The digital oil depot comprehensive supervision platform adopts a high degree of internet of things technology, system integration technology, and network communication technology to give full play to the maximum functions and the maximum efficiency of each subsystem, and to form a three-dimensional integrated system of air defense, physical defense, and technical defense. Safety barriers ensure high safety and high efficiency in the production, storage and transportation of oil depots.

We use modern Internet of Things technology to build a platform for Internet of Things (IoT) among key equipment and personnel. Ensure that equipment and personnel are always in a highly reliable operating state. Provides reliable support for security barriers.

In the digital oil depot comprehensive supervision information platform, there are several subsystems, and each subsystem is composed of various software platforms and various devices. Functionally, it mainly includes fire alarm systems, oil and gas real-time online monitoring systems, security systems, three-dimensional data display systems, intelligent key cabinet systems, intelligent management and control systems, automatic oil filling systems, large tank automatic metering systems, etc. Models of sensors, actuators, field controllers, UPS and other mechanical and electrical equipment. The digital oil depot comprehensive supervision information platform is to link different functional subsystems physically, logically, and functionally to realize information integration and resource sharing.

The key to achieving system integration lies in solving the problems of interconnection and interoperability between subsystems. This is a multi-vendor, multi-protocol, and application-oriented architecture, and is also a problem faced by each digital oil tank system. The most effective way to solve this problem is to use software interface technology (SDK), which is to use a software interface between the integrated system server and the subsystem management host to complete the connection and information exchange between the integrated system and the subsystem.

The so-called software interface refers to a software that enables a communication connection between an intelligent system (called a main system) and another intelligent system or an electromechanical device (called a sub-system), and completes a main system and a sub-system. The data exchange between each other, so as to achieve the main system to monitor the operating status of the sub-system and set the operating parameters. The premise of the software interface exists that both the main system and the sub-system can provide external communication interfaces, and the communication interfaces of the two are incompatible with each other, and the connection cannot be established directly. Therefore, the use of software interface technology has become an indispensable key technology in the digital oil depot comprehensive supervision and information platform.

The role of the control layer support subsystem is to monitor and control equipment and business processes, and provide management with real-time, accurate data mining to provide the basis for making correct decisions. Mainly includes oil and gas real-time online monitoring system, oil filling automatic filling system, oil tank automatic metering subsystem business scheduling system, fire alarm system and security system, GIS, intelligent key cabinet system, intelligent control PDA system.

The function of the decision support subsystem is to make corresponding decisions based on the real-time data of the control layer: mainly include: financial management, comprehensive inquiry of leadership, subsystems for equipment energy consumption and operation status management, security and alarm linkage subsystem, and business management. System, office automation.

Equipment operation status and energy consumption management subsystem
The oil depot equipment energy consumption management system establishes equipment files for all equipment of the oil depot. According to the maintenance cycle of different equipments, the equipment maintenance plan is automatically provided every month, and the actual working status and energy consumption of the equipment are counted, and automatic function modules are adopted. Analyze energy consumption and give a plan to reduce energy consumption.

Through the purchase of fixed assets, the entry of discarded slips, and the production of RFID chips, various types of documents and procedures can be more comprehensively managed and retrieved at any time. At the same time, establish data files for equipment spare parts, and maintain the data of spare parts manufacturers, liaisons, prices, and spare parts technical parameters in the system so that they can be checked at any time.

On the other hand, through the formulation of the annual plans for water, electricity, coal, oil and gas and the statistics of monthly performance, the system of energy consumption management is implemented: the establishment of measuring instruments by recording the verification results of measuring instruments and the setting of strong inspection periods. Examination account book;

The main electromechanical equipment is monitored for energy consumption, and intelligent analysis software is used to optimize the operation of energy consumption; failures, alarms, and normal operations during equipment operations are monitored, equipment is monitored for normal operation, and maintenance information is issued in advance; Real-time monitoring of fixed and liquid assets, the use of Internet of Things technology, real-time monitoring, and linkage security systems, real-time viewing and blocking routes. In order to prevent the loss of fixed assets.

Security linkage alarm subsystem

For perimeter perimeter barriers, extend 50-100 meters to install high-speed PTZ cameras (using high-definition and high-power lenses, intelligent analysis, etc.), linkage alarm detectors (such as distributed fiber perimeter monitoring and warning system), real-time The large screen displays information such as video images, alarm locations and azimuth. In case of an alarm, it automatically switches to a specified screen and performs audible and visual prompts. It also supports voice monitoring.

For the second perimeter of the perimeter, an alarm detector (multi-beam laser beam) is installed on the top of the physical enclosure, and it is linked with real-time monitoring and has an intrusion location function.

For the full range of the perimeter, no blind spots, layout of industrial television monitoring, and stitching panoramic video, GIS-assisted positioning.

The channel control system is linked to industrial television monitoring and fire alarm systems in real time. Some people illegally stay in the key area to view real-time images in real time, and link emergency alarm broadcasts to inform and inquire.

Oil depot accounting management subsystem

The accounting system is mainly responsible for the recording, calculation, accounting, statistics, and analysis of the measurement and accounting data in the invoicing of oil depots.

The functions involved in this system include the related services involved in the receipt and storage of oil depots - ship oil, railway oil, landline automatic oil, ship oil, railroad oil, pipeline oil, transmission, and oil-filling. Metering forms include manual metering, tanker metering, automatic metering, weighbridge metering, and flowmeter metering.

First of all, the system manages various records and vouchers stored in the relevant operations, and provides input interfaces for the original vouchers, data queries, basic data calculations, data entry, and data comparisons. It also provides data printing, report printing, etc. Features.

After the establishment of other related systems in the oil depot, data interfaces with various systems such as ERP are provided to seamlessly connect with the entire process of ERP system and oil depot scheduling and control.

Leadership Integrated Query Subsystem

In the oil depot, a comprehensive leadership inquiry system is established to conduct real-time query and analysis of the data and status of the oil depot-related systems so that managers can easily understand the operation of the depot.

This system mainly solves the convenience problems for leaders at all levels to obtain information. The leadership inquiry system provides a query analysis tool. Through this tool, leaders at various levels of the oil depot can easily obtain various information in the management and operation of oil depots, providing a reliable basis for scientific decisions of leaders at all levels.

The system can be installed on computers at all levels of leadership, and data is stored in the central database of the oil depot. The system can be used stand-alone or networked. In the future, if the oil depot establishes its own website, it can upgrade to the WEB version and support leaders at all levels to inquire about the information they need at any time and in any place.

Business Management Subsystem

Business management systems, etc. need to fully understand the user's needs and the actual conditions of each oil depot site before deepening the design, or it may be the case that it is necessary to discuss how the integration is implemented in the implementation plan, which will not be described here.

office automation

Customized according to the demand side office process. It is necessary to discuss how the integration is implemented in the implementation plan and will not be described here.

Conclusion

This planning scheme systematically analyzes the risks and hazards of oil inventories, and proposes design concepts and functional plans for the construction of multi-dimensional in-depth safety precautions. By building a comprehensive informatization platform integrated with production and security, we have changed the situation of independent construction, deployment, and non-integration of various systems in the previous information construction, and built a digital oil depot comprehensive supervision information platform to break the original The separation of subsystems enables the centralized and digital supervision of the overall business of the oil depot.

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