WO2018032278A1 - Multi-point measurement apparatus for flower cultivation soil parameter - Google Patents

Multi-point measurement apparatus for flower cultivation soil parameter Download PDF

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WO2018032278A1
WO2018032278A1 PCT/CN2016/095383 CN2016095383W WO2018032278A1 WO 2018032278 A1 WO2018032278 A1 WO 2018032278A1 CN 2016095383 W CN2016095383 W CN 2016095383W WO 2018032278 A1 WO2018032278 A1 WO 2018032278A1
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soil
value
detecting
parameter
nutrient
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武克易
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武克易
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N33/00Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
    • G01N33/24Earth materials

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  • the invention relates to the field of intelligent hardware technology, and more particularly to a multi-point detecting device for flower planting soil parameters.
  • Flower planting can beautify the environment and cultivate sentiment. With the improvement of people's living standards, urban or township residents like to plant various potted plants at home. However, some plant varieties do not grow well in any environment, and many people cannot grow smoothly due to lack of professional planting knowledge.
  • the existing soil tester and moisture tester are industrial use, and the professional field cannot help the user's flower planting.
  • many families What users need is direct targeted planting advice, such as real-time lighting, temperature and humidity, soil nutrients, moisture and other data collection and planting methods for each flower in the home. Since the soil environment is detected at a fixed position inside the same flower pot, the collected data is inaccurate, so it is necessary to sample through multiple tests.
  • the technical problem to be solved by the present invention is to provide a multi-point detecting device for flower planting soil parameters for the above-mentioned defects of the prior art.
  • a multi-point detection device for flower planting soil parameters, including multiple for detecting soil nutrient value a soil nutrient meter and a plurality of pH meters for detecting soil pH, further comprising a controller; the controller comprising a sampling control module for controlling the working condition of the soil nutrient meter and the working condition of the pH meter
  • the controller further includes a data processing module for analyzing the soil nutrient value and the soil pH value; the controller is coupled with a parameter setting module for setting a sampling time and a sampling depth; and the plurality of the soil
  • the nutrient meter and the plurality of pH meters are respectively disposed on a plurality of movable soil detecting probes, and the plurality of soil detecting probes are evenly distributed in the soil to be detected.
  • the flower planting soil parameter detecting device wherein the soil nutrient measuring instrument on each of the soil detecting probes is disposed at a different position.
  • the flower planting soil parameter detecting device of the present invention wherein the pH meter setting position on each of the soil detecting probes is different.
  • the flower planting soil parameter detecting device wherein the soil detecting probe is inserted into the edge soil of the flower pot and extends toward the soil in the middle of the flower pot at a certain inclination angle.
  • the flower planting soil parameter detecting device of the present invention wherein the data processing module comprises a sampling parameter calculating unit, configured to calculate an average soil nutrient value according to soil nutrient values collected by the plurality of soil nutrient measuring instruments; .
  • the flower planting soil parameter detecting device of the present invention wherein the data processing module comprises a sampling parameter calculating unit, configured to calculate an average soil nutrient value according to soil pH values collected by the plurality of pH meters.
  • the apparatus for detecting a planting soil parameter wherein the data processing module further comprises:
  • the first curve drawing unit is configured to draw a soil pH-time curve according to the detected soil pH value.
  • the flower planting soil parameter detecting device of the present invention wherein the data processing module further comprises include:
  • a second curve drawing unit is configured to draw a soil pH-humidity curve according to the detected soil pH value.
  • the apparatus for detecting a planting soil parameter wherein the data processing module further comprises:
  • a third curve drawing unit is configured to draw a soil pH value-soil nutrient curve according to the detected soil pH value.
  • the apparatus for detecting a planting soil parameter wherein the data processing module further comprises:
  • a fourth curve drawing unit is configured to draw a soil nutrient value-time curve according to the detected soil nutrient value.
  • the invention has the beneficial effects that the soil nutrient value and the soil pH value are more controllable and precise by setting the sampling time and the sampling depth, so as to achieve a better grasp of the soil condition of the flower growing.
