CN111985942A - Grain land bidirectional tracing method - Google Patents

Grain land bidirectional tracing method Download PDF

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Publication number
CN111985942A
CN111985942A CN202010958842.3A CN202010958842A CN111985942A CN 111985942 A CN111985942 A CN 111985942A CN 202010958842 A CN202010958842 A CN 202010958842A CN 111985942 A CN111985942 A CN 111985942A
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Prior art keywords
land
grain
information
grains
bags
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CN202010958842.3A
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Chinese (zh)
Inventor
田宝文
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Inspur Software Co Ltd
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Inspur Software Co Ltd
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Priority to CN202010958842.3A priority Critical patent/CN111985942A/en
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • G06Q30/018Certifying business or products
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K17/00Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations

Abstract

The invention discloses a bidirectional tracing method of grain land, which relates to the technical field of data processing and comprises the following steps: land marking stage: dividing the land, identifying each land by using a unique code, and inputting land information and a corresponding code identifier into an information system; grain marking stage: the grain produced in the same land is divided into bags, the unique code of the land is used for identifying the corresponding grain bag, and the information of the grain bag is input into an information system according to the land code; grain transportation stage: the grain is subjected to quality inspection, transported to different destinations according to requirements, and in the transportation process, the grain detection result and the transportation route are input into an information system according to the coded identifier of the grain bag; the grain using stage: unpacking and transferring the grain bags according to the requirements, and inputting unpacking and transferring results into an information system according to the coded identification information of the grain bags. The invention can realize the tracing of the grain from the land to the grain and the bidirectional links from the grain to the land in the whole grain production, supply and marketing process.

