IEC61850 UPS Battery Testing System Remote Storage Capacity Verification System
Tóm tắt sản phẩm
Remote Battery Capacity Verification System with Segmental Monitoring 0.1C Discharge and Intelligent Charging for Power Plants Remote Storage Capacity Verification System System Definition Capacity verification through discharge testing remains the most widely recognized method for evaluating ...
Thuộc tính tùy chỉnh sản phẩm
IEC61850 UPS Battery Testing
,UPS Battery Testing System
,Remote Storage Capacity Verification System
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Giao dịch Bất động sản
Mô tả sản phẩm
Remote Battery Capacity Verification System with Segmental Monitoring 0.1C Discharge and Intelligent Charging for Power Plants
Capacity verification through discharge testing remains the most widely recognized method for evaluating battery power capacity. However, traditional on-site verification procedures are cumbersome and consume significant human and material resources, leaving current staffing levels insufficient to meet regulatory maintenance requirements. The remote capacity verification system significantly streamlines this process, enabling efficient completion of battery capacity assessment through discharge testing.
Primarily designed to provide AC uninterruptible power supply for various automated systems, signaling devices, communication networks, remote control execution systems, and emergency lighting equipment in critical facilities such as power plants and substations.
- The nuclear power system employs battery segmental monitoring technology to ensure uninterrupted DC bus voltage even when individual cells are open-circuited or under-voltage conditions.
- Monitor parameters including cell internal resistance, interconnect resistance, cell voltage, cell temperature, cell group voltage, and cell group current.
- Utilize a bidirectional converter module (PCS) to achieve 0.1C (adjustable) grid-fed nuclear capacity discharge, with pre-charging performed before the battery connects to the bus after discharge completion.
- The nuclear reactor main unit features intelligent charging management capabilities, which prevent battery overcharging and thermal runaway incidents while monitoring the battery open-circuit voltage.
- Integrated design of the operation and maintenance host; the host communicates with platform software via TCP/IP and supports IEC 61850.
- Provide a three-tier management platform at the provincial, regional, and station levels, with integrated deployment of DC power monitoring functionality.
- Utilizes BOOST+LLC isolation boost technology, with parallel CAN connections between isolated power modules achieving a conversion efficiency of over 93%.
- Maintain the original relationship between the battery pack and the DC busbar without introducing additional fault points; equipped with a manual maintenance bypass switch.
- The discharge diode features a redundant backup design with an open-circuit detection function.
- The modular design offers flexible functional combinations, enabling it to independently or simultaneously meet users requirements for "remote battery capacity verification" and "DC bus voltage protection".
| Order Number | Project | Technical Parameter | Remarks |
|---|---|---|---|
| 1 | DC rated voltage | 85%-120% | |
| 2 | Power supply for the battery cell voltage acquisition module | DC1.5-24V±10% | |
| 3 | Measurement range for the voltage of a 2V battery | 1.5--3V | A reliable alarm shall be triggered when exceeding the measurement range; the measurement accuracy is ≤ ±0.2%, and the reading value increases by +1 mV. |
| Measurement range for the voltage of a 12V battery | 8--15V | ||
| 4 | Measurement range for the total current of the battery pack | 0-350.0V | Measurement accuracy: 50-300 V/≤±(0.5% * reading value + 0.1 V) |
| 5 | Measurement range for the total current of the battery pack | -100--+100A | Measurement accuracy ≤ ±(1%, reading ±0.5 A) |
| 6 | Temperature measurement range for the negative electrode column of a single cell | -10-80℃ | Measurement accuracy ≤ ±1°C |
| 7 | Internal resistance measurement range for a single cell (2 V) | 40~3000mW | Measurement accuracy ≤ (2.5%, reading +15)±mW |
| Internal resistance measurement range for individual cells (1-2 V) | 1500~15000mW | Measurement accuracy ≤ (2.5%, reading +90). Repetition accuracy of internal resistance: 2%.mW | |
| 8 | Measurement range and accuracy of the battery connection resistance | 5~1000mW | Measurement accuracy ≤ (2.5%, reading 5)±±mW |
| 9 | Measurement cycle for the internal resistance of individual cells and the connection resistance of batteries | 1 day - 12 months | The default cycle is 1 month |
| 10 | Discharge current current stabilization accuracy | 10-hour nuclear capacity period | The discharge current remains stable at I.10After discharge completion, the current stabilization accuracy shall not be less than 2%. |
| 11 | Load Environment Temperature Sampling Frequency | ≤5s |
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