  • FIG. 1 is a block diagram showing the principle of a multi-point detecting device for flower planting soil parameters according to a preferred embodiment of the present invention
  • FIG. 2 is a block diagram of a controller of a flower planting soil parameter multi-point detecting device according to a preferred embodiment of the present invention
  • FIG. 3 is a data processing of a multi-point detecting device for flower planting soil parameters according to a preferred embodiment of the present invention.
  • Module block diagram is a data processing of a multi-point detecting device for flower planting soil parameters according to a preferred embodiment of the present invention.
  • Figs. 1 and 2 The structural principle of the multi-point detecting device for flower planting soil parameters according to the preferred embodiment of the present invention is shown in Figs. 1 and 2, and includes a soil nutrient measuring instrument 1 for detecting soil nutrient value and a pH meter for detecting soil pH value.
  • the controller 3 comprises a sampling control module 31 for controlling the working condition of the soil nutrient meter and the working condition of the pH meter; the controller 3 further comprises for analyzing the soil nutrient value and the soil pH value
  • the data processing module 32; the controller 3 is connected with a parameter setting module 4 for setting the sampling time and the sampling depth, the soil nutrient meter and the plurality of pH meters are respectively disposed on the plurality of movable soil detecting probes, the plurality of soils The detection probe is evenly distributed in the soil to be detected.
  • the soil nutrient value and the soil pH value are more controllable and precise by setting the sampling time and the sampling depth, so as to achieve a better grasp of the soil condition of the flower growing.
  • the soil nutrient analyzer on each soil detecting probe is disposed at a different position, and the pH meter setting position on each soil detecting probe is different, and the specific soil detecting probe corresponds to the soil parameter value of the specific position.
  • the soil nutrient measuring instrument 1 and the pH meter 2 are disposed on a movable soil detecting probe, and the sampling control module 31 is connected with a driving device for driving the movement of the soil detecting probe.
  • the driving device can be driven by electric or manual.
  • Soil detection probe shift The moving mode can be moving left or right or moving left and right.
  • the sampling depth includes the specific location of the sample and controls the sampling depth by the movement of the soil detection probe.
  • the soil detecting probe is inserted into the edge soil of the flower pot and extends to the soil in the middle of the flower pot at a certain inclination angle, so as to detect the overall environmental parameter value of the soil from the edge to the inside.
  • the data processing module 32 includes: a sampling parameter calculating unit 321 configured to calculate an average soil nutrient based on soil pH values collected by the plurality of pH meters. value.
  • the data processing module 32 further includes: a first curve drawing unit 322, configured to draw a soil pH-time curve according to the detected soil pH value, In order to observe the changes in soil pH.
  • the data processing module 32 further includes: a second curve drawing unit 323 for drawing a soil pH value-humidity curve according to the detected soil pH value, as shown in FIG. In order to observe the relationship between soil pH and humidity, it is convenient for the user to judge whether the pH value of the soil is affected by excessive or too small humidity.
  • the data processing module 32 further includes: a third curve drawing unit 324 for drawing a soil pH value-soil nutrient curve according to the detected soil pH value.
  • a third curve drawing unit 324 for drawing a soil pH value-soil nutrient curve according to the detected soil pH value.
  • the data processing module 32 further includes: a fourth curve drawing unit 325 for drawing the soil nutrient value-time according to the detected soil nutrient value Change curve to facilitate observation of changes in soil pH.
  • the sampling time includes sampling specific time points or sampling frequencies, that is, it can be set at which time or time period to sample, or one day.
  • the 24-hour time sets the frequency of sampling for the baseline.

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Abstract

A multi-point measurement apparatus for a flower cultivation soil parameter, comprising a soil nutrient measuring instrument (1) used for measuring a soil nutrient value and a pH meter (2) used for measuring the soil pH value, and further comprising a controller (3). The controller (3) comprises a sampling control module (31) used for controlling working status of the soil nutrient measuring instrument (1) and the pH meter (2), and further comprises a data processing module (32) used for analyzing the soil nutrient value and the soil pH value. The controller (3) is connected to a parameter setting module (4) used for setting a sampling time and a sampling depth. The soil nutrient measuring instrument (1) and the pH meter (2) are provided on a movable soil measurement probe. The sampling control module (31) is connected to a driving means for driving the soil measurement probe to move. The soil measurement probe moves horizontally. By setting a sampling time and a sampling depth, the soil nutrient value and the soil pH value become more controllable and precise, and thus the flower growth soil state can be better mastered.

