CN117671922A - Monitoring and early warning system based on environmental parameters of winery - Google Patents

Monitoring and early warning system based on environmental parameters of winery Download PDF

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Publication number
CN117671922A
CN117671922A CN202311635395.8A CN202311635395A CN117671922A CN 117671922 A CN117671922 A CN 117671922A CN 202311635395 A CN202311635395 A CN 202311635395A CN 117671922 A CN117671922 A CN 117671922A
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China
Prior art keywords
winery
module
environmental
area
parameters
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Inventor
薛学富
朱逸轩
严智
徐晶晶
林镇
刘杰
马孟清
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Hubei Three Gorges Cloud Computing Center Co ltd
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Hubei Three Gorges Cloud Computing Center Co ltd
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Priority to CN202311635395.8A priority Critical patent/CN117671922A/en
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    • 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]

Abstract

The invention relates to the technical field of environmental monitoring, in particular to a monitoring and early warning system based on environmental parameters of winery, which comprises the following components: the control terminal is a main control terminal of the system and is used for sending out an execution command; the acquisition module is used for acquiring environmental parameters of the area where the winery is located in real time; the storage module is used for receiving the regional environmental parameters of the winery collected by the collection module in real time and storing the received regional environmental parameters of the winery; according to the invention, the environment of the area where the winery is located is monitored and evaluated in an omnibearing manner by collecting the environment parameters in the area where the winery is located, so that the environment safety problem existing in the area where the winery is located can be accurately captured, the safety of production operation in the area where the winery is located is effectively maintained, manual monitoring is replaced, the labor cost of daily environment management of the winery is reduced, and the intelligence and the precision of the daily environment management of the winery are improved.

Description

Monitoring and early warning system based on environmental parameters of winery
Technical Field
The invention relates to the technical field of environmental monitoring, in particular to a monitoring and early warning system based on environmental parameters of winery.
Background
The wine factories, as the name implies, are combined with production, packaging and storage into a whole, and the wine production factories;
in order to meet the brewing conditions, the staff of the winery needs to continuously monitor the real-time environment inside the winery for a long time so as to ensure the internal environment of the winery, and the requirements of production, packaging and storage in the brewing process can be well met.
However, at present, monitoring of the internal environment of the winery is often performed by a monitoring instrument, such as a thermometer, a hygrometer and the like, so that the internal environment data of the winery is collected and read by a worker, and the internal environment of the winery is adaptively regulated and controlled based on the read result.
Disclosure of Invention
Aiming at the defects existing in the prior art, the invention provides a monitoring and early warning system based on environmental parameters of winery, which solves the technical problems in the background art.
In order to achieve the above purpose, the invention is realized by the following technical scheme:
a monitoring and early warning system based on environmental parameters of a winery, comprising:
the control terminal is a main control terminal of the system and is used for sending out an execution command;
the acquisition module is used for acquiring environmental parameters of the area where the winery is located in real time;
the storage module is used for receiving the regional environmental parameters of the winery collected by the collection module in real time and storing the received regional environmental parameters of the winery;
the analysis module is used for setting a winery environment safety judgment threshold value, retrieving the regional environment parameters of the winery stored in the storage module, analyzing the winery environment safety score by applying the retrieved regional environment parameters of the winery, and judging whether the winery environment is safe or not by comparing the winery environment safety judgment threshold value with the winery environment safety score;
the recording module is used for continuously receiving the winery environmental security scores obtained by analysis in the analysis module, recording the winery environmental security scores, and generating a winery environmental security score trend graph based on the continuous receiving sequence by applying the winery environmental security scores;
the early warning module is used for receiving the judgment result of the environmental safety of the winery in the analysis module, and triggering an alarm when the judgment result is negative;
the early warning module is provided with an audio module at the lower level, the audio module is used for receiving a judging result received in the early warning module, when the judging result is negative, an alarm audio is sent out, an alarm triggered in the early warning module is the alarm audio sent out by the audio module, and when the judging result is positive, the early warning module refreshes the system.