Description

Grain land bidirectional tracing method
Technical Field
The invention relates to the technical field of data processing, in particular to a bidirectional grain land tracing method.
Background
Under the background that food quality safety is more and more emphasized at present, how to accurately and efficiently trace the source of food is a more urgent problem faced by current food enterprises.
In the past, the food of suppliers is purchased and finally sold on shelves without information support, and the purpose of tracing the source cannot be achieved even after the food is mixed and loaded for many times.
Disclosure of Invention
Aiming at the requirements and the defects of the prior art development, the invention provides a bidirectional tracing method of grain land.
The invention discloses a bidirectional tracing method of grain land, which adopts the following technical scheme for solving the technical problems:
a grain land bidirectional tracing method comprises four stages of land identification, grain transportation and grain use;
in the land identification stage, an administrator divides land on which grains are to be planted, unique coded identification is carried out on the divided land, and then land information and corresponding coded identification are recorded into an information system;
in the grain identification stage, an administrator separately loads grains produced in the same land into bags, marks all grain bags belonging to the land by using the unique code identification of the land, and then inputs grain bag information into an information system according to the code identification of the land;
in the grain transportation stage, a purchaser detects grains, transports grain bags to different destinations according to detection results and use requirements, and inputs the grain detection results and transportation routes into an information system according to the coded identifiers of the grain bags in the transportation process;
in the grain using stage, a merchant breaks the bag and transfers the bag according to the using requirement, and then inputs the final bag breaking and transferring result of the grain to an information system according to the coded identification information of the grain bag.
Optionally, the related information system comprises a login registration module, an audit module, an edit storage module and a display module,
the user registers and logs in with the company, personal name, identification number and the role of administrator/buyer/merchant through the login module,
the auditor audits the identity information of the administrator, the purchasing personnel and the commercial tenant through the auditing module,
after the approved user finishes logging in with the selected role, the information is edited and stored through the editing and storing module,
and after the approved user finishes logging in with the selected role, checking the information recorded by all the roles through the display module, wherein the information cannot be modified.
Optionally, in the grain use stage, when a plurality of kinds of grains are required to be made into a finished product, a new code identifier may be bound to the finished product, and by scanning the code identifier, all information of the grains used by the finished product may be obtained in a tracing manner from an information system.
Further optionally, the grain land bidirectional tracing method specifically comprises the following implementation processes:
(1) dividing the land to be traced by an administrator according to the area of the actual planting land block, using a two-dimensional code to uniquely identify the divided land, and inputting land information and a corresponding two-dimensional code into an information system;
(2) after the grains are mature, an administrator divides the grains into bags according to the two-dimensional codes of the land, the two-dimensional codes marked by the grain bags belonging to the same land are the same, and the division results are input into an information system according to the two-dimensional codes;
(3) when a grain merchant receives grains, a purchaser detects the quality of the grains and transports the grains to different destinations according to detection results and use requirements, and in the process, the detection results and a transport route are input into an information system according to two-dimensional codes;
(4) after the grains reach the destination, the merchant scans the two-dimensional code of the grain bag to obtain the land information to which the grains belong, the quality detection information of the grains and the transportation route information of the grains, then, the bag is removed and transferred according to the use requirement, and meanwhile, the bag removal result and the transfer result are recorded into the information system according to the two-dimensional code of the grain bag.
As a further alternative, in steps (1) - (4) involved, a plot of land may produce multiple bags of grain, the multiple bags having at least one destination,
a land is uniquely identified by one two-dimensional code, and the two-dimensional code of the land identifies multi-bag grains produced on the land.
Further optionally, multiple bags of grains can be produced in one piece of land, after the grains are respectively loaded into the bags by a buyer according to the two-dimensional codes of the land, the types, the weights, the sowing dates, the harvesting dates, the watering and fertilizing details of the planting process contained in the information of the grain bags are input into the information system for recording based on the two-dimensional codes of the grain bags.
Further optionally, in the process that the related purchasing staff executes the step (3), if a container for containing grains needs to be replaced midway, the purchasing staff needs to print the two-dimensional code of the original grain bag on the new container, and meanwhile, specific information for replacing the container is recorded into the information system according to the two-dimensional code.
Further optionally, the related land information includes land size, planting type of the land for nearly three years, acre yield of the land for nearly three years, precipitation of the region to which the land belongs for nearly three years, and temperature difference between weather conditions of the current year and the weather conditions of the previous year, and the land information is uniquely bound with the two-dimensional code and then input into an information system for recording.
Compared with the prior art, the bidirectional tracing method of the grain land has the beneficial effects that:
the invention realizes the tracing of the two-way links from the land to the grain and from the grain to the land in the whole grain production, supply and marketing process by identifying the land, the grain produced on the land, the transportation route of the grain and the purpose of the grain through the unique code.
Drawings
FIG. 1 is a schematic flow diagram of the present invention;
in the drawing, M represents a two-dimensional code for uniquely identifying a certain land.
Detailed Description
In order to make the technical scheme, the technical problems to be solved and the technical effects of the present invention more clearly apparent, the following technical scheme of the present invention is clearly and completely described with reference to the specific embodiments.
The first embodiment is as follows:
with reference to fig. 1, the grain land bidirectional tracing method of the embodiment includes four stages of land identification, grain transportation and grain use.
In the land identification stage, an administrator divides land on which grains are to be planted, unique coding identification is carried out on the divided land, and then land information and corresponding coding identification are recorded into an information system. The land information comprises land size, planting type of the land for nearly three years, acre yield of the land for nearly three years, precipitation of the region to which the land belongs for nearly three years, and temperature difference between weather conditions of the current year and the previous year, and the land information is uniquely bound with the two-dimensional code and then input into an information system for recording.
In the grain identification stage, an administrator separately loads grains produced in the same land into bags, marks all the grain bags belonging to the land by using the unique code identification of the land, and then inputs grain bag information into an information system according to the code identification of the land. Wherein, the grain bag information comprises the type, weight, sowing date, harvesting date, watering and fertilizing details of each bag of grain during the planting process.