Description

花卉种植土壤参数多点检测装置Flower planting soil parameter multi-point detecting device 技术领域Technical field
本发明涉及智能硬件技术领域,更具体地说,涉及一种花卉种植土壤参数多点检测装置。The invention relates to the field of intelligent hardware technology, and more particularly to a multi-point detecting device for flower planting soil parameters.
背景技术Background technique
花卉种植可以美化环境,陶冶情操,随着人们生活水平的提高,城市或乡镇居民都喜爱在家种植各种盆栽。但是有些植物品种并不是在任何地方任何环境下都能很好的生长,导致很多人因缺乏专业种植知识而无法顺利种植。现在市场上针对于家庭用户花卉种植方面的仪器很少,而现有的土壤测试仪,水分测试仪都是工业用途,专业领域,并不能对用户的花卉种植带来帮助另一方面,很多家庭用户需要的是直接的针对性的种植建议,比如家里每种花卉实时的光照,温湿度,土壤养分,水分等数据采集及种植方法。由于在同一花盆内部,在固定位置对土壤环境进行检测会导致采集数据不准确,因此需要通过多处检测来采样。Flower planting can beautify the environment and cultivate sentiment. With the improvement of people's living standards, urban or township residents like to plant various potted plants at home. However, some plant varieties do not grow well in any environment, and many people cannot grow smoothly due to lack of professional planting knowledge. Nowadays, there are few instruments for flower planting for home users, and the existing soil tester and moisture tester are industrial use, and the professional field cannot help the user's flower planting. On the other hand, many families What users need is direct targeted planting advice, such as real-time lighting, temperature and humidity, soil nutrients, moisture and other data collection and planting methods for each flower in the home. Since the soil environment is detected at a fixed position inside the same flower pot, the collected data is inaccurate, so it is necessary to sample through multiple tests.
发明内容Summary of the invention
本发明要解决的技术问题在于,针对现有技术的上述缺陷,提供一种花卉种植土壤参数多点检测装置。The technical problem to be solved by the present invention is to provide a multi-point detecting device for flower planting soil parameters for the above-mentioned defects of the prior art.
本发明解决其技术问题所采用的技术方案是:The technical solution adopted by the present invention to solve the technical problem thereof is:
构造一种花卉种植土壤参数多点检测装置,包括多个用于检测土壤养分值 的土壤养分测定仪和多个用于检测土壤pH值的pH计,还包括控制器;所述控制器包括用于控制所述土壤养分测定仪工作状况及所述pH计工作状况的采样控制模块;所述控制器还包括用于对所述土壤养分值和土壤pH值进行分析的数据处理模块;所述控制器连接有用于设置采样时间和采样深度的参数设置模块;多个所述土壤养分测定仪和多个所述pH计分别设置于多个可移动的土壤检测探针上,多个所述土壤检测探针均匀分布于待检测的土壤中。Constructing a multi-point detection device for flower planting soil parameters, including multiple for detecting soil nutrient value a soil nutrient meter and a plurality of pH meters for detecting soil pH, further comprising a controller; the controller comprising a sampling control module for controlling the working condition of the soil nutrient meter and the working condition of the pH meter The controller further includes a data processing module for analyzing the soil nutrient value and the soil pH value; the controller is coupled with a parameter setting module for setting a sampling time and a sampling depth; and the plurality of the soil The nutrient meter and the plurality of pH meters are respectively disposed on a plurality of movable soil detecting probes, and the plurality of soil detecting probes are evenly distributed in the soil to be detected.
本发明所述的花卉种植土壤参数检测装置,其中,每个所述土壤检测探针上的土壤养分测定仪设置位置不同。The flower planting soil parameter detecting device according to the present invention, wherein the soil nutrient measuring instrument on each of the soil detecting probes is disposed at a different position.
本发明所述的花卉种植土壤参数检测装置,其中,每个所述土壤检测探针上的pH计设置位置不同。The flower planting soil parameter detecting device of the present invention, wherein the pH meter setting position on each of the soil detecting probes is different.
