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aquaculture environmental monitoring system introduction marine aquaculture water temperature sensor -20℃~60℃ ±0.5 °c freshwater aquaculture aquaculture environmental monitoring systems marine aquaculture ph sensor environmental monitoring system grid division principles composite switches architectural lighting design standard
GB/T 43744-2024 in English

GB/T 43744-2024 in English

VALID

General technical requirements for aquaculture environmental monitoring system

  • Issued on:2024-03-15
  • Implemented on:2024-10-01
  • File Format:PDF
  • Delivery:Via email within 1~3 business days
Price(USD): $150.00
$146.00

《GB/T 43744-2024水产养殖环境监控系统通用技术要求》由TC156(全国水产标准化技术委员会)归口,TC156SC6(全国水产标准化技术委员会渔业机械仪器分会)执行,主管部门为农业农村部。


Introduction

1. Background and significance of standard formulation

With the rapid development of aquaculture, the application of environmental monitoring systems is becoming increasingly important. The formulation of this standard aims to standardize the technical requirements of aquaculture environmental monitoring systems, improve system performance and safety, and provide scientific basis and technical support for farmers.

2. System composition and architecture

The aquaculture environmental monitoring system consists of the sensing layer, transmission layer and application layer, forming a complete data collection, transmission and processing system.

3. Technical requirements of the perception layer

Sensor type Measurement range Maximum allowable error Applicable scope
Dissolved oxygen sensor 0 mg/L~20 mg/L ±0.4 mg/L Freshwater aquaculture, marine aquaculture
pH sensor 2~12 ±0.2 Freshwater aquaculture, marine aquaculture
Water temperature sensor -20℃~60℃ ±0.5 °C Freshwater aquaculture, marine aquaculture

Actual application case: Application of pH sensor in pond aquaculture

A farmer used pH sensor to monitor water quality changes in real time, and adjusted the frequency of bait delivery and water changes in time through data feedback, which significantly improved the aquaculture efficiency and survival rate.


4. Technical requirements for the transport layer

The transport layer adopts wireless communication technologies such as ZigBee, Wi-Fi, LoRa and wired technologies such as RS485 and CAN bus to ensure the stability and security of data transmission.

5. Application layer function analysis

  • Support multiple terminal access (mobile phones, computers)
  • With real-time data display and historical data analysis functions
  • Provide automatic alarm and precise control functions to ensure a stable breeding environment

6. Implementation suggestions

In actual applications, it is recommended that farmers choose appropriate system solutions according to the scale of breeding, and regularly maintain the equipment to ensure sensor accuracy and transmission stability.

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