CN115047828A - Big data management control system - Google Patents

Big data management control system Download PDF

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CN115047828A
CN115047828A CN202210508562.1A CN202210508562A CN115047828A CN 115047828 A CN115047828 A CN 115047828A CN 202210508562 A CN202210508562 A CN 202210508562A CN 115047828 A CN115047828 A CN 115047828A
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徐勇
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Program-control systems
    • G05B19/02Program-control systems electric
    • G05B19/418Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM]
    • G05B19/41865Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM] characterised by job scheduling, process planning, material flow
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D21/00Measuring or testing not otherwise provided for
    • G01D21/02Measuring two or more variables by means not covered by a single other subclass
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/30Nc systems
    • G05B2219/32Operator till task planning
    • G05B2219/32252Scheduling production, machining, job shop
    • 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
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

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Abstract

The invention discloses a big data management control system, which comprises a detection module, a management module and a control module, the detection module is electrically connected with the management module, the detection module is electrically connected with the control module, the detection module is used for detecting dishes washed by the kitchen, the management module is used for managing and analyzing information data, the control module is used for controlling the drainage pipeline, the detection module comprises an acquisition module, a matching module, a metering module and an identification module, the acquisition module is electrically connected with the acquisition module, the acquisition module is electrically connected with the matching module, the acquisition module is electrically connected with the identification module, the acquisition module is electrically connected with the metering module and is used for acquiring order information of city residents. The invention has the characteristic of recycling kitchen water for urban residents.

Description

一种大数据的管理控制系统A big data management control system

技术领域technical field

本发明涉及管理控制技术领域,具体为一种大数据的管理控制系统。The invention relates to the technical field of management and control, in particular to a management and control system for big data.

背景技术Background technique

随着世界经济的发展,人口不断增长,城市日渐增多和扩张,各地用水量不断增多。据联合国估计,亚洲用水量最多,达32000亿立方米/年,其次为北美洲、欧洲、南美洲等。约占世界人口总数40%的80个国家和地区约15亿人口淡水不足,其中26个国家约3亿人极度缺水。更可怕的是,预计到2025年,世界上将会有30亿人面临缺水,40个国家和地区淡水严重不足。With the development of the world economy, the population continues to grow, the number of cities increases and expands, and the water consumption in various places continues to increase. According to United Nations estimates, Asia consumes the most water at 3.2 trillion cubic meters per year, followed by North America, Europe, and South America. About 1.5 billion people in 80 countries and regions, which account for about 40% of the world's total population, have insufficient fresh water, and about 300 million people in 26 countries are extremely short of water. What is even more frightening is that it is estimated that by 2025, 3 billion people in the world will face water shortages, and 40 countries and regions are seriously short of fresh water.

中国水资源总量少于巴西、俄罗斯、加拿大、美国和印度尼西亚。若按人均水资源占有量这一指标来衡量,则仅占世界平均水平的1/4,排名在第一百一十名之后。缺水状况在中国普遍存在,而且有不断加剧的趋势。全国约有670个城市中,一半以上存在着不同程度的缺水现象,其中严重缺水的有一百一十多个。城市住户用水中,厨房用水量占据着很大的比重,且其中许多厨房用水可被循环利用,但由于没有相应的处理系统造成了很多水资源的浪费。因此,设计可循环利用城市住户厨房用水的一种大数据的管理控制系统是很有必要的。China's total water resources are less than Brazil, Russia, Canada, the United States and Indonesia. If measured by the indicator of per capita water resources, it only accounts for 1/4 of the world average level, ranking after the 110th. Water scarcity is widespread in China and is on the rise. In about 670 cities across the country, more than half of them have different degrees of water shortage, of which more than 110 are seriously short of water. In urban households' water consumption, kitchen water consumption occupies a large proportion, and many of the kitchen water can be recycled, but a lot of water resources are wasted because there is no corresponding treatment system. Therefore, it is necessary to design a big data management control system that can recycle urban household kitchen water.

发明内容SUMMARY OF THE INVENTION

本发明的目的在于提供一种大数据的管理控制系统,以解决上述背景技术中提出的问题。The purpose of the present invention is to provide a management and control system for big data to solve the problems raised in the above background art.

为了解决上述技术问题,本发明提供如下技术方案:一种大数据的管理控制系统,包括检测模块、管理模块与控制模块,所述检测模块与管理模块电连接,所述检测模块与管理模块电连接,所述检测模块与控制模块电连接,所述检测模块用于对厨房冲洗的菜品进行检测,所述管理模块用于对信息数据进行管理分析,所述控制模块用于对排水管道进行控制。In order to solve the above technical problems, the present invention provides the following technical solutions: a management and control system for big data, comprising a detection module, a management module and a control module, the detection module is electrically connected to the management module, and the detection module is electrically connected to the management module The detection module is electrically connected to the control module, the detection module is used to detect the dishes washed in the kitchen, the management module is used to manage and analyze the information data, and the control module is used to control the drainage pipeline .