Still further, collection module lower level is provided with sub-module, includes:
the construction unit is used for uploading internal distribution parameters of the winery and constructing a three-dimensional model of the winery based on the internal distribution parameters of the winery;
the identifying unit is used for receiving the three-dimensional model of the winery constructed in the constructing unit and identifying brewing, packaging, wine storage and other areas in the three-dimensional model of the winery;
the construction unit constructs a winery three-dimensional model based on the distribution position coordinates of the winery internal building structure, and performs different-color differential rendering on areas corresponding to each functional attribute in the winery three-dimensional model based on the functional attribute of each area in the winery, wherein the functional attribute of each area in the winery comprises: brewing, packaging, storing and others refer to functional attribute areas in the winery other than those used for brewing, packaging and storing wine.
Further, the winery three-dimensional model received in the identifying unit and the identified winery three-dimensional model winemaking, packaging and wine storage areas are fed back to the control terminal in real time, the system end user reads the winery three-dimensional model and the winery three-dimensional model winemaking, packaging, wine storage and other areas in the winery three-dimensional model in the control terminal, and based on the read winery three-dimensional model and the winery three-dimensional model, the acquisition module deployment logic is designed, and the system end user applies the acquisition module deployment logic to deploy the acquisition module into the winery, wherein the acquisition module deployment logic obeys:
wherein: m is the deployment number of the acquisition modules; g is the deployment number base number of the acquisition modules; f is a daily yield value of the deployment area of the acquisition module; v all The size of the same-function attribute area deployed for the acquisition module; omega is the weight;
wherein, the number m of the deployment of the collection modules is further rounded up, the number g of the deployment of the collection modules is set based on the size of the deployment area of the collection modules, and the number g of the deployment of the collection modules is subjected to v all The larger g is, and the smaller g is, wherein g is a positive integer, the value of the weight omega is set according to the deployment target area of the acquisition module applied by the formula, and the weight omega is respectively recorded as omega when the weight omega is applied to brewing, packaging, wine storage and other areas 1 、ω 2 、ω 3 、ω 4 And omega 1 >ω 3 >ω 2 >ω 4
Furthermore, the collection modules are provided with a temperature sensor, a humidity sensor and air detection equipment, and after the collection module deployment logic is used for solving the deployment quantity of the collection modules corresponding to brewing, packaging, wine storage and other areas, the collection modules with the specified quantity are uniformly distributed and equidistantly deployed in each area.
Still further, the storage module is provided with a sub-module at a lower stage, including:
the logic unit is used for setting a receiving period when the storage module operates to receive the regional environment parameters of the winery;
the receiving period set in the logic unit is set based on the duration of the current winery executing the brewing task, and the longer the duration of the current winery executing the brewing task is, the shorter the receiving period is, otherwise, the longer the receiving period is, and the receiving period set in the logic unit in the synchronous application storage module is operated by the acquisition module in real time.
Furthermore, the analysis module operates in real time based on the receiving period set in the logic unit, the regional environment parameters of the winery retrieved in the analysis module are the latest group of regional environment parameters of the winery stored in the storage module, and the environmental safety score analysis logic of the winery in the analysis module is expressed as:
wherein: k is the environmental safety score of the winery; t (T) now The environmental temperature of the winery in the environmental parameters of the area where the winery is located; t (T) std The optimal temperature of the area corresponding to the environmental parameters of the area where the winery is located is obtained; x-shaped articles 1 、χ 2 Is T now And T is std Respectively corresponding weights; RH (relative humidity) now The environmental humidity of the winery in the environmental parameters of the area where the winery is located; RH (relative humidity) std The optimal humidity of the area corresponding to the environmental parameters of the area where the winery is located is obtained; n is a collection of winery environmental safety scoring influencing parameters; q i-now The corresponding value of the ith influence parameter in the environmental parameters of the area where the winery is located; q i-std An optimal parameter value for the ith influencing parameter; x-shaped articles i Weights for the i-th influencing parameter;
wherein, the larger k is, the more suitable the area environment parameters of the area where the winery is located in the expression are from the area in the winery, and the more suitable the wine making, packaging or wine storage are, the more suitable the 1 is more than or equal to the 0.