本发明所述的花卉种植土壤参数检测装置,其中,所述土壤检测探针插设于花盆的边缘土壤内,并以一定倾斜角度向花盆中间土壤延伸。The flower planting soil parameter detecting device according to the present invention, wherein the soil detecting probe is inserted into the edge soil of the flower pot and extends toward the soil in the middle of the flower pot at a certain inclination angle.
本发明所述的花卉种植土壤参数检测装置,其中,所述数据处理模块包括采样参数计算单元,用于根据多个所述土壤养分测定仪采集的土壤养分值计算得出平均土壤养分值。The flower planting soil parameter detecting device of the present invention, wherein the data processing module comprises a sampling parameter calculating unit, configured to calculate an average soil nutrient value according to soil nutrient values collected by the plurality of soil nutrient measuring instruments; .
本发明所述的花卉种植土壤参数检测装置,其中,所述数据处理模块包括采样参数计算单元,用于根据多个所述pH计采集的土壤pH值计算得出平均土壤养分值。The flower planting soil parameter detecting device of the present invention, wherein the data processing module comprises a sampling parameter calculating unit, configured to calculate an average soil nutrient value according to soil pH values collected by the plurality of pH meters.
本发明所述的花卉种植土壤参数检测装置,其中,所述数据处理模块还包括:The apparatus for detecting a planting soil parameter according to the present invention, wherein the data processing module further comprises:
第一曲线绘制单元,用于根据检测到的土壤pH值,绘制出土壤pH值-时间曲线。The first curve drawing unit is configured to draw a soil pH-time curve according to the detected soil pH value.
本发明所述的花卉种植土壤参数检测装置,其中,所述数据处理模块还包 括:The flower planting soil parameter detecting device of the present invention, wherein the data processing module further comprises include:
第二曲线绘制单元,用于根据检测到的土壤pH值,绘制出土壤pH值-湿度曲线。A second curve drawing unit is configured to draw a soil pH-humidity curve according to the detected soil pH value.
本发明所述的花卉种植土壤参数检测装置,其中,所述数据处理模块还包括:The apparatus for detecting a planting soil parameter according to the present invention, wherein the data processing module further comprises:
第三曲线绘制单元,用于根据检测到的土壤pH值,绘制出土壤pH值-土壤养分曲线。A third curve drawing unit is configured to draw a soil pH value-soil nutrient curve according to the detected soil pH value.
本发明所述的花卉种植土壤参数检测装置,其中,所述数据处理模块还包括:The apparatus for detecting a planting soil parameter according to the present invention, wherein the data processing module further comprises:
第四曲线绘制单元,用于根据检测到的土壤养分值,绘制出土壤养分值-时间变化曲线。A fourth curve drawing unit is configured to draw a soil nutrient value-time curve according to the detected soil nutrient value.
本发明的有益效果在于:通过设置采样时间和采样深度使得土壤养分值和土壤pH值更加可控和精确,以实现对花卉生长土壤状况的更好掌握。The invention has the beneficial effects that the soil nutrient value and the soil pH value are more controllable and precise by setting the sampling time and the sampling depth, so as to achieve a better grasp of the soil condition of the flower growing.
附图说明DRAWINGS
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将结合附图及实施例对本发明作进一步说明,下面描述中的附图仅仅是本发明的部分实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他附图:In order to more clearly illustrate the embodiments of the present invention or the prior art, the present invention will be further described in conjunction with the accompanying drawings and embodiments. For ordinary technicians, other drawings can be obtained based on these drawings without any creative work:
图1是本发明较佳实施例的花卉种植土壤参数多点检测装置原理框图;1 is a block diagram showing the principle of a multi-point detecting device for flower planting soil parameters according to a preferred embodiment of the present invention;
图2是本发明较佳实施例的花卉种植土壤参数多点检测装置的控制器原理框图;2 is a block diagram of a controller of a flower planting soil parameter multi-point detecting device according to a preferred embodiment of the present invention;
图3是本发明较佳实施例的花卉种植土壤参数多点检测装置的数据处理 模块原理框图。3 is a data processing of a multi-point detecting device for flower planting soil parameters according to a preferred embodiment of the present invention; Module block diagram.