根据上述技术方案,所述检测模块包括获取模块、采集模块、匹配模块、计量模块与识别模块,所述获取模块与采集模块电连接,所述采集模块与匹配模块电连接,所述采集模块与识别模块电连接,所述采集模块与计量模块电连接,所述获取模块用于对城市住户的订单信息进行获取,所述采集模块用于对图像信息进行采集,所述采集模块包括采集子模块一与采集子模块二,所述采集子模块一与采集子模块二分别用于对不同的物品进行图像信息采集,所述匹配模块用于对图像信息进行匹配,所述计量模块用于对相关信息进行计量,所述计量模块包括计时子模块与测量子模块,所述计时子模块与测量子模块电连接,所述计时子模块用于对时间进行计时,所述测量子模块用于对速度进行测量,所述识别子模块用于对图像信息进行识别。According to the above technical solution, the detection module includes an acquisition module, an acquisition module, a matching module, a measurement module and an identification module, the acquisition module is electrically connected with the acquisition module, the acquisition module is electrically connected with the matching module, and the acquisition module is electrically connected with the acquisition module. The identification module is electrically connected, the acquisition module is electrically connected to the metering module, the acquisition module is used to acquire order information of urban households, the acquisition module is used to acquire image information, and the acquisition module includes an acquisition sub-module The first and the second collection sub-module, the first and second collection sub-modules are used to collect image information for different items, the matching module is used to match the image information, and the measurement module is used to Information is measured, the metering module includes a timing sub-module and a measurement sub-module, the timing sub-module is electrically connected with the measurement sub-module, the timing sub-module is used to time the time, and the measurement sub-module is used to measure the speed. Measurement is performed, and the identification sub-module is used to identify the image information.

根据上述技术方案,所述管理模块包括数据接收模块、分析模块与判断模块,所述数据接收模块与分析模块电连接,所述数据接收模块与判断模块电连接,所述数据接收模块用于对数据信息进行接收,所述分析模块用于对数据进行计算分析,所述判断模块用于对相关用水进行判断。According to the above technical solution, the management module includes a data receiving module, an analysis module and a judgment module, the data receiving module is electrically connected with the analysis module, the data receiving module is electrically connected with the judgment module, and the data receiving module is used for The data information is received, the analysis module is used for calculating and analyzing the data, and the judging module is used for judging the relevant water use.

根据上述技术方案,所述控制模块包括开关模块,所述开关模块用于对各个排水管道的阀门开关进行控制。According to the above technical solution, the control module includes a switch module, and the switch module is used to control the valve switch of each drainage pipeline.

根据上述技术方案,所述一种大数据的管理控制系统的运行方法主要包括以下步骤:According to the above technical solution, the operation method of the big data management control system mainly includes the following steps:

步骤S1:城市住户打开厨房的水龙头将准备做餐的菜品进行清洗,通过电信号启用检测模块;Step S1: the urban resident turns on the faucet of the kitchen to clean the dishes to be cooked, and activates the detection module through the electrical signal;

步骤S2:检测模块通过网络信号获取到城市住户手机端一周内购买菜品的订单信息,并对当前水龙头冲洗的菜品、及住房内的盆栽进行采集确认;Step S2: the detection module obtains the order information of the dishes purchased by the mobile phone of the urban household within one week through the network signal, and collects and confirms the current dishes washed by the faucet and the potted plants in the house;

步骤S3:管理模块根据冲洗的菜品情况确定冲洗菜品后水的循环利用状况;Step S3: the management module determines the recycling status of the water after washing the dishes according to the conditions of the dishes to be washed;

步骤S4:控制模块根据所确定洗菜用水的状况来控制该水所通过的排水管道。Step S4: The control module controls the drainage pipe through which the water passes according to the determined condition of the water used for washing vegetables.

根据上述技术方案,所述步骤S2进一步包括以下步骤:According to the above technical solution, the step S2 further includes the following steps:

步骤S21:获取模块通过网络信号获取用户手机端所购买菜品的订单信息,并通过电信号启用采集模块;Step S21: the acquisition module acquires the order information of the dishes purchased by the user's mobile phone through the network signal, and activates the acquisition module through the electrical signal;

步骤S22:采集子模块一在厨房冲洗池旁对水龙头当前冲洗的菜品进行图像信息采集,图像信息采集完成后通过电信号启用匹配模块;Step S22: the acquisition sub-module 1 collects image information of the dishes currently being rinsed by the faucet next to the kitchen washing pool, and activates the matching module through an electrical signal after the image information collection is completed;

步骤S23:匹配模块将采集模块采集到的图像信息与获取模块获取到手机端订单菜品的图像信息进行匹配,确定菜品种类。Step S23: The matching module matches the image information collected by the collection module with the image information of the ordered dishes obtained by the obtaining module on the mobile terminal, and determines the type of dishes.