Furthermore, the regional environmental parameters of the winery are all derived from the acquisition module, and the set of the regional environmental parameters of the winery, except for temperature and humidity, is the regional environmental parameters of the winery, namely χ 12 Not less than 0.5, all χ values based on the set of winery environmental safety score influencing parameters n i Sum of (2) and χ 1 、χ 2 The sum of (2) is 1.
Further, the winery environmental safety scores k obtained by the winery environmental safety score analysis logic correspond to the winery, package, wine storage and other areas in the winery respectively, and are corrected based on the winery environmental safety scores k corresponding to the winery, package and wine storage areas through the winery environmental safety scores k corresponding to the other areas, wherein the correction logic is expressed as follows:
k′=k 0 ×(1-k other 2 ) -1
wherein: k' is the modified winery environmental security score corresponding to the wine brewing, packaging or wine storage area; k (k) 0 Scoring for original security based on the winery environment corresponding to the winery, packaging or wine storage area; k (k) other Scoring for winery environmental safety based on other areas.
Furthermore, the early warning module is used for carrying out real-time traversal on the winery environment safety scoring trend graph generated in the recording module in preference to the operation of the recording module, wherein the winery environment safety scoring trend graph generated in the recording module at least comprises five groups of winery environment safety scores, the winery environment safety scoring trend graph iterates the representation data of the trend graph based on newly received winery safety scores, and the early warning module is also used for synchronously triggering an alarm when two groups of continuously decreasing trend of the winery environment safety scores represented in the graph are identified;
when the early warning module triggers the warning, the early warning module synchronously performs tracing of the corresponding winery area based on the environmental parameters of the area where the winery is located or the environmental security scoring trend graph of the winery.
Furthermore, the control terminal is interactively connected with the acquisition module through a local area network, the acquisition module is interactively connected with the construction unit and the identification unit through the local area network, the acquisition module is interactively connected with the storage module through the local area network, the storage module is interactively connected with the logic unit through the local area network, the logic unit is interactively connected with the acquisition module through the local area network, the storage module is interactively connected with the analysis module through the local area network, and the analysis module, the recording module and the early warning module are interactively connected through the local area network.
Compared with the known public technology, the technical scheme provided by the invention has the following beneficial effects:
1. the invention provides a monitoring and early warning system based on environmental parameters of a winery, which monitors and evaluates the environment of the area of the winery in an omnibearing manner by collecting the environmental parameters of the area of the winery in the operation process, can accurately capture the environmental safety problem existing in the area of the winery, effectively maintains the safety of production operation in the area of the winery, replaces manual monitoring, reduces the labor cost of daily environmental management of the winery, and improves the intelligence and the precision of the daily environmental management of the winery.
2. In the running process of the system, a three-dimensional model of the winery can be constructed based on the internal structure distribution parameters of the area where the winery is located, so that the equipment for collecting the environmental parameters of the winery is adaptively designed and deployed based on the further analysis of the three-dimensional model of the winery, the accuracy and the effectiveness of the environmental parameters of the winery collected by the collecting equipment are improved, and the running output of the system is more accurate and real in safety analysis and evaluation results of the winery.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below. It is evident that the drawings in the following description are only some embodiments of the present invention and that other drawings may be obtained from these drawings without inventive effort for a person of ordinary skill in the art.
FIG. 1 is a schematic diagram of a monitoring and early warning system based on environmental parameters of a winery;
FIG. 2 is an example of a winery environmental security score trend graph generated in a record module in the system.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention more clear, the technical solutions of 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. It will be apparent that the described embodiments are some, but not all, embodiments of the invention. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
The invention is further described below with reference to examples.
