What are the main functions of the rice planting traceability system

Updated on healthy 2024-05-01
3 answers
  1. Anonymous users2024-02-08

    The rice planting traceability system uses advanced Internet of Things technology, automatic control technology, automatic identification technology, Internet technology and professional tools to give a unique ID card to a single product through the first product, so as to realize one piece and one code, and collect and track the production, warehousing, logistics and transportation, market inspection and consumption of seed products, so as to realize the full life cycle management of product production, warehousing, sales, circulation and service.

    Rice planting traceability system implementation steps:

    Step 1: Load the information

    Combining the characteristic encrypted identification with crop seed products, each product is endowed with unique characteristic encrypted digital identity information.

    Step 2: Collect information

    Using the company's specially developed information management system, in the product storage, out of the warehouse and other aspects of the scanning and collection of product information, can be a single crop seed product collection, can also be collected by boxes, stacks, vehicles and other units for batch collection, the collection of various data uploaded to the special information service platform.

    Step 3: Accurate identification

    Step 4: Anti-counterfeiting traceability effect

    Enterprises can log in to the background of the system platform to query various data, and view and inspect the anti-counterfeiting and anti-channeling reports, which can not only find the goods in time, but also effectively manage dealers, so as to achieve the purpose of combating counterfeiting, standardizing the market and increasing efficiency!

  2. Anonymous users2024-02-07

    Penguin code, one thing, one yard, eight functions of the rice safety traceability system

    1. Raw material management. Including raw material procurement, inspection, raw material traceability, warehousing and business, etc.

    2. Production management. Including production plan, production instruction, production feeding, production quality inspection, etc. (including food type, production time, batch, product management, product inspection).

    3. Coding management. Use a variety of inkjet marking equipment for product identification, including production coding management, warehousing coding management. (Including small character inkjet printers, high-resolution inkjet printers, TTO thermal transfer inkjet printers, laser inkjet printers and other equipment).

    4. Warehouse management. Including product warehouse, location management, inventory management, warehouse management, inventory alarm, etc. (warehousing, logistics system management).

    5. Distribution management. Including dealer management, distribution area management, distribution channel management, flow management.

    6. Anti-counterfeiting management. Client Internet query system, SMS management, mobile phone anti-counterfeiting query, etc. (Fake Alert).

    7. Anti-channeling management. Anti-channeling user distribution query system, anti-channeling code system rule design and data statistics, etc. (Channeling management).

    8. Marketing management. Membership points, exchange gifts, ** and other ways to collect product-related anti-counterfeiting and anti-channeling data. (Point-of-sale management).

  3. Anonymous users2024-02-06

    The core of the Manufacturing Execution System (MES), also known as ShopFloor in the factory, is to collect data from all aspects of the production site, save the data, and statistically analyze the data, and deliver the data to the people who need it. The implementation of MES needs to achieve the purpose of digging in several aspects:

    Traceability: When a product is produced, it can be found from the MES system, which production process the product has gone through, which equipment is used, the production time, who the operator is, what materials (material batches) are consumed, various conditions and parameters during production, what test steps have been passed, what are the test results, etc. That is, from this data, the entire manufacturing process can be reproduced.

    When quality issues occur, the cause can be quickly traced, including information such as the production batch of the source material.

    2.Foolproof manufacturing process: The process stipulates that the product must go through multiple production and testing processes in a certain order, and if the previous process is not completed, or the test result is unreasonable, it is not allowed to enter the later process.

    Under the control of the MES system, it is possible to avoid defective products from entering the warehouse and entering the market

    3.Real-time monitoring: What products are each production line doing now?

    Is the progress on track? Which line is experiencing downtime or schedule delays? Is the distribution of test data at each test site normal?

    4.Statistical analysis: Statistical analysis of the test data is carried out to find out whether the data distribution is reasonable, and the possible quality problems of the product are analyzed from the data distribution.

    MES stands for Manufacturing Execution System, and its core function is similar to that of a process card, that is, to control the production process through the serial number. MES replaces the process card number by creating a product that allows any step in the production process to access the database and obtain all relevant control information.

    Process cards are obsolete after production is completed, but they remain in the database, so they can be used as a basis for future product tracking and quality control.

    To put it simply, MES has two core functions: the control of the process and the tracking of historical data. Other functions include assembly, packaging, and material tracking.

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