根据上述技术方案,所述步骤S3进一步包括以下步骤:According to the above technical solution, the step S3 further includes the following steps:

步骤S31:匹配模块将图像信息匹配成功,且确定菜品种类为非蔬菜类时,则启用开关模块开启污水管道阀门,将冲洗非蔬菜类的水通过污水管道排出;Step S31: when the matching module successfully matches the image information and determines that the type of vegetable is non-vegetable, the switch module is activated to open the valve of the sewage pipeline, and the water for flushing the non-vegetable type is discharged through the sewage pipeline;

步骤S32:匹配模块将图像信息匹配成功,且确定菜品种类为蔬菜时,则启用开关模块开启盆栽浇水管道阀门,将该水排出并进行存储,用于对住房内的盆栽进行浇水;Step S32: when the matching module successfully matches the image information and determines that the type of vegetable is a vegetable, the switch module is enabled to open the valve of the potted plant watering pipeline, and the water is discharged and stored for watering the potted plants in the house;

步骤S33:匹配模块在图像信息匹配不成功时,则启用开关模块开启马桶冲洗管道阀门,将该水排出并进行存储,用于对卫生间的马桶进行冲洗。Step S33: When the matching module fails to match the image information, the switch module is activated to open the valve of the toilet flushing pipeline, and the water is discharged and stored for flushing the toilet in the toilet.

根据上述技术方案,所述步骤S32进一步包括以下步骤:According to the above technical solution, the step S32 further includes the following steps:

步骤S321:确定菜品种类为蔬菜后,则先启用开关模块开启污水管道阀门,并启用采集子模块二,对住房内盆栽进行图像信息采集,并通过电信号启用识别模块;Step S321: After determining that the type of vegetable is vegetable, firstly enable the switch module to open the valve of the sewage pipeline, and enable the second acquisition sub-module to collect image information of the potted plants in the house, and enable the identification module through electrical signals;

步骤S322:识别模块对采集到的住房内盆栽图像信息进行识别,识别筛选出住房内盆栽顶部至花盆顶端高度最小的盆栽;Step S322: the identification module identifies the collected image information of potted plants in the house, and identifies and selects the potted plants with the smallest height from the top of the potted plants in the house to the top of the flowerpot;

步骤S323:测量子模块对上述高度最小的盆栽进行测量,对其顶部及以下的绿色部分进行测量,得到其高度为L;Step S323: the measurement sub-module measures the potted plant with the smallest height, and measures the green part at the top and below, and obtains its height as L;

步骤S324:测量子模块同时对当前水龙头冲洗蔬菜的水流速度进行测量,得到当前水龙头水流速度为V;Step S324: the measurement sub-module simultaneously measures the current water flow speed of the faucet for washing vegetables, and obtains that the current water flow speed of the faucet is V;

步骤S325:数据接收模块对上述数据进行接收,并通过电信号启用分析模块;Step S325: the data receiving module receives the above-mentioned data, and enables the analysis module through the electrical signal;

步骤S326:分析模块获取数据接收模块接收的数据,分析计算得到污水管道阀门所需要开启的时间为T;Step S326: the analysis module obtains the data received by the data receiving module, and the time required to open the sewage pipeline valve is obtained by analysis and calculation as T;

步骤S327:开关模块开启污水管道阀门,计时子模块计时时间达到T后,关闭污水管道阀门并开启盆栽浇水管道阀门将该水排出并进行存储,用于对住房内的盆栽进行浇水。Step S327: The switch module opens the sewage pipe valve, and after the timing sub-module reaches T, closes the sewage pipe valve and opens the potted plant watering pipe valve to discharge and store the water for watering the potted plants in the house.

根据上述技术方案,所述步骤S325中污水管道阀门所需要开启时间T的计算公式如下:According to the above technical solution, the calculation formula of the required opening time T of the sewage pipeline valve in the step S325 is as follows:

Figure BDA0003637036320000041
Figure BDA0003637036320000041

其中,T为污水管道阀门所需要开启的时间,L为最小盆栽的高度,V为水龙头冲洗蔬菜的水流速度,K为时间转换系数,由式可知,最先冲洗蔬菜的水流中包含残留的农药,直接用来浇灌尚未成熟的盆栽会对其造成伤害,但随着继续冲洗,水流中包含残留农药的浓度逐渐减少,可被保留用来浇灌尚未成熟的盆栽;盆栽的成长即盆栽枝叶变长,盆栽承受残留农药的能力变强,则污水管道阀门开启时间较上一次逐渐变短。Among them, T is the time required to open the valve of the sewage pipeline, L is the height of the minimum potted plant, V is the water flow speed of the faucet to wash the vegetables, and K is the time conversion coefficient. It can be seen from the formula that the water flow that washes the vegetables first contains residual pesticides , directly used to water immature potted plants will cause damage to them, but with continued flushing, the concentration of residual pesticides in the water flow will gradually decrease, which can be reserved for watering immature potted plants; the growth of potted plants means that potted plants grow longer. , the potted plant's ability to withstand residual pesticides becomes stronger, and the opening time of the sewage pipe valve is gradually shorter than the last time.

根据上述技术方案,所述步骤S33进一步包括以下步骤:According to the above technical solution, the step S33 further includes the following steps:

步骤S331:图像信息匹配不成功时,通过电信号启用判断模块;Step S331: when the image information matching is unsuccessful, the judgment module is activated through an electrical signal;

步骤S332:判断模块判断水龙头正在冲洗的为餐具类物品,冲洗餐具类的水流包含洗洁剂,则启用开启马桶冲洗管道阀门,为后续卫生间马桶的冲洗进行存储。Step S332: The judgment module judges that the faucet is flushing tableware items, and the water flow for flushing tableware contains detergent, and then enables to open the valve of the toilet flushing pipeline to store for subsequent flushing of the toilet.