Example 1:
a monitoring and early warning system based on environmental parameters of winery in this embodiment, as shown in FIG. 1, includes:
the control terminal is a main control terminal of the system and is used for sending out an execution command;
the acquisition module is used for acquiring environmental parameters of the area where the winery is located in real time;
the storage module is used for receiving the regional environmental parameters of the winery collected by the collection module in real time and storing the received regional environmental parameters of the winery;
the analysis module is used for setting a winery environment safety judgment threshold value, retrieving the regional environment parameters of the winery stored in the storage module, analyzing the winery environment safety score by applying the retrieved regional environment parameters of the winery, and judging whether the winery environment is safe or not by comparing the winery environment safety judgment threshold value with the winery environment safety score;
the recording module is used for continuously receiving the winery environmental security scores obtained by analysis in the analysis module, recording the winery environmental security scores, and generating a winery environmental security score trend graph based on the continuous receiving sequence by applying the winery environmental security scores;
the early warning module is used for receiving the judgment result of the environmental safety of the winery in the analysis module, and triggering an alarm when the judgment result is negative;
the system comprises an early warning module, a control module and a control module, wherein the lower level of the early warning module is provided with an audio module which is used for receiving a judging result received in the early warning module, when the judging result is negative, an alarm audio is sent out, an alarm triggered in the early warning module is the alarm audio sent out by the audio module, and when the judging result is positive, the early warning module refreshes the system;
the collection module is provided with the submodule in the next stage, includes:
the construction unit is used for uploading internal distribution parameters of the winery and constructing a three-dimensional model of the winery based on the internal distribution parameters of the winery;
the identifying unit is used for receiving the three-dimensional model of the winery constructed in the constructing unit and identifying brewing, packaging, wine storage and other areas in the three-dimensional model of the winery;
the construction unit constructs a winery three-dimensional model based on the distribution position coordinates of the winery internal building structure, and performs different-color differential rendering on areas corresponding to each functional attribute in the winery three-dimensional model based on the functional attribute of each area in the winery, wherein the functional attribute of each area in the winery comprises: brewing, packaging, storing and others are functional attribute areas which are not used for brewing, packaging and storing wine in winery;
the storage module is provided with the submodule in the next stage, includes:
the logic unit is used for setting a receiving period when the storage module operates to receive the regional environment parameters of the winery;
the receiving period set in the logic unit is set based on the duration of the current winery executing the brewing task, and the longer the duration of the current winery executing the brewing task is, the shorter the receiving period is, otherwise, the longer the receiving period is, and the receiving period set in the logic unit in the synchronous application storage module is operated by the acquisition module in real time;
the analysis module operates in real time based on the receiving period set in the logic unit, the regional environmental parameters of the winery, which are retrieved in the analysis module, are the latest regional environmental parameters of a group of winery stored in the storage module, and the environmental safety score analysis logic of the winery in the analysis module is expressed as follows:
wherein: k is the environmental safety score of the winery; t (T) now The environmental temperature of the winery in the environmental parameters of the area where the winery is located; t (T) std The optimal temperature of the area corresponding to the environmental parameters of the area where the winery is located is obtained; x-shaped articles 1 、χ 2 Is T now And T is std Respectively corresponding weights; RH (relative humidity) now The environmental humidity of the winery in the environmental parameters of the area where the winery is located; RH (relative humidity) std The optimal humidity of the area corresponding to the environmental parameters of the area where the winery is located is obtained; n is a collection of winery environmental safety scoring influencing parameters; q i-now The corresponding value of the ith influence parameter in the environmental parameters of the area where the winery is located; q i-std An optimal parameter value for the ith influencing parameter; x-shaped articles i Weights for the i-th influencing parameter;
wherein, the larger k is, the more suitable the area environment parameters of the area where the winery is located in the expression are from the area in the winery, and the more suitable the wine making, packaging or wine storage are, the more suitable the k is more than or equal to 1 and the more suitable the k is more than or equal to 0;
the regional environment parameters of the winery are derived from the acquisition module, and the set of the regional environment parameters of the winery except the temperature and the humidity is the regional environment parameters of the winery, namely χ 12 Not less than 0.5, the sum of all χi values and χ values of the set n of influence parameters based on the environmental safety score of winery 1 、χ 2 The sum of (2) is 1;
the control terminal is connected with an acquisition module through a local area network in an interactive way, the acquisition module is connected with a construction unit and an identification unit through the local area network in an interactive way, the acquisition module is connected with a storage module through the local area network in an interactive way, the storage module is connected with a logic unit through the local area network in an interactive way, the logic unit is connected with the acquisition module through the local area network in an interactive way, the storage module is connected with an analysis module through the local area network in an interactive way, and the analysis module, the recording module and the early warning module are connected with each other through the local area network in an interactive way.