具体实施方式detailed description
为了使本发明实施例的目的、技术方案和优点更加清楚,下面将结合本发明实施例中的技术方案进行清楚、完整的描述,显然,所描述的实施例是本发明的部分实施例,而不是全部实施例。基于本发明的实施例,本领域普通技术人员在没有付出创造性劳动的前提下所获得的所有其他实施例,都属于本发明的保护范围。The present invention will be described in detail with reference to the embodiments of the present invention. Not all embodiments. All other embodiments obtained by a person of ordinary skill in the art based on the embodiments of the present invention without any inventive effort are within the scope of the present invention.
本发明较佳实施例的花卉种植土壤参数多点检测装置结构原理如图1和图2所示,包括用于检测土壤养分值的土壤养分测定仪1和用于检测土壤pH值的pH计2,还包括控制器3;控制器3包括用于控制土壤养分测定仪工作状况及pH计工作状况的采样控制模块31;控制器3还包括用于对土壤养分值和土壤pH值进行分析的数据处理模块32;控制器3连接有用于设置采样时间和采样深度的参数设置模块4,土壤养分测定仪和多个pH计分别设置于多个可移动的土壤检测探针上,多个土壤检测探针均匀分布于待检测的土壤中。本实施例通过设置采样时间和采样深度使得土壤养分值和土壤pH值更加可控和精确,以实现对花卉生长土壤状况的更好掌握。The structural principle of the multi-point detecting device for flower planting soil parameters according to the preferred embodiment of the present invention is shown in Figs. 1 and 2, and includes a soil nutrient measuring instrument 1 for detecting soil nutrient value and a pH meter for detecting soil pH value. 2, further comprising a controller 3; the controller 3 comprises a sampling control module 31 for controlling the working condition of the soil nutrient meter and the working condition of the pH meter; the controller 3 further comprises for analyzing the soil nutrient value and the soil pH value The data processing module 32; the controller 3 is connected with a parameter setting module 4 for setting the sampling time and the sampling depth, the soil nutrient meter and the plurality of pH meters are respectively disposed on the plurality of movable soil detecting probes, the plurality of soils The detection probe is evenly distributed in the soil to be detected. In this embodiment, the soil nutrient value and the soil pH value are more controllable and precise by setting the sampling time and the sampling depth, so as to achieve a better grasp of the soil condition of the flower growing.
优选地,每个土壤检测探针上的土壤养分测定仪设置位置不同,每个土壤检测探针上的pH计设置位置不同,特定的土壤检测探针对应特定位置的土壤参数值。Preferably, the soil nutrient analyzer on each soil detecting probe is disposed at a different position, and the pH meter setting position on each soil detecting probe is different, and the specific soil detecting probe corresponds to the soil parameter value of the specific position.
上述花卉种植土壤参数多点检测装置中,土壤养分测定仪1和pH计2设置于可移动的土壤检测探针上,采样控制模块31连接有用于驱动土壤检测探针移动的驱动装置。驱动装置的驱动方式可以是电动或手动。土壤检测探针移 动方式可以是左右移动或左右移动。采样深度包括采样的具***置,并通过土壤检测探针的移动控制采样深度。In the above-mentioned flower planting soil parameter multi-point detecting device, the soil nutrient measuring instrument 1 and the pH meter 2 are disposed on a movable soil detecting probe, and the sampling control module 31 is connected with a driving device for driving the movement of the soil detecting probe. The driving device can be driven by electric or manual. Soil detection probe shift The moving mode can be moving left or right or moving left and right. The sampling depth includes the specific location of the sample and controls the sampling depth by the movement of the soil detection probe.
更进一步地,上述土壤检测探针插设于花盆的边缘土壤内,并以一定倾斜角度向花盆中间土壤延伸,以便于探测土壤从边缘至内部的整体环境参数值。Further, the soil detecting probe is inserted into the edge soil of the flower pot and extends to the soil in the middle of the flower pot at a certain inclination angle, so as to detect the overall environmental parameter value of the soil from the edge to the inside.
上述花卉种植土壤参数多点检测装置中,如图3所示,数据处理模块32包括:采样参数计算单元321,用于根据多个所述pH计采集的土壤pH值计算得出平均土壤养分值。In the above-mentioned flower planting soil parameter multi-point detecting device, as shown in FIG. 3, the data processing module 32 includes: a sampling parameter calculating unit 321 configured to calculate an average soil nutrient based on soil pH values collected by the plurality of pH meters. value.
