3 Hardware Design
3.1 Server Configuration
The core computing of the grid frequency regulation system for intelligent commercial and industrial energy storage relies on high - performance servers. These ensure efficient real - time data analysis, AI algorithm operation, and rapid processing of large - scale data. Given the need to handle massive real - time and historical data, and perform complex calculations and model training, server configurations are as follows:
- Processor: Intel Xeon Platinum 8380 or equivalent CPU (high core count, high frequency for strong parallel processing).
- Memory: 128GB–256GB DDR4 ECC (high - speed access, error checking for data integrity).
- Storage: NVMe SSD (system disk, fast read/write for OS and app responsiveness) + large - capacity SAS HDD (data disk for historical data storage).
- GPU Acceleration: NVIDIA Tesla T4 GPU (for compute - intensive tasks like deep learning, accelerating model training/prediction).
- Network Interface: 10GbE network card (high - speed data transfer for real - time communication).
3.2 Storage Device Configuration
To support real - time decision - making and historical data analysis, storage devices need high read/write speeds and large capacities:
- System Disk: 1TB NVMe SSD (low latency, high IOPS for fast OS/app startup).
- Data Storage Disk: 10TB SAS HDD (stores historical frequency data, electricity price info, system logs for analysis/auditing).
- Backup & Disaster Recovery: RAID 5/6 arrays (data redundancy to prevent single - point failure data loss); regular off - site backups to remote data centers (ensures data security).
3.3 Network Device Configuration
Network device selection directly impacts real - time data transmission and security. For the grid frequency regulation system of intelligent commercial energy storage, recommendations include:
- Core Switch: Cisco Catalyst 9500 series (or equivalent) with 100GbE ports for high - speed, high - bandwidth data exchange.
- Firewall: Next - gen solutions (e.g., Fortinet FortiGate) for intrusion detection, virus protection, and application control to secure the network.
- VPN: Encrypted VPN tunnels for secure remote O&M and communication with grid operators, protecting sensitive data from interception/tampering.
3.4 I/O Device Configuration
To enable data collection and human - machine interaction, high - performance I/O devices ensure accurate data capture and intuitive display:
- Sensors: High - precision current/voltage transformers at key grid nodes, monitoring frequency/voltage/current with ≥1kHz sampling rates.
- Display Terminal: Large - size, high - resolution industrial touchscreens for system status monitoring and manual operations.
- Communication Interfaces: Standard interfaces (RS - 485, Ethernet, fiber) for stable connectivity with external devices/systems.
- Alarm System: Integrated audio - visual alarms triggering on anomalies (e.g., frequency violations, equipment faults) to prompt operator intervention.

5 Conclusion
This paper introduces the design of a grid frequency regulation system for intelligent commercial and industrial energy storage systems, covering demand analysis, functional design, hardware design, and operation testing. Leveraging artificial intelligence technologies, the system enables real - time grid frequency monitoring and rapid response, enhancing the stability and reliability of the power grid.