与现有技术相比,本发明所达到的有益效果是:本发明,通过设置有检测模块、管理模块与控制模块,可循环利用城市住户厨房用水,节约水资源减少不必要的浪费。Compared with the prior art, the beneficial effects achieved by the present invention are: the present invention, by being provided with a detection module, a management module and a control module, can recycle the kitchen water of urban households, save water resources and reduce unnecessary waste.

附图说明Description of drawings

附图用来提供对本发明的进一步理解,并且构成说明书的一部分,与本发明的实施例一起用于解释本发明,并不构成对本发明的限制。在附图中:The accompanying drawings are used to provide a further understanding of the present invention, and constitute a part of the specification, and are used to explain the present invention together with the embodiments of the present invention, and do not constitute a limitation to the present invention. In the attached image:

图1是本发明的系统模块组成示意图。FIG. 1 is a schematic diagram of the composition of the system modules of the present invention.

具体实施方式Detailed ways

下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, but not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

请参阅图1,本发明提供技术方案:一种大数据的管理控制系统,包括检测模块、管理模块与控制模块,检测模块与管理模块电连接,检测模块与管理模块电连接,检测模块与控制模块电连接,检测模块用于对厨房冲洗的菜品进行检测,管理模块用于对信息数据进行管理分析,控制模块用于对排水管道进行控制,通过设置有检测模块、管理模块与控制模块,可循环利用城市住户厨房用水,节约水资源减少不必要的浪费。Referring to FIG. 1, the present invention provides a technical solution: a management and control system for big data, including a detection module, a management module and a control module, the detection module is electrically connected to the management module, the detection module is electrically connected to the management module, and the detection module is connected to the control module. The modules are electrically connected, the detection module is used to detect the dishes washed in the kitchen, the management module is used to manage and analyze the information data, and the control module is used to control the drainage pipeline. Recycle the water used in the kitchen of urban households, save water resources and reduce unnecessary waste.

检测模块包括获取模块、采集模块、匹配模块、计量模块与识别模块,获取模块与采集模块电连接,采集模块与匹配模块电连接,采集模块与识别模块电连接,采集模块与计量模块电连接,获取模块用于对城市住户的订单信息进行获取,采集模块用于对图像信息进行采集,采集模块包括采集子模块一与采集子模块二,采集子模块一与采集子模块二分别用于对不同的物品进行图像信息采集,匹配模块用于对图像信息进行匹配,计量模块用于对相关信息进行计量,计量模块包括计时子模块与测量子模块,计时子模块与测量子模块电连接,计时子模块用于对时间进行计时,测量子模块用于对速度进行测量,识别子模块用于对图像信息进行识别,通过设置获取模块、采集模块与识别模块,可精准的对当前水龙头正在冲洗的菜品进行识别分析,为后续水的循环利用提供了可靠的依据。The detection module includes an acquisition module, an acquisition module, a matching module, a measurement module and an identification module. The acquisition module is electrically connected to the acquisition module, the acquisition module is electrically connected to the matching module, the acquisition module is electrically connected to the identification module, and the acquisition module is electrically connected to the measurement module. The acquisition module is used to acquire the order information of urban households, and the acquisition module is used to acquire image information. The acquisition module includes acquisition sub-module 1 and acquisition sub-module The image information of the items is collected, the matching module is used to match the image information, and the measurement module is used to measure the relevant information. The measurement module includes a timing sub-module and a measurement sub-module. The module is used to time the time, the measurement sub-module is used to measure the speed, and the recognition sub-module is used to recognize the image information. By setting the acquisition module, the acquisition module and the recognition module, the dishes currently being washed by the faucet can be accurately detected. The identification and analysis provide a reliable basis for subsequent water recycling.

管理模块包括数据接收模块、分析模块与判断模块,数据接收模块与分析模块电连接,数据接收模块与判断模块电连接,数据接收模块用于对数据信息进行接收,分析模块用于对数据进行计算分析,判断模块用于对相关用水进行判断,通过设置分析模块与判断模块,可根据盆栽的大小来确定冲洗蔬菜时污水管道的开启时间,防止水中包含过量的农药对盆栽造成伤害。The management module includes a data receiving module, an analysis module and a judgment module, the data receiving module is electrically connected with the analysis module, the data receiving module is electrically connected with the judgment module, the data receiving module is used for receiving data information, and the analysis module is used for calculating the data The analysis and judgment module is used to judge the relevant water consumption. By setting the analysis module and the judgment module, the opening time of the sewage pipe when washing vegetables can be determined according to the size of the potted plants, so as to prevent the potted plants from being damaged by excessive pesticides in the water.

控制模块包括开关模块,开关模块用于对各个排水管道的阀门开关进行控制。The control module includes a switch module, and the switch module is used to control the valve switch of each drainage pipeline.