In this embodiment, the control terminal controls the acquisition module to operate to acquire the regional environmental parameters of the winery in real time, the storage module synchronously receives the regional environmental parameters of the winery acquired by the acquisition module in real time, stores the received regional environmental parameters of the winery, the analysis module is arranged in a rear-mounted operation mode to set a winery environmental safety judgment threshold, the regional environmental parameters of the winery stored in the storage module are fetched, the environmental safety score of the winery is analyzed by using the fetched regional environmental parameters of the winery, the safety score of the winery is compared with the environmental safety score of the winery through the winery environmental safety judgment threshold, whether the environment of the winery is safe is judged, the recording module further continuously receives the environmental safety score of the winery analyzed by the analysis module, records the environmental safety score of the winery based on a continuous receiving sequence, finally receives the environmental safety judgment result of the winery in the analysis module through the early warning module, and triggers an alarm when the judgment result is negative;
the sub-module arranged at the lower level of the acquisition module further provides necessary deployment and operation conditions for the operation of the acquisition module, the configured winery environmental safety scoring analysis logic is used for evaluating the winery environmental safety, production data support is provided for the production of the winery environmental safety scoring trend graph constructed in the recording module, and the generated winery environmental safety scoring trend graph is used for providing visual data reading conditions for a system end user, so that the system end user is convenient for the environmental safety management of the winery.
Example 2:
on the aspect of implementation, on the basis of embodiment 1, this embodiment further specifically describes a monitoring and early warning system based on environmental parameters of winery in embodiment 1 with reference to fig. 1:
the marking unit 21 runs synchronously with the acquisition module 2, the configuration unit 22 follows the winery three-dimensional model received in the marking unit identification unit and the identified winery three-dimensional model to feed back to the control terminal in real time, the system end user reads the winery three-dimensional model and the winery, packaging, wine storage and other areas in the winery three-dimensional model in the control terminal, based on the read winery three-dimensional model and the winery three-dimensional model, the acquisition module deployment logic is designed, the system end user applies the acquisition module deployment logic to deploy the acquisition module with the winery, the acquisition module deployment logic obeys:
wherein: m is the deployment number of the acquisition modules; g is the deployment number base number of the acquisition modules; f is a daily yield value of the deployment area of the acquisition module; v all The size of the same-function attribute area deployed for the acquisition module; omega is the weight;
wherein, the number m of the deployment of the collection modules is further rounded up, the number g of the deployment of the collection modules is set based on the size of the deployment area of the collection modules, and the number g of the deployment of the collection modules is subjected to v all The larger g is, and the smaller g is, wherein g is a positive integer, the value of the weight omega is set according to the deployment target area of the acquisition module applied by the formula, and the weight omega is respectively recorded as omega when the weight omega is applied to brewing, packaging, wine storage and other areas 1 、ω 2 、ω 3 、ω 4 And omega 1 >ω 3 >ω 2 >ω 4
The acquisition modules are provided with temperature sensors, humidity sensors and air detection equipment, and after the acquisition module deployment logic is used for solving the deployment quantity of the acquisition modules corresponding to brewing, packaging, wine storage and other areas, the acquisition modules with the specified quantity are uniformly distributed in each area and deployed at equal intervals.
