GB/T 44883-2024 in English
VALIDEnergy efficiency control system in process production—Design requirements
- Issued on:2024-11-28
- Implemented on:2025-06-01
- File Format:PDF
- Delivery:Via email within 5 business days
$306.00
| Standard No: | GB/T 44883-2024 |
| Document status: | VALID |
| Title in English: | Energy efficiency control system in process production—Design requirements |
| Title in Chinese: | 流程生产能效管控系统 设计要求 |
| Language: | English |
| File Format: | Electronic (PDF) |
| Delivery: | Via email within 5 business days |
| Issued on: | 2024-11-28 |
| Implemented on: | 2025-06-01 |
| ICS Classification: | 25.040-Industrial automation systems |
| Chinese Classification: | N10-Industrial automation and control device in general |
| Professional Classification: | GB-National Standard |
| Related Keywords: | process production energy efficiency management system
multi-level energy efficiency index system energy efficiency diagnosis energy efficiency control system energy efficiency management system multi-level energy efficiency management reports comprehensive energy efficiency monitoring |
| Related Topics: | efficiency
process Flow meter production Control Process English tube system pipe flow system |
《GB/T 44883-2024流程生产能效管控系统 设计要求》由TC124(全国工业过程测量控制和自动化标准化技术委员会)归口,主管部门为中国机械工业联合会。
Introduction
GB/T44883-2024 Standard Overview
The National Standard of the People's Republic of China GB/T44883-2024 "Design Requirements for Process Production Energy Efficiency Management System" (hereinafter referred to as the "Standard") was officially released, aiming to standardize the architecture, network design, functional modules and interface requirements of energy management systems in process production enterprises. This standard is applicable to the design of energy efficiency management systems in process production fields such as metallurgy and petrochemicals.
Standard Development Background
With the transformation of the global energy structure and the advancement of green and low-carbon development, the process manufacturing industry has put forward higher requirements for energy efficiency management. The formulation of the "Standard" is based on the following background:
- Responding to climate change and reducing carbon emissions
- Improving enterprise energy utilization efficiency
- Promoting industrial intelligent transformation
Comparative analysis of standard frameworks
| Dimensions | Old standard (GB/TXXXX-YYYY) | New standard (GB/T44883-2024) |
|---|---|---|
| System architecture | No clear classification, the architecture is relatively loose | Clearly divided into control layer, service layer and business layer |
| Network design | Only mentions LAN deployment | Supports local deployment and cloud deployment, and increases security isolation requirements |
| Functional modules | Functional division is unclear | Add four new functions: planning, execution, analysis, and optimization, and refine sub-functions |
Detailed explanation of core functional modules
1. Planning function
The planning function is the basis of system operation, and mainly includes two modules: energy efficiency forecasting and energy planning.
- Energy efficiency forecasting: Based on historical data and energy efficiency models, predict energy efficiency and production and consumption in a certain period of time in the future.
- Energy planning: Combining production plans and maintenance plans, automatically generate energy demand plans.
2. Execution function
The execution function is responsible for concretizing energy efficiency management into an operational business process.
- Energy efficiency performance management: Real-time monitoring and statistics of energy efficiency data at all levels
- Energy efficiency report management: Generate multi-dimensional and multi-level energy efficiency management reports
- Comprehensive energy efficiency monitoring: Real-time tracking of key energy equipment and process units
- Abnormal alarm: Set alarm thresholds to detect and handle abnormal situations in a timely manner
3. Analysis function
The analysis function provides a basis for enterprise optimization through in-depth mining of energy efficiency data.
- Energy efficiency index management: Establish a multi-level energy efficiency index system
- Energy efficiency diagnosis and analysis: Identify energy waste links and put forward improvement suggestions
- Energy efficiency benchmarking management: Compare with industry benchmarks to evaluate energy saving potential
4. Optimization function
The optimization function improves energy efficiency from multiple dimensions.
- Energy optimization:Dynamically adjust energy consumption to achieve balanced allocation
- Capacity optimization:Improve energy output efficiency
- Allocation optimization:Optimize energy use paths according to production needs
Implementation suggestions
1. Phased implementation:It is recommended that enterprises divide the construction of energy efficiency management and control systems into three stages: planning, pilot, and promotion, and gradually advance.
2. Strengthen data collection:To ensure the accuracy and real-time nature of energy data, it is recommended to use advanced sensors and industrial Ethernet technology.
3. Security protection:In the system network design, special attention should be paid to the security isolation of industrial control networks to prevent network attacks.
4. Talent training:Strengthen the training of internal employees to improve the operation and maintenance capabilities of the energy efficiency management system.
5. Continuous optimization: Regularly evaluate the system operation effect and adjust the functional modules according to actual needs.

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