在于,花盆中还包括受控于服务器处理模块的排水模块,用于排出花盆土壤中多余的水分。
  4. 根据权利要求1所述的基于服务器的智能浇灌花盆系统,其特征在于,服务器还包括计时模块,用于设定浇水计时时间,并当计时时间到来时,向处理模块发送时间信号。
  5. 根据权利要求1所述的基于服务器的智能浇灌花盆系统,其特征在于,注水模块中包括水量监控单元,用于检测注水模块中存储的水量,并当水量低于预设的警戒值,发出报警信号,提醒进行注水。
  6. 根据权利要求5所述的基于服务器的智能浇灌花盆系统,其特征在于, 所述水量监控单元发出报警信号方式为播放声音。
  7. 一种基于服务器的智能浇灌花盆使用方法,其特征在于,包括以下步骤:
    S1、服务器,接收来自花盆中温湿度检测模块发送的花盆内土壤温湿度信息,以及光照检测模块发送的花盆所在位置的光照强度信息;
    S2、服务器对上述信息经过分析后,判断是否需要对花盆内的土壤进行注水或排水;
    S3、当服务器判断需要对花盆内的植物注水时,控制花盆中注水模块开始往花盆内的土壤进行注水。
  8. 根据权利要求7所述的基于服务器的智能浇灌花盆使用方法,其特征在于,在步骤S2与S3之间还包括步骤
    S30、服务器根据分析的结果,判断在当前时刻不需要浇水时,设定下次浇水时间,当设定时间到来时,控制控制花盆中注水模块开始往花盆内的土壤进行注水。
  9. 根据权利要求7所述的基于服务器的智能浇灌花盆使用方法,其特征在于,步骤S3之中还包括
    S31、当服务器判断需要对花盆内的植物排水时,控制花盆中排水模块开始向花盆外排水。
  10. 根据权利要求7所述的基于服务器的智能浇灌花盆使用方法,其特征在于,所述步骤S3后还包括步骤:
    S32、花盆中注水模块中的水量监控单元当检测到注水模块中存储的水量低于预设的警戒值时,发出报警信号,提醒进行注水。
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