In the grain transportation stage, a purchaser detects grains, transports the grain bags to different destinations according to detection results and use requirements, and inputs the grain detection results and the transportation route into an information system according to the coded identifiers of the grain bags in the transportation process.
In the grain using stage, a merchant breaks the bag and transfers the bag according to the using requirement, and then inputs the final bag breaking and transferring result of the grain to an information system according to the coded identification information of the grain bag.
In the embodiment, the related information system comprises a login registration module, an audit module, an editing and storing module and a display module;
the user registers and logs in by the roles of a company, a personal name, an identity card number and an administrator/buyer/merchant through the login module;
the identity information of the administrator, the purchasing personnel and the commercial tenant is audited by the auditor through the auditing module;
after the approved user finishes logging in the selected role, the information is edited and stored through the editing and storing module;
and after the approved user finishes logging in with the selected role, checking the information recorded by all the roles through the display module, wherein the information cannot be modified.
The grain land bidirectional tracing method of the embodiment is specifically implemented by the following processes:
(1) the method comprises the steps that a manager divides a land to be traced according to the area of an actual planting land block, uniquely identifies the divided land by using a two-dimensional code, and inputs land information and the corresponding two-dimensional code into an information system, wherein the land information comprises land size, planting type of the land in nearly three years, acre yield of the land in nearly three years, precipitation of the region to which the land belongs in nearly three years, and temperature difference between weather conditions of the current year and the weather conditions of the previous year, and the land information and the two-dimensional code are uniquely bound and then are input into the information system for recording;
(2) after the grains are mature, an administrator divides the grains into bags according to the two-dimensional codes of the land, the two-dimensional codes marked by the grain bags belonging to the same land are the same, and the types, the weights, the sowing dates, the harvesting dates, the watering and fertilizing details in the planting process contained in the information of the grain bags are input into an information system for recording according to the two-dimensional codes;
(3) when a grain merchant receives grains, a purchaser detects the quality of the grains and transports the grains to different destinations according to detection results and use requirements, and in the process, the detection results and a transport route are input into an information system according to two-dimensional codes;
(4) after the grains reach the destination, the merchant scans the two-dimensional code of the grain bag to obtain the land information to which the grains belong, the quality detection information of the grains and the transportation route information of the grains, then, the bag is removed and transferred according to the use requirement, and meanwhile, the bag removal result and the transfer result are recorded into the information system according to the two-dimensional code of the grain bag.
In the process of executing the steps (1) to (4):
(A) a land can produce a plurality of bags of grains, the plurality of bags of grains have at least one destination,
a land is uniquely identified by one two-dimensional code, and the two-dimensional code of the land identifies multi-bag grains produced on the land.
(B) Because a plurality of bags of grains can be produced in one land, after the grains are respectively packed into the bags by a buyer according to the two-dimensional codes of the land, the type, the weight, the sowing date, the harvesting date, the watering and fertilizing details of the planting process contained in the grain bag information are input into an information system for recording based on the two-dimensional codes of the grain bags.
(C) In the process that the purchasing staff carries out the step (3), if the container for containing grains needs to be replaced midway, the purchasing staff needs to print the two-dimensional code of the original grain bag on a new container, and meanwhile, the specific information for replacing the container is input into the information system according to the two-dimensional code.
Example two:
with reference to fig. 1, the grain land bidirectional tracing method of the embodiment includes four stages of land identification, grain transportation and grain use.
In the land identification stage, an administrator divides land on which grains are to be planted, unique coding identification is carried out on the divided land, and then land information and corresponding coding identification are recorded into an information system. The land information comprises land size, planting type of the land for nearly three years, acre yield of the land for nearly three years, precipitation of the region to which the land belongs for nearly three years, and temperature difference between weather conditions of the current year and the previous year, and the land information is uniquely bound with the two-dimensional code and then input into an information system for recording.
In the grain identification stage, an administrator separately loads grains produced in the same land into bags, marks all the grain bags belonging to the land by using the unique code identification of the land, and then inputs grain bag information into an information system according to the code identification of the land. Wherein, the grain bag information comprises the type, weight, sowing date, harvesting date, watering and fertilizing details of each bag of grain during the planting process.
In the grain transportation stage, a purchaser detects grains, transports the grain bags to different destinations according to detection results and use requirements, and inputs transportation routes into an information system according to the coded identifiers of the grain bags in the transportation process.
In the grain using stage, a merchant breaks the bag and transfers the bag according to the using requirement, and then inputs the final bag breaking and transferring result of the grain to an information system according to the coded identification information of the grain bag. It is necessary to supplement that, if a plurality of kinds of grains are required to be made into a finished product, a new code identifier can be bound to the finished product, and all information of the grains used by the finished product can be obtained from the information system by scanning the code identifier.
In the embodiment, the related information system comprises a login registration module, an audit module, an editing and storing module and a display module;
the user registers and logs in by the roles of a company, a personal name, an identity card number and an administrator/buyer/merchant through the login module;
the identity information of the administrator, the purchasing personnel and the commercial tenant is audited by the auditor through the auditing module;
after the approved user finishes logging in the selected role, the information is edited and stored through the editing and storing module;
and after the approved user finishes logging in with the selected role, checking the information recorded by all the roles through the display module, wherein the information cannot be modified.
In conclusion, the grain land bidirectional tracing method can realize the tracing of the land from the grain in the whole grain production, supply and marketing process to the grain and the bidirectional links from the grain to the land by identifying the land, the grain produced on the land, the grain transportation route and the grain application through the unique code.
The principles and embodiments of the present invention have been described in detail using specific examples, which are provided only to aid in understanding the core technical content of the present invention. Based on the above embodiments of the present invention, those skilled in the art should make any improvements and modifications to the present invention without departing from the principle of the present invention, and therefore, the present invention should fall into the protection scope of the present invention.