上述花卉种植土壤参数多点检测装置中,如图3所示,数据处理模块32还包括:第一曲线绘制单元322,用于根据检测到的土壤pH值,绘制出土壤pH值-时间曲线,以便于观察土壤pH值变化情况。In the above-mentioned flower planting soil parameter multi-point detecting device, as shown in FIG. 3, the data processing module 32 further includes: a first curve drawing unit 322, configured to draw a soil pH-time curve according to the detected soil pH value, In order to observe the changes in soil pH.
上述花卉种植土壤参数多点检测装置中,如图3所示,数据处理模块32还包括:第二曲线绘制单元323,用于根据检测到的土壤pH值,绘制出土壤pH值-湿度曲线,以便于观察土壤pH值与湿度之间的关系,方便用户判断是否因湿度过大或过小影响土壤的pH值。The data processing module 32 further includes: a second curve drawing unit 323 for drawing a soil pH value-humidity curve according to the detected soil pH value, as shown in FIG. In order to observe the relationship between soil pH and humidity, it is convenient for the user to judge whether the pH value of the soil is affected by excessive or too small humidity.
上述花卉种植土壤参数多点检测装置中,如图3所示,数据处理模块32还包括:第三曲线绘制单元324,用于根据检测到的土壤pH值,绘制出土壤pH值-土壤养分曲线,以便于观察土壤pH值与土壤养分之间的关系,方便用户判断土壤养分是否对土壤pH值有影响。In the above-mentioned flower planting soil parameter multi-point detecting device, as shown in FIG. 3, the data processing module 32 further includes: a third curve drawing unit 324 for drawing a soil pH value-soil nutrient curve according to the detected soil pH value. In order to observe the relationship between soil pH and soil nutrients, it is convenient for users to judge whether soil nutrients have an effect on soil pH.
上述花卉种植土壤参数多点检测装置中,如图3所示,数据处理模块32还包括:第四曲线绘制单元325,用于根据检测到的土壤养分值,绘制出土壤养分值-时间变化曲线,以便于观察土壤pH值变化情况。In the above-mentioned flower planting soil parameter multi-point detecting device, as shown in FIG. 3, the data processing module 32 further includes: a fourth curve drawing unit 325 for drawing the soil nutrient value-time according to the detected soil nutrient value Change curve to facilitate observation of changes in soil pH.
上述花卉种植土壤参数多点检测装置中,采样时间包括采样具体时间点或采样频率,即,可以设定具体在哪一时间或时间段进行采样,也可以以一天 24小时时间为基准设置采样的频率。In the above-mentioned flower planting soil parameter multi-point detecting device, the sampling time includes sampling specific time points or sampling frequencies, that is, it can be set at which time or time period to sample, or one day. The 24-hour time sets the frequency of sampling for the baseline.
应当理解的是,对本领域普通技术人员来说,可以根据上述说明加以改进或变换,而所有这些改进和变换都应属于本发明所附权利要求的保护范围。 It is to be understood that those skilled in the art will be able to make modifications and changes in accordance with the above description, and all such modifications and variations are intended to be included within the scope of the appended claims.

Claims (10)

  1. 一种花卉种植土壤参数多点检测装置,其特征在于,包括多个用于检测土壤养分值的土壤养分测定仪和多个用于检测土壤pH值的pH计,还包括控制器;所述控制器包括用于控制所述土壤养分测定仪工作状况及所述pH计工作状况的采样控制模块;所述控制器还包括用于对所述土壤养分值和土壤pH值进行分析的数据处理模块;所述控制器连接有用于设置采样时间和采样深度的参数设置模块;多个所述土壤养分测定仪和多个所述pH计分别设置于多个可移动的土壤检测探针上,多个所述土壤检测探针均匀分布于待检测的土壤中。A multi-point detecting device for flower planting soil parameters, comprising: a plurality of soil nutrient measuring instruments for detecting soil nutrient value and a plurality of pH meters for detecting soil pH value, further comprising a controller; The controller includes a sampling control module for controlling the working condition of the soil nutrient meter and the working condition of the pH meter; the controller further includes data processing for analyzing the soil nutrient value and the soil pH value a module; the controller is connected with a parameter setting module for setting a sampling time and a sampling depth; a plurality of the soil nutrient analyzers and a plurality of the pH meters are respectively disposed on a plurality of movable soil detecting probes, and The soil detecting probes are evenly distributed in the soil to be detected.