Through the formula calculation and the arrangement, necessary deployment logic support is provided for deployment of the acquisition module.
Example 3:
on the aspect of implementation, on the basis of embodiment 1, this embodiment further specifically describes a monitoring and early warning system based on environmental parameters of winery in embodiment 1 with reference to fig. 1:
the winery environmental safety scores k obtained through the winery environmental safety score analysis logic correspond to winery, package, wine storage and other areas in the winery respectively, and are corrected based on the winery environmental safety scores k corresponding to the winery, package and wine storage areas through the winery environmental safety scores k corresponding to the other areas, wherein the correction logic is expressed as follows:
k′=k 0 ×(1-k other 2 ) -1
wherein: k' is the modified winery environmental security score corresponding to the wine brewing, packaging or wine storage area; k (k) 0 Scoring for original security based on the winery environment corresponding to the winery, packaging or wine storage area; k (k) other Scoring for winery environmental safety based on other areas.
Through the calculation of the formula, the environmental safety score of the winery is corrected, so that the winery environmental safety score trend graph generated by the recording module in the system brings further refinement effect.
As shown in fig. 1, the early warning module is in real time prior to the operation of the recording module in the system, the winery environmental safety scoring trend graph generated in the recording module at least comprises five groups of winery environmental safety scores, the winery environmental safety scoring trend graph iterates the representation data of the trend graph based on newly received winery safety scores, and the early warning module is also used for traversing the winery environmental safety scoring trend graph generated in the recording module in real time, and synchronously triggering an alarm when two groups of continuously decreasing trends of the winery safety scores shown in the graph are identified;
when the early warning module triggers the warning, the early warning module synchronously performs tracing of the corresponding winery area based on the environmental parameters of the area where the winery is located as a result of the environmental safety judgment of the winery or the environmental safety scoring trend chart of the winery.
Through the arrangement, the system operation logic is further improved, and the environmental health management effect of the system on winery is more comprehensive.
In summary, in the above embodiment, the system collects environmental parameters in the area where the winery is located in the operation process, monitors and evaluates the environment in the area where the winery is located in an omnibearing manner, so that the environmental safety problem existing in the area where the winery is located can be accurately captured, the safety of production operation in the area where the winery is located is effectively maintained, and the manual monitoring is replaced, so that the labor cost of daily environmental management of the winery is reduced, and the intelligence and the accuracy of the daily environmental management of the winery are improved; in the running process of the system, a three-dimensional model of the winery can be constructed based on the internal structure distribution parameters of the area where the winery is located, so that the equipment for collecting the environmental parameters of the winery is adaptively designed and deployed based on the further analysis of the three-dimensional model of the winery, the accuracy and the effectiveness of the environmental parameters of the winery collected by the collecting equipment are improved, and the running output of the system is more accurate and real in safety analysis and evaluation results of the winery.
The above embodiments are only for illustrating the technical solution of the present invention, and are not limiting; although the invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical scheme described in the foregoing embodiments can be modified or some technical features thereof can be replaced by equivalents; such modifications and substitutions do not depart from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims (10)

1. Monitoring and early warning system based on winery environmental parameter, characterized by comprising:
the control terminal is a main control terminal of the system and is used for sending out an execution command;
the acquisition module is used for acquiring environmental parameters of the area where the winery is located in real time;
the storage module is used for receiving the regional environmental parameters of the winery collected by the collection module in real time and storing the received regional environmental parameters of the winery;
the analysis module is used for setting a winery environment safety judgment threshold value, retrieving the regional environment parameters of the winery stored in the storage module, analyzing the winery environment safety score by applying the retrieved regional environment parameters of the winery, and judging whether the winery environment is safe or not by comparing the winery environment safety judgment threshold value with the winery environment safety score;
the recording module is used for continuously receiving the winery environmental security scores obtained by analysis in the analysis module, recording the winery environmental security scores, and generating a winery environmental security score trend graph based on the continuous receiving sequence by applying the winery environmental security scores;
the early warning module is used for receiving the judgment result of the environmental safety of the winery in the analysis module, and triggering an alarm when the judgment result is negative;
the early warning module is provided with an audio module at the lower level, the audio module is used for receiving a judging result received in the early warning module, when the judging result is negative, an alarm audio is sent out, an alarm triggered in the early warning module is the alarm audio sent out by the audio module, and when the judging result is positive, the early warning module refreshes the system.