一种大数据的管理控制系统的运行方法主要包括以下步骤:A method for operating a big data management control system mainly includes the following steps:

步骤S1:城市住户打开厨房的水龙头将准备做餐的菜品进行清洗,通过电信号启用检测模块;Step S1: the urban resident turns on the faucet of the kitchen to clean the dishes to be cooked, and activates the detection module through the electrical signal;

步骤S2:检测模块通过网络信号获取到城市住户手机端一周内购买菜品的订单信息,并对当前水龙头冲洗的菜品、及住房内的盆栽进行采集确认;Step S2: the detection module obtains the order information of the dishes purchased by the mobile phone of the urban household within one week through the network signal, and collects and confirms the current dishes washed by the faucet and the potted plants in the house;

步骤S3:管理模块根据冲洗的菜品情况确定冲洗菜品后水的循环利用状况;Step S3: the management module determines the recycling status of the water after washing the dishes according to the conditions of the dishes to be washed;

步骤S4:控制模块根据所确定洗菜用水的状况来控制该水所通过的排水管道。Step S4: The control module controls the drainage pipe through which the water passes according to the determined condition of the water used for washing vegetables.

步骤S2进一步包括以下步骤:Step S2 further includes the following steps:

步骤S21:获取模块通过网络信号获取用户手机端所购买菜品的订单信息,并通过电信号启用采集模块;Step S21: the acquisition module acquires the order information of the dishes purchased by the user's mobile phone through the network signal, and activates the acquisition module through the electrical signal;

步骤S22:采集子模块一在厨房冲洗池旁对水龙头当前冲洗的菜品进行图像信息采集,图像信息采集完成后通过电信号启用匹配模块;Step S22: the acquisition sub-module 1 collects image information of the dishes currently being rinsed by the faucet next to the kitchen washing pool, and activates the matching module through an electrical signal after the image information collection is completed;

步骤S23:匹配模块将采集模块采集到的图像信息与获取模块获取到手机端订单菜品的图像信息进行匹配,确定菜品种类。Step S23: The matching module matches the image information collected by the collection module with the image information of the ordered dishes obtained by the obtaining module on the mobile terminal, and determines the type of dishes.

步骤S3进一步包括以下步骤:Step S3 further includes the following steps:

步骤S31:匹配模块将图像信息匹配成功,且确定菜品种类为非蔬菜类时,则启用开关模块开启污水管道阀门,将冲洗非蔬菜类的水通过污水管道排出;Step S31: when the matching module successfully matches the image information and determines that the type of vegetable is non-vegetable, the switch module is activated to open the valve of the sewage pipeline, and the water for flushing the non-vegetable type is discharged through the sewage pipeline;

步骤S32:匹配模块将图像信息匹配成功,且确定菜品种类为蔬菜时,则启用开关模块开启盆栽浇水管道阀门,将该水排出并进行存储,用于对住房内的盆栽进行浇水;Step S32: when the matching module successfully matches the image information and determines that the type of vegetable is a vegetable, the switch module is enabled to open the valve of the potted plant watering pipeline, and the water is discharged and stored for watering the potted plants in the house;

步骤S33:匹配模块在图像信息匹配不成功时,则启用开关模块开启马桶冲洗管道阀门,将该水排出并进行存储,用于对卫生间的马桶进行冲洗。Step S33: When the matching module fails to match the image information, the switch module is activated to open the valve of the toilet flushing pipeline, and the water is discharged and stored for flushing the toilet in the toilet.

步骤S32进一步包括以下步骤:Step S32 further includes the following steps:

步骤S321:确定菜品种类为蔬菜后,则先启用开关模块开启污水管道阀门,并启用采集子模块二,对住房内盆栽进行图像信息采集,并通过电信号启用识别模块;Step S321: After determining that the type of vegetable is vegetable, firstly enable the switch module to open the valve of the sewage pipeline, and enable the second acquisition sub-module to collect image information of the potted plants in the house, and enable the identification module through electrical signals;

步骤S322:识别模块对采集到的住房内盆栽图像信息进行识别,识别筛选出住房内盆栽顶部至花盆顶端高度最小的盆栽;Step S322: the identification module identifies the collected image information of potted plants in the house, and identifies and selects the potted plants with the smallest height from the top of the potted plants in the house to the top of the flowerpot;

步骤S323:测量子模块对上述高度最小的盆栽进行测量,对其顶部及以下的绿色部分进行测量,得到其高度为L;Step S323: the measurement sub-module measures the potted plant with the smallest height, and measures the green part at the top and below, and obtains its height as L;

步骤S324:测量子模块同时对当前水龙头冲洗蔬菜的水流速度进行测量,得到当前水龙头水流速度为V;Step S324: the measurement sub-module simultaneously measures the current water flow speed of the faucet for washing vegetables, and obtains that the current water flow speed of the faucet is V;

步骤S325:数据接收模块对上述数据进行接收,并通过电信号启用分析模块;Step S325: the data receiving module receives the above-mentioned data, and enables the analysis module through the electrical signal;

步骤S326:分析模块获取数据接收模块接收的数据,分析计算得到污水管道阀门所需要开启的时间为T;Step S326: the analysis module obtains the data received by the data receiving module, and the time required to open the sewage pipeline valve is obtained by analysis and calculation as T;

步骤S327:开关模块开启污水管道阀门,计时子模块计时时间达到T后,关闭污水管道阀门并开启盆栽浇水管道阀门将该水排出并进行存储,用于对住房内的盆栽进行浇水。Step S327: The switch module opens the sewage pipe valve, and after the timing sub-module reaches T, closes the sewage pipe valve and opens the potted plant watering pipe valve to discharge and store the water for watering the potted plants in the house.

