Smart Agriculture

AMASTek Smart Agriculture ➟ Smart Breeding ➟ Food Processing ➟ Cold Chain Logistics ➟ Production Control System

By intelligently analyzing environmental factors to adjust the operation mode of agricultural equipment, assisting agricultural enterprises to improve production management processes, save production costs, and improve the quality and yield of agricultural products

Industrial Applications

Smart environment control

Through indoor temperature and humidity detection, the fan, sprinkler, external net and water wall are automatically controlled to maintain a good growth environment for crops. Automatically control fans and roller blinds through light, temperature, humidity, and ammonia, and automate diet management to give animals a comfortable and stress-free growth space. Through water quality monitoring, it can automatically control sewage drainage, water exchange, and oxygen supply equipment to maintain a good aquaculture environment. Through automatic feeding equipment control, a lot of labor costs can be saved

Technologies

Integrate data acquisition, heterogeneous communication format conversion, data transmission and information monitoring technology to aggregate data from different sensors/devices for users and present them in a graphical manner, allowing users to monitor the environment/equipment status of each site , and to control and adjust.

Cases

  • Professional remote environmental control system planning and construction

    • Remote greenhouse environmental control system
    • Use an industrial-grade PLC controller and a data transmission program built-in gateway to build a remote environmental monitoring system, which can be used with a small computer or rent a public cloud to build an online platform. Various types of sensors with output interfaces can be connected, such as temperature/humidity, light, rain, wind direction/volume, soil moisture, conductivity, etc. Various devices such as sprinklers, shading nets, fans, pumping motors, etc. can be controlled through the AO/DO modules. Grasp greenhouse environmental information anytime and anywhere, and adjust control conditions flexibly according to demand.
  • Remote water quality monitoring system

    • Remote water quality monitoring system
    • Combined with water quality sensing devices such as PH, dissolved oxygen, conductivity, ORP, etc. and a data transmission gateway, it can monitor various sensing data of the water quality for 24 hours, and can analyze various data changes regularly through graphs. If abnormal conditions are encountered, receive alarm notifications immediately to avoid serious losses caused by late handling.
  • Hami Melon Greenhouse Environmental Control System

    • Hami Melon Greenhouse Environmental Control System
    • Establish sensors for sunlight, temperature/humidity, soil moisture and rain in the cantaloupe greenhouse Roll-up control through rule setting
  • Lettuce Greenhouse Environmental Control System

    • Lettuce Greenhouse Environmental Control System
    • It monitors environmental information such as sunshine, temperature/humidity, and soil moisture in the lettuce production greenhouse, and can automatically control related equipment through the detected numerical design control rules.

Production management

Assist agricultural enterprises to improve the raw material processing process, and establish a management system for harvesting, grading, cleaning, and cutting processes. Through good interaction and communication with on-site executives, assist the industry to plan a complete process improvement plan, combine barcode, RFID, electronic scale applications and machine information capture, improve production line efficiency and establish a production area production quality evaluation and prediction mechanism .

Technologies

Integrate data acquisition, heterogeneous communication format conversion, data transmission and information monitoring technology to aggregate data from different sensors/devices for users and present them in a graphical manner, allowing users to monitor the environment/equipment status of each site , and to control and adjust.

Cases

  • Tea production monitoring system

    • Tea production monitoring system
    • Set up data collection devices in each process of the tea factory, such as screening zone, drying zone, fermentation zone, kneading zone, extrusion zone, wok zone, etc., to collect environmental information such as temperature/humidity and equipment statuses such as on/off and power consumption and other information, to provide factory management personnel for production management and analysis to improve the production process.
  • Sweet potato processing plant production management system

    • Sweet potato processing plant production management system
    • Assist the sweet potato food processing plant to establish the management platform of performance of the contract farming. Through the application of RFID and QRcode, combined with electronic scales, electronic signage, PDA, HMI and labeling machines, complete collection contract producers information of field evaluation and raw materials storage. Management, classification, weight record, inventory management, processing flow record, finished product storage management and other data, and design analysis modules according to customer needs, allowing managers to simply and quickly analyze the results of the contract and optimize the production process.

Cold storage monitoring

Assist the food industry to establish cold chain environmental monitoring, use a networked cold storage temperature data collection system to replace the traditional paperless recorder, and immediately notify the management staff through SMS or email when abnormalities occur. Through the establishment of the central situation room, the cold storage information in each area can be centrally managed.

Technologies

Integrate data acquisition, heterogeneous communication format conversion, data transmission and information monitoring technology to aggregate data from different sensors/devices for users and present them in a graphical manner, allowing users to monitor the environment/equipment status of each site , and to control and adjust.

Cases

  • Cold storage environment monitoring system

    • Cold storage environment monitoring system
    • The temperature/humidity and power consumption changes in the frozen storage area can be monitored through the sensor device, and the frozen storage scattered in different regions can be centrally managed. Through the integration of GIS data, the manager can visually understand the storage status of each region.
  • Banana cold storage monitoring system

    • Banana cold storage monitoring system
    • Install temperature/humidity, ethylene concentration, and carbon dioxide sensors in the banana refrigerated storage warehouse to monitor the changes of bananas in the warehouse during different periods. After long-term monitoring, it will help managers optimize the storage environment parameters, and the storage conditions can be adjusted later to control the ripening speed of bananas to match the delivery date.
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