2. The monitoring and early warning system based on the environmental parameters of the winery according to claim 1, wherein the acquisition module is provided with a sub-module at a lower level, and the monitoring and early warning system comprises:
the construction unit is used for uploading internal distribution parameters of the winery and constructing a three-dimensional model of the winery based on the internal distribution parameters of the winery;
the identifying unit is used for receiving the three-dimensional model of the winery constructed in the constructing unit and identifying brewing, packaging, wine storage and other areas in the three-dimensional model of the winery;
the construction unit constructs a winery three-dimensional model based on the distribution position coordinates of the winery internal building structure, and performs different-color differential rendering on areas corresponding to each functional attribute in the winery three-dimensional model based on the functional attribute of each area in the winery, wherein the functional attribute of each area in the winery comprises: brewing, packaging, storing and others refer to functional attribute areas in the winery other than those used for brewing, packaging and storing wine.
3. The monitoring and early warning system based on the environmental parameters of the winery according to claim 2, wherein the three-dimensional model of the winery received in the identifying unit and the areas for brewing, packaging and storing wine in the identified three-dimensional model of the winery are fed back to the control terminal in real time, the system end user reads the three-dimensional model of the winery and the areas for brewing, packaging, storing wine and other areas in the three-dimensional model of the winery in the control terminal, and based on the read three-dimensional model of the winery and the areas for brewing, packaging, storing wine and other areas in the three-dimensional model of the winery, an acquisition module deployment logic is designed, and the system end user applies the acquisition module deployment logic to deploy the acquisition module into the winery, wherein the acquisition module deployment logic obeys:
wherein: m is the deployment number of the acquisition modules; g is the deployment number base number of the acquisition modules; f is a daily yield value of the deployment area of the acquisition module; v all The size of the same-function attribute area deployed for the acquisition module; omega is the weight;
wherein, the number m of the deployment of the collection modules is further rounded up, the number g of the deployment of the collection modules is set based on the size of the deployment area of the collection modules, and the number g of the deployment of the collection modules is subjected to v all The larger the g is, otherwise, the smaller the g is, g is a positive integer, the value of the weight omega is set according to the deployment target area of the acquisition module applied by the formula, and the weight omega is applied to brewing, packaging, wine storage and the likeIn other areas, they are respectively designated as omega 1 、ω 2 、ω 3 、ω 4 And omega 1 >ω 3 >ω 2 >ω 4
4. The monitoring and early warning system based on the environmental parameters of the winery according to claim 3, wherein the acquisition modules are provided with a temperature sensor, a humidity sensor and air detection equipment, and after the acquisition module deployment logic is used for solving the deployment quantity of the acquisition modules corresponding to the wine brewing, packaging, wine storage and other areas, the acquisition modules with the specified quantity are uniformly distributed and equidistantly deployed in each area.
5. The monitoring and early warning system based on environmental parameters of winery according to claim 1, wherein the storage module is provided with a sub-module at a lower level, and comprises:
the logic unit is used for setting a receiving period when the storage module operates to receive the regional environment parameters of the winery;
the receiving period set in the logic unit is set based on the duration of the current winery executing the brewing task, and the longer the duration of the current winery executing the brewing task is, the shorter the receiving period is, otherwise, the longer the receiving period is, and the receiving period set in the logic unit in the synchronous application storage module is operated by the acquisition module in real time.