Claims (8)

1. A grain land bidirectional tracing method is characterized by comprising four stages of land identification, grain transportation and grain use;
in the land identification stage, an administrator divides land on which grains are to be planted, unique coded identification is carried out on the divided land, and then land information and corresponding coded identification are recorded into an information system;
in the grain identification stage, an administrator separately loads grains produced in the same land into bags, marks all grain bags belonging to the land by using the unique code identification of the land, and then inputs grain bag information into an information system according to the code identification of the land;
in the grain transportation stage, a purchaser detects grains, transports grain bags to different destinations according to detection results and use requirements, and inputs the grain detection results and transportation routes into an information system according to the coded identifiers of the grain bags in the transportation process;
in the grain using stage, a merchant breaks the bag and transfers the bag according to the using requirement, and then inputs the final bag breaking and transferring result of the grain to an information system according to the coded identification information of the grain bag.
2. The grain land two-way tracing method of claim 1, wherein said information system comprises a login registration module, an audit module, an edit storage module, and a display module,
the user registers and logs in with the company, personal name, identification number and the role of administrator/buyer/merchant through the login module,
the auditor audits the identity information of the administrator, the purchasing personnel and the commercial tenant through the auditing module,
after the approved user finishes logging in with the selected role, the information is edited and stored through the editing and storing module,
and after the approved user finishes logging in with the selected role, checking the information recorded by all the roles through the display module, wherein the information cannot be modified.
3. The bidirectional grain land tracing method of claim 1, wherein in the grain use stage, when a plurality of kinds of grains are required to be made into finished products, the finished products can be bound with new code identifications, and all information of the grains used by the finished products can be traced and obtained from the information system by scanning the code identifications.
4. The bidirectional grain land tracing method according to claim 1 or 2, characterized in that the method is implemented by the following steps:
(1) dividing the land to be traced by an administrator according to the area of the actual planting land block, using a two-dimensional code to uniquely identify the divided land, and inputting land information and a corresponding two-dimensional code into an information system;
(2) after the grains are mature, an administrator divides the grains into bags according to the two-dimensional codes of the land, the two-dimensional codes marked by the grain bags belonging to the same land are the same, and information of the grain bags is input into an information system according to the two-dimensional codes;
(3) when a grain merchant receives grains, a purchaser detects the quality of the grains and transports the grains to different destinations according to detection results and use requirements, and in the process, the detection results and a transport route are input into an information system according to two-dimensional codes;
(4) after the grains reach the destination, the merchant scans the two-dimensional code of the grain bag to obtain the land information to which the grains belong, the quality detection information of the grains and the transportation route information of the grains, then, the bag is removed and transferred according to the use requirement, and meanwhile, the bag removal result and the transfer result are recorded into the information system according to the two-dimensional code of the grain bag.
5. A bidirectional traceability method of grain land as claimed in claim 4, wherein in steps (1) - (4), a land can produce multiple bags of grain, the multiple bags of grain having at least one destination,
a land is uniquely identified by one two-dimensional code, and the two-dimensional code of the land identifies multi-bag grains produced on the land.
6. The bidirectional grain land tracing method of claim 5, wherein a plurality of bags of grains can be produced in one land, and after a purchaser packs the grains into bags according to the two-dimensional code of the land, the type, weight, sowing date, harvesting date, watering and fertilizing details of a planting process contained in the information of the bags are input into the information system for recording based on the two-dimensional code of the bags.
7. The grain land bidirectional tracing method according to claim 4, wherein in the process of step (3), if a container containing grain needs to be replaced midway, the purchaser needs to print the two-dimensional code of the original grain bag on a new container, and simultaneously, the specific information for replacing the container is recorded into the information system according to the two-dimensional code.
8. The bidirectional traceability method of grain land of claim 4, wherein the land information comprises land size, planting type of land for approximately three years, acre yield of land for approximately three years,
the land information also comprises precipitation of the region to which the land belongs in nearly three years, and the temperature difference between the weather condition of the current year and the weather condition of the previous year;
and after the land information is uniquely bound with the two-dimensional code, inputting the land information into an information system for recording.
CN202010958842.3A 2020-09-14 2020-09-14 Grain land bidirectional tracing method Pending CN111985942A (en)

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CN111242527A (en) * 2019-12-30 2020-06-05 航天信息股份有限公司 Grain transportation management method and device
CN111369362A (en) * 2020-02-28 2020-07-03 重庆文理学院 Agricultural product safe transaction system based on Internet

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104766124A (en) * 2014-01-03 2015-07-08 航天信息股份有限公司 Method and system for safety tracing of packaged foods
CN105469270A (en) * 2016-01-14 2016-04-06 杭州甲骨文科技有限公司 Agricultural product whole process traceability method and system
CN105550833A (en) * 2016-02-29 2016-05-04 刘丰 Food safety tracing system
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CN111369362A (en) * 2020-02-28 2020-07-03 重庆文理学院 Agricultural product safe transaction system based on Internet

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Application publication date: 20201124