步骤S325中污水管道阀门所需要开启时间T的计算公式如下:The calculation formula of the required opening time T of the sewage pipeline valve in step S325 is as follows:

Figure BDA0003637036320000081
Figure BDA0003637036320000081

其中,T为污水管道阀门所需要开启的时间,L为最小盆栽的高度,V为水龙头冲洗蔬菜的水流速度,K为时间转换系数,由式可知,最先冲洗蔬菜的水流中包含残留的农药,直接用来浇灌尚未成熟的盆栽会对其造成伤害,但随着继续冲洗,水流中包含残留农药的浓度逐渐减少,可被保留用来浇灌尚未成熟的盆栽;盆栽的成长即盆栽枝叶变长,盆栽承受残留农药的能力变强,则污水管道阀门开启时间较上一次逐渐变短。Among them, T is the time required to open the valve of the sewage pipeline, L is the height of the minimum potted plant, V is the water flow speed of the faucet to wash the vegetables, and K is the time conversion coefficient. It can be seen from the formula that the water flow that washes the vegetables first contains residual pesticides , directly used to water immature potted plants will cause damage to them, but with continued flushing, the concentration of residual pesticides in the water flow will gradually decrease, which can be reserved for watering immature potted plants; the growth of potted plants means that potted plants grow longer. , the potted plant's ability to withstand residual pesticides becomes stronger, and the opening time of the sewage pipe valve is gradually shorter than the last time.

步骤S33进一步包括以下步骤:Step S33 further includes the following steps:

步骤S331:图像信息匹配不成功时,通过电信号启用判断模块;Step S331: when the image information matching is unsuccessful, the judgment module is activated through an electrical signal;

步骤S332:判断模块判断水龙头正在冲洗的为餐具类物品,冲洗餐具类的水流包含洗洁剂,则启用开启马桶冲洗管道阀门,为后续卫生间马桶的冲洗进行存储。Step S332: The judgment module judges that the faucet is flushing tableware items, and the water flow for flushing tableware contains detergent, and then enables to open the valve of the toilet flushing pipeline to store for subsequent flushing of the toilet.

实施例一:城市住户一打开厨房的水龙头将做餐的菜品进行清洗,检测模块通过网络信号获取到城市住户手机端一周内购买菜品的订单信息,确定菜品种类为蔬菜后,先启用开关模块开启污水管道阀门,并通过测量子模块测量水龙头冲洗蔬菜的水流速度为V=20cm/s,采集子模块二对住房内盆栽进行图像信息采集,对高度最小的盆栽进行测量,得到其高度为L=5cm,由于最先冲洗蔬菜的水流中包含残留的农药,直接用来浇灌尚未成熟的盆栽会对其造成伤害,但随着继续冲洗,水流中包含残留农药的浓度逐渐减少,可被保留用来浇灌尚未成熟的盆栽,且时间转换系数K=6.4×106,则污水管道阀门所需要开启的时间为

Figure BDA0003637036320000091
Example 1: As soon as an urban resident turns on the faucet in the kitchen to clean the dishes for cooking, the detection module obtains the order information of the dishes purchased by the urban resident's mobile phone within a week through the network signal, and after determining that the type of the dishes is vegetables, the switch module is turned on first. The sewage pipe valve, and the water flow velocity of the faucet to wash vegetables is measured by the measurement sub-module as V=20cm/s. The acquisition sub-module 2 collects the image information of the potted plants in the house, and measures the potted plants with the smallest height. The height is L= 5cm, because the water flow that first washes the vegetables contains residual pesticides, it will cause damage to the immature potted plants directly when used to water them. Irrigation of immature potted plants, and the time conversion coefficient K=6.4×10 6 , the time required to open the valve of the sewage pipeline is
Figure BDA0003637036320000091

实施例二:城市住户二打开厨房的水龙头将做餐的菜品进行清洗,检测模块通过网络信号获取到城市住户手机端一周内购买菜品的订单信息,确定菜品种类为蔬菜后,先启用开关模块开启污水管道阀门,并通过测量子模块测量水龙头冲洗蔬菜的水流速度为V=40cm/s,采集子模块二对住房内盆栽进行图像信息采集,对高度最小的盆栽进行测量,得到其高度为L=4cm,由于最先冲洗蔬菜的水流中包含残留的农药,直接用来浇灌尚未成熟的盆栽会对其造成伤害,但随着继续冲洗,水流中包含残留农药的浓度逐渐减少,可被保留用来浇灌尚未成熟的盆栽,且时间转换系数K=6.4×106,则污水管道阀门所需要开启的时间为