6. The monitoring and early warning system based on the environmental parameters of winery according to claim 1, wherein the analysis module operates in real time based on a receiving period set in the logic unit, the environmental parameters of the area where the winery is located, which are retrieved in the analysis module, are the latest set of environmental parameters of the area where the winery is located stored in the storage module, and the analysis logic of the environmental safety score of the winery in the analysis module is expressed as:
wherein: k is the environmental safety score of the winery; t (T) now The environmental temperature of the winery in the environmental parameters of the area where the winery is located; t (T) std The optimal temperature of the area corresponding to the environmental parameters of the area where the winery is located is obtained; x-shaped articles 1 、χ 2 Is T now And T is std Respectively corresponding weights; RH (relative humidity) now The environmental humidity of the winery in the environmental parameters of the area where the winery is located; RH (relative humidity) std The optimal humidity of the area corresponding to the environmental parameters of the area where the winery is located is obtained; n is a collection of winery environmental safety scoring influencing parameters; qi-now is the corresponding value of the ith influencing parameter in the regional environmental parameters of the winery; qi-std is the optimal parameter value for the i-th influencing parameter; χi is the weight of the ith influencing parameter;
wherein, the larger k is, the more suitable the area environment parameters of the area where the winery is located in the expression are from the area in the winery, and the more suitable the wine making, packaging or wine storage are, the more suitable the 1 is more than or equal to the 0.
7. The monitoring and warning system based on winery environmental parameters according to claim 6, wherein the winery environmental parameters are all derived from the acquisition module, and the set of winery environmental safety scoring influencing parameters is all winery environmental parameters except temperature and humidity, χ 12 Not less than 0.5, the sum of all χi values and χ values of the set n of influence parameters based on the environmental safety score of winery 1 、χ 2 The sum of (2) is 1.
8. The monitoring and early warning system based on winery environmental parameters according to claim 6, wherein the winery environmental security scores k obtained by the winery environmental security score analysis logic correspond to winery, packaging, wine storage and other areas in the winery respectively, and the modification logic is expressed as:
k′=k 0 ×(1-k other 2 ) -1
wherein: k' is repairThe subsequent environmental security scores of winery based on the corresponding winery, package or wine storage areas; k (k) 0 Scoring for original security based on the winery environment corresponding to the winery, packaging or wine storage area; ko (ko) ther Scoring for winery environmental safety based on other areas.
9. The monitoring and early warning system based on the environmental parameters of the winery according to claim 1, wherein the early warning module is operated in the system in real time in preference to the operation of the recording module, the winery environmental safety scoring trend graph generated in the recording module at least comprises five groups of winery environmental safety scores, the winery environmental safety scoring trend graph iterates the data in the trend graph based on the newly received winery environmental safety scores, the early warning module is further used for traversing the winery environmental safety scoring trend graph generated in the recording module in real time, and when two groups of continuously decreasing trend of the winery safety scores represented in the graph are identified, an alarm is triggered synchronously;
when the early warning module triggers the warning, the early warning module synchronously performs tracing of the corresponding winery area based on the environmental parameters of the area where the winery is located or the environmental security scoring trend graph of the winery.
10. The monitoring and early warning system based on the environmental parameters of the winery according to claim 1, wherein the control terminal is interactively connected with the acquisition module through a local area network, the acquisition module is interactively connected with the construction unit and the identification unit through the local area network, the acquisition module is interactively connected with the storage module through the local area network, the storage module is interactively connected with the acquisition module through the local area network, the storage module is interactively connected with the analysis module through the local area network, and the analysis module, the recording module and the early warning module are interactively connected through the local area network.
CN202311635395.8A 2023-12-01 2023-12-01 Monitoring and early warning system based on environmental parameters of winery Pending CN117671922A (en)

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