(4) Data management function
Data redundancy and backup: Supports solid-state storage implementation of data redundancy technologies, such as RAID (Independent Redundant Disk Array) technology, which can store the same data in multiple storage units through data mirroring, striping, and other methods. When a storage unit fails, data can still be obtained from other redundant storage units to ensure data security and availability. At the same time, it has data backup function, which can regularly back up important data to other storage devices or the cloud, further improving data security.
Data encryption: To protect the security and privacy of industrial data, this storage subsystem supports data encryption function and uses advanced encryption algorithms to encrypt stored data, preventing illegal theft or tampering of data during storage and transmission. Only users with the correct key can access and decrypt data, ensuring the confidentiality of industrial data.
Data indexing and retrieval: Built in efficient data indexing mechanism, which can quickly index and classify stored data, making it convenient for users to conduct data retrieval. Users can quickly locate and retrieve the required data through various conditions such as keywords, timestamps, and data types, improving data query efficiency and facilitating industrial data analysis and decision-making.
Application scenarios
(1) Industrial automation production line
In industrial automation production lines such as automobile manufacturing and electronic equipment production, the XVME-957 mass storage subsystem (without hard drives) can store various data during the operation of production equipment in real time, such as equipment operating parameters (temperature, pressure, speed, etc.), production quantity, product quality inspection data, etc. By storing and analyzing this data, optimization management of the production process can be achieved, production efficiency can be improved, and product quality can be guaranteed. At the same time, the high reliability of the hard disk free design can avoid the loss of production data due to storage device failures, ensuring the continuous and stable operation of the production line.
(2) Industrial monitoring system
In the field of industrial monitoring, this storage subsystem can be used to store high-definition video monitoring images, sensor monitoring data, etc. Its high-speed data read and write capabilities can smoothly store real-time video streams, and its shock resistant and impact resistant characteristics without a hard disk design enable it to work stably in complex industrial environments. Through data redundancy and backup in the data management function, the security of monitoring data can be ensured, providing reliable data support for industrial safety monitoring and accident tracing.
(3) Scientific research and data collection
In fields such as scientific research experiments, geological exploration, and meteorological monitoring, it is necessary to collect and store a large amount of experimental and monitoring data. The large capacity storage capability and high-speed data read and write characteristics of the XVME-957 mass storage subsystem (without hard disk) can meet the data storage needs in these fields. At the same time, its data management function can facilitate researchers to classify, retrieve, and analyze data, improving research efficiency.
(4) Energy Management System
In energy industries such as electricity, oil, and natural gas, this storage subsystem can be used to store various data during energy production, transmission, and consumption processes, such as voltage, current, and power data of the power system, flow and pressure data of oil pipelines, etc. By storing and analyzing this data, it is possible to achieve optimized management of the energy system, improve energy utilization efficiency, and ensure the safety and stability of energy supply.
Precautions for use
(1) Installation and wiring
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When installing the XVME-957 mass storage subsystem, ensure that the VMEBUS bus chassis is powered off, strictly follow the steps in the installation manual to correctly insert the storage subsystem into the corresponding VMEBUS slot, ensure good contact, and avoid bus communication failures caused by improper installation.
When connecting data cables and power cables, use cables that comply with the VMEBUS bus standard, and pay attention to cable shielding and grounding to prevent electromagnetic interference from affecting data transmission. Ensure that the power supply voltage is consistent with the requirements of the storage subsystem, the connection is secure, and avoid equipment damage caused by power issues.
(2) Parameter configuration and software settings
Before use, configure the storage subsystem parameters through the accompanying management software, including storage capacity allocation, data redundancy mode setting, data encryption key configuration, etc. Carefully check the parameter settings to ensure they meet the actual application requirements and avoid affecting the normal operation of data storage and management functions due to parameter errors.
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