Figure BDA0003637036320000092
Example 2: Urban resident 2 turns on the faucet in the kitchen to clean the dishes for cooking. The detection module obtains the order information of the dishes purchased by the urban resident's mobile phone within a week through the network signal, and after determining that the type of the dishes is vegetables, first enable the switch module to turn on Sewage pipe valve, and measure the water flow velocity of the faucet to wash vegetables through the measurement sub-module, V=40cm/s, the acquisition sub-module 2 collects image information for the potted plants in the house, and measures the potted plants with the smallest height, and obtains its height as L= 4cm, because the water flow that first washes vegetables contains residual pesticides, it will cause damage to the immature potted plants directly when used to water them. Irrigation of immature potted plants, and the time conversion coefficient K=6.4×10 6 , the time required to open the valve of the sewage pipeline is
Figure BDA0003637036320000092

实施例三:城市住户二打开厨房的水龙头将做餐的菜品进行清洗,检测模块通过网络信号获取到城市住户手机端一周内购买菜品的订单信息,确定菜品种类为蔬菜后,先启用开关模块开启污水管道阀门,并通过测量子模块测量水龙头冲洗蔬菜的水流速度为V=30cm/s,采集子模块二对住房内盆栽进行图像信息采集,对高度最小的盆栽进行测量,得到其高度为L=4cm,由于最先冲洗蔬菜的水流中包含残留的农药,直接用来浇灌尚未成熟的盆栽会对其造成伤害,但随着继续冲洗,水流中包含残留农药的浓度逐渐减少,可被保留用来浇灌尚未成熟的盆栽,且时间转换系数K=6.4×106,则污水管道阀门所需要开启的时间为

Figure BDA0003637036320000093
Example 3: Urban resident 2 turns on the faucet in the kitchen to clean the dishes for cooking. The detection module obtains the order information of the dishes purchased by the urban resident's mobile phone within a week through the network signal, and after determining that the type of the dishes is vegetables, first enable the switch module to turn on Sewage pipe valve, and measure the water flow velocity of the faucet to wash vegetables through the measurement sub-module, V=30cm/s, the acquisition sub-module 2 collects image information for the potted plants in the house, and measures the potted plants with the smallest height, and obtains its height as L= 4cm, because the water flow that first washes vegetables contains residual pesticides, it will cause damage to the immature potted plants directly when used to water them. Irrigation of immature potted plants, and the time conversion coefficient K=6.4×10 6 , the time required to open the valve of the sewage pipeline is
Figure BDA0003637036320000093

需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。It should be noted that, in this document, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any relationship between these entities or operations. any such actual relationship or sequence exists. Moreover, the terms "comprising", "comprising" or any other variation thereof are intended to encompass a non-exclusive inclusion such that a process, method, article or device that includes a list of elements includes not only those elements, but also includes not explicitly listed or other elements inherent to such a process, method, article or apparatus.

最后应说明的是:以上所述仅为本发明的优选实施例而已,并不用于限制本发明,尽管参照前述实施例对本发明进行了详细的说明,对于本领域的技术人员来说,其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。Finally, it should be noted that the above descriptions are only preferred embodiments of the present invention, and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, the The technical solutions described in the foregoing embodiments may be modified, or some technical features thereof may be equivalently replaced. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims (10)