  2. 根据权利要求1所述的花卉种植土壤参数检测装置,其特征在于,每个所述土壤检测探针上的土壤养分测定仪设置位置不同。The flower planting soil parameter detecting apparatus according to claim 1, wherein the soil nutrient measuring instrument on each of the soil detecting probes is disposed at a different position.
  3. 根据权利要求1所述的花卉种植土壤参数检测装置,其特征在于,每个所述土壤检测探针上的pH计设置位置不同。The flower planting soil parameter detecting apparatus according to claim 1, wherein the pH meter setting position on each of the soil detecting probes is different.
  4. 根据权利要求1所述的花卉种植土壤参数检测装置,其特征在于,所述土壤检测探针插设于花盆的边缘土壤内,并以一定倾斜角度向花盆中间土壤延伸。The flower planting soil parameter detecting device according to claim 1, wherein the soil detecting probe is inserted into the edge soil of the flower pot and extends toward the soil in the middle of the flower pot at a certain inclination angle.
  5. 根据权利要求1所述的花卉种植土壤参数检测装置,其特征在于,所述数据处理模块包括采样参数计算单元,用于根据多个所述土壤养分测定仪采集的土壤养分值计算得出平均土壤养分值。The flower planting soil parameter detecting device according to claim 1, wherein the data processing module comprises a sampling parameter calculating unit, configured to calculate an average according to soil nutrient values collected by the plurality of soil nutrient measuring instruments. Soil nutrient value.
  6. 根据权利要求1所述的花卉种植土壤参数检测装置,其特征在于,所述数据处理模块包括采样参数计算单元,用于根据多个所述pH计采集的土壤pH值计算得出平均土壤养分值。 The flower planting soil parameter detecting device according to claim 1, wherein the data processing module comprises a sampling parameter calculating unit, configured to calculate an average soil nutrient according to soil pH values collected by the plurality of pH meters. value.
  7. 根据权利要求1所述的花卉种植土壤参数检测装置,其特征在于,所述数据处理模块还包括:The apparatus for detecting a planting soil parameter according to claim 1, wherein the data processing module further comprises:
    第一曲线绘制单元,用于根据检测到的土壤pH值,绘制出土壤pH值-时间曲线。The first curve drawing unit is configured to draw a soil pH-time curve according to the detected soil pH value.
  8. 根据权利要求1所述的花卉种植土壤参数检测装置,其特征在于,所述数据处理模块还包括:The apparatus for detecting a planting soil parameter according to claim 1, wherein the data processing module further comprises:
    第二曲线绘制单元,用于根据检测到的土壤pH值,绘制出土壤pH值-湿度曲线。A second curve drawing unit is configured to draw a soil pH-humidity curve according to the detected soil pH value.
  9. 根据权利要求1所述的花卉种植土壤参数检测装置,其特征在于,所述数据处理模块还包括:The apparatus for detecting a planting soil parameter according to claim 1, wherein the data processing module further comprises:
    第三曲线绘制单元,用于根据检测到的土壤pH值,绘制出土壤pH值-土壤养分曲线。A third curve drawing unit is configured to draw a soil pH value-soil nutrient curve according to the detected soil pH value.
  10. 根据权利要求1所述的花卉种植土壤参数检测装置,其特征在于,所述数据处理模块还包括:The apparatus for detecting a planting soil parameter according to claim 1, wherein the data processing module further comprises:
    第四曲线绘制单元,用于根据检测到的土壤养分值,绘制出土壤养分值-时间变化曲线。 A fourth curve drawing unit is configured to draw a soil nutrient value-time curve according to the detected soil nutrient value.
PCT/CN2016/095383 2016-08-15 2016-08-15 Multi-point measurement apparatus for flower cultivation soil parameter WO2018032278A1 (en)

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