1. The utility model provides a management control system of big data, includes detection module, management module and control module, its characterized in that: the kitchen washing device comprises a detection module, a management module, a control module and a control module, wherein the detection module is electrically connected with the management module, the detection module is used for detecting dishes washed by a kitchen, the management module is used for managing and analyzing information data, and the control module is used for controlling a drainage pipeline.
2. The big data management control system according to claim 1, wherein: the detection module comprises an acquisition module, a matching module, a metering module and an identification module, wherein the acquisition module is electrically connected with the acquisition module, the acquisition module is electrically connected with the matching module, the acquisition module is electrically connected with the identification module, the acquisition module is electrically connected with the metering module, the acquisition module is used for acquiring order information of urban residents, the acquisition module is used for acquiring image information, the acquisition module comprises an acquisition submodule I and an acquisition submodule II, the acquisition submodule I and the acquisition submodule II are respectively used for acquiring image information of different articles, the matching module is used for matching the image information, the metering module is used for metering related information, the metering module comprises a timing submodule and a measuring submodule, and the timing submodule is electrically connected with the measuring submodule, the timing submodule is used for timing time, the measuring submodule is used for measuring speed, and the identifying submodule is used for identifying image information.
3. The big data management control system according to claim 2, wherein: the management module comprises a data receiving module, an analysis module and a judgment module, wherein the data receiving module is electrically connected with the analysis module, the data receiving module is electrically connected with the judgment module, the data receiving module is used for receiving data information, the analysis module is used for calculating and analyzing data, and the judgment module is used for judging related water consumption.
4. The big data management control system according to claim 3, wherein: the control module comprises a switch module, and the switch module is used for controlling the valve switches of the drainage pipelines.
5. The big data management and control system according to claim 4, wherein: the operation method of the big data management control system mainly comprises the following steps:
step S1: the city householder opens a water tap in a kitchen to clean dishes to be eaten, and starts the detection module through an electric signal;
step S2: the detection module acquires order information of dishes purchased by a mobile phone end of an urban resident within one week through network signals, and collects and confirms the dishes washed by a current faucet and potted plants in a house;
step S3: the management module determines the recycling condition of water after washing dishes according to the condition of the washed dishes;
step S4: the control module controls a drainage pipeline through which the water passes according to the determined condition of the vegetable washing water.
6. The big data management and control system according to claim 5, wherein: the step S2 further includes the steps of:
step S21: the acquisition module acquires order information of dishes purchased by a user mobile phone end through a network signal and starts the acquisition module through an electric signal;
step S22: the acquisition submodule I acquires image information of dishes currently washed by the faucet beside the kitchen washing pool, and starts the matching module through an electric signal after the image information is acquired;
step S23: the matching module matches the image information acquired by the acquisition module with the image information of the order dishes of the mobile phone terminal acquired by the acquisition module, and determines the type of the dishes.
7. The big data management and control system according to claim 6, wherein: the step S3 further includes the steps of:
step S31: the matching module successfully matches the image information, and when the type of the dish is determined to be non-vegetable, the switch module is started to open the sewage pipeline valve, and the water for flushing the non-vegetable is discharged through the sewage pipeline;
step S32: the matching module successfully matches the image information, and when the vegetable type is determined to be vegetable, the switch module is started to open a watering pipeline valve of the potted plant, and the water is discharged and stored for watering the potted plant in the house;
step S33: and when the image information is not matched successfully, the matching module starts the switch module to open the valve of the toilet flushing pipeline, and the water is discharged and stored for flushing the toilet in the toilet.
8. The big data management and control system according to claim 7, wherein: the step S32 further includes the steps of:
step S321: after the vegetable type is determined to be vegetable, starting the switch module to open the sewage pipeline valve, starting the acquisition submodule II to acquire image information of potted plants in the house, and starting the identification module through an electric signal;
step S322: the identification module identifies the collected image information of the potted plants in the house and identifies and screens the potted plants with the smallest height from the top of the potted plants in the house to the top of the flowerpot;
step S323: the measurement submodule measures the potted plant with the minimum height and measures the green part at the top and below the top of the potted plant to obtain the height L of the potted plant;
step S324: the measuring submodule simultaneously measures the current water flow speed of the current faucet for washing the vegetables to obtain the current water flow speed of the current faucet as V;
step S325: the data receiving module receives the data and starts the analysis module through an electric signal;
step S326: the analysis module acquires the data received by the data receiving module, and the time required for opening the sewage pipeline valve is T through analysis and calculation;
step S327: the switch module opens the sewage pipeline valve, and after the timing time of the timing submodule reaches T, the sewage pipeline valve is closed and the potted plant watering pipeline valve is opened to discharge and store the water, so that the potted plant in the house is watered.
9. The big data management control system according to claim 8, wherein: the calculation formula of the opening time T required for the sewage pipeline valve in the step S325 is as follows:
Figure FDA0003637036310000041
the method comprises the following steps that T is the time required by a sewage pipeline valve to be opened, L is the minimum height of a potted plant, V is the water flow speed of a faucet for washing vegetables, and K is a time conversion coefficient, so that the water flow for washing the vegetables firstly contains residual pesticides, the vegetables can be directly used for irrigating the potted plant which is not ripe to cause damage to the potted plant, but the concentration of the residual pesticides contained in the water flow is gradually reduced along with the continuous washing, and the vegetables can be reserved for irrigating the potted plant which is not ripe; the growth of potted plant, i.e. the branches and leaves of potted plant become long, the ability of potted plant to bear residual pesticide becomes strong, and then the opening time of sewage pipeline valve becomes shorter gradually than last time.
10. The big data management control system according to claim 9, wherein: the step S33 further includes the steps of:
step S331: when the image information matching is unsuccessful, starting a judging module through an electric signal;
step S332: the judging module judges that the water faucet is washing tableware, and the water flow for washing the tableware contains detergent, and then the valve of the toilet flushing pipeline is started to be opened for storing the subsequent flushing of the toilet in the toilet.
CN202210508562.1A 2022-05-10 2022-05-10 Big data management control system Pending CN115047828A (en)

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200246240Y1 (en) * 2001-02-17 2001-09-28 최기영 Dual tap for sink
CN109386024A (en) * 2017-08-10 2019-02-26 李文 A kind of water saver for kitchen
CN110093956A (en) * 2019-05-31 2019-08-06 中铁建设集团有限公司 Building intelligence microsponge system with emergency guarantee function
CN212153591U (en) * 2020-03-17 2020-12-15 青岛海尔智慧厨房电器有限公司 Intelligent water tank
CN212896641U (en) * 2020-04-26 2021-04-06 青岛海尔智慧厨房电器有限公司 Water storage equipment and integrated sinks

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200246240Y1 (en) * 2001-02-17 2001-09-28 최기영 Dual tap for sink
CN109386024A (en) * 2017-08-10 2019-02-26 李文 A kind of water saver for kitchen
CN110093956A (en) * 2019-05-31 2019-08-06 中铁建设集团有限公司 Building intelligence microsponge system with emergency guarantee function
CN212153591U (en) * 2020-03-17 2020-12-15 青岛海尔智慧厨房电器有限公司 Intelligent water tank
CN212896641U (en) * 2020-04-26 2021-04-06 青岛海尔智慧厨房电器有限公司 Water storage equipment and integrated sinks

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