Reduce personal safety incidents
Reduce safety incidents by an average of 1 per year.
In order to achieve the "carbon peaking and carbon neutrality goals" major strategic goal of reaching carbon peaks in 2030 and carbon neutrality in 2060, SCIYON, with its leading technical advantages and rich power plant construction experience, firstly put forward the concept of "Smart Power Plant", by utilizing new concepts and new technologies such as 5G, Internet+, Internet of Things, AI, big data analysis, cloud calculation and virtual reality. The system of the traditional power plant is upgraded to establish a safer, more efficient, more economical and more environment-friendly modern smart power plant.
The DEH-NK intelligent turbine control system has absorbed the advantages of many similar systems at home and abroad. The system's software and hardware have adopted international standards or mainstream industrial products, meeting the requirements of the 25 counter-measures of the national power industry. So far, more than 5,000 sets of DEH of 6MW to 1000MW grades have been put into operation. The system is constantly evolving with The Times. For high-safety and high-stability applications, redundant IO systems have been developed, with conventional IO module redundancy and servo redundancy schemes, and mature application achievements, and close cooperation with main engine manufacturers such as Dongfang Electric, SAIC, Harbin Electric, Nanjing Electric, Hangzhou Electric, GAC, Wuhan Electric, Qingdao Electric, and Beizhong, We have developed a variety of solutions for different Oems, including gas-steam combined cycle, waste-to-energy power generation, cement waste heat power generation, and one-button start-stop.
The intelligent operation assistance system is oriented towards efficiency, practicality, usability and effectiveness, aims at benefits, utility and efficiency, and is centered on user needs. Based on the latest technologies such as big data, cloud computing and expert knowledge, it makes full use of the massive data accumulated on-site and the newly added operation data to achieve advanced functional applications such as intelligent monitoring, intelligent optimization and intelligent analysis for power generation enterprises. Build an intelligent system for safe, controllable and efficient operation of power generation enterprises to meet the demands of intelligent upgrading of power plants.
Gas power generation technology makes full use of the inevitable by-products generated in the production process of steel enterprises for power generation, achieving effective utilization of waste and conversion of harmful substances, creating economic benefits while reducing environmental pollution caused by gas emissions. It is an indispensable energy hub and a pillar of efficiency and environmental protection for modern large-scale steel integrated enterprises. SCIYON can provide gas power generation enterprises with a complete solutions covering the entire process, including distributed control systems (DCS), DEH, intelligentization, plant-level monitoring information systems (SIS, MIS), virtual DCS simulation systems, and isolated networks, and is committed to helping gas power generation enterprises operate efficiently, safely, greenly and intelligently. At present, the company has provided solutions for thousands of gas power generation units.
Waste heat power generation refers to the technology of generating electricity by using the medium and high-temperature waste heat (waste heat) produced in the industrial production process in industries such as metallurgy, chemical engineering, cement, and glass. It is an important measure for the green and low-carbon transformation and cost reduction and efficiency improvement of industries. SCIYON has been deeply engaged in related industry fields for many years and has a profound understanding and application of the production process characteristics and management procedures of the industry. SCIYON can provide complete full-process solutions for related industries, including DCS, DEH, factory-level monitoring information systems (SIS, MIS), virtual DCS simulation systems, etc. It can break down data silos in all links of control, operation and management, and achieve automated control, intelligent operation and efficient green production. At present, the company has provided solutions for thousands of waste heat power generation units.
Waste incineration power generation, as a core solid waste treatment technology to break the "garbage encirclement" and achieve resource recycling and low-carbon development, relies on systematic solutions for its efficient and clean operation. SCIYON has become a benchmark enterprise in this field by virtue of its technological penetration, large-scale practice and continuous innovation. Based on the concept of "waste management throughout the entire process", the company integrates standardized control of the entire process from transportation to storage and incineration, and promotes the realization of clean incineration goals through automatic optimization control, precise treatment of pollutants and refined operation system, with intelligent control system as the foundation, integrating mature smart power plant experience, Build an intelligent solutions covering the entire chain, including intelligent control, core optimization, information hub, environmental pre-control, and equipment operation and maintenance.
CSP technology makes full use of solar energy resources, generating high-temperature thermal energy through concentrated heat collection systems to drive power generation, achieving efficient conversion of clean energy. It creates economic benefits and can replace fossil energy and reduce carbon emissions, in line with the national "dual carbon" strategy and the energy transition direction of building a new power system. As one of the earliest manufacturers in the market to come into contact with solar thermal power plants, SCIYON can provide a complete solutions covering the entire process from DCS, DEH, intelligentization, SIS to simulation systems for solar thermal power plants. The related products and solutions have been successfully applied in various types of solar thermal power plants in China, contributing to the construction of a new power system with new energy as the main body.
Compressed air energy storage technology uses off-peak electricity to compress and store air, and releases it during peak hours to drive power generation, effectively suppressing grid fluctuations and enhancing the capacity to consume new energy. It is an ideal choice for achieving large-scale, long-cycle energy storage, in line with the national goal of building a new power system and the "dual carbon" strategy. SCIYON can provide a complete full-process solutions for pressure storage power stations, including DCS, DEH, CCS, intelligentization, SIS, simulation systems, etc., and is committed to helping customers achieve safe, efficient, green and intelligent operation of energy storage power stations.
Integrating computer vision and current-voltage characteristic testing technology, innovatively introducing CV+IV integrated inspection solutions, and combining artificial intelligence algorithms to build smart photovoltaic power station solutions. With innovative ideas such as linked diagnosis of appearance defects and electrical performance parameters, full-process intelligent analysis, we help build "precise detection, intelligent decision-making, stable operation" photovoltaic power stations, creating greater value for customers in power station operations.
Central heating, with its core advantages of high thermal efficiency, significant energy savings, and low pollution emissions, has become a green and low-carbon infrastructure vigorously promoted by the state. As the heating scale continues to expand (with extended pipe networks and a surge in users), traditional management systems face triple challenges in terms of safety, economy, and response speed. SCIYON focuses on the upgrading demands of the industry, deeply deconstructs the key pain points of heating, and through technological iteration, creates a smarter, more reliable and more adaptive smart heating network solutions. Reconstructing the heat network management paradigm with digitalization and intelligence to build a solid energy lifeline for cities.
Reduce safety incidents by an average of 1 per year.
Reduce unplanned downtime by an average of 1 time per year through intelligent management of equipment.
Savings of more than 2g/kWh can be achieved through implementations such as optimizing modules.
Electronic workflows, paperless two-ticket systems, and mobile office have also reduced the average fault handling time for three types of defects in power plants from 30 hours per item to less than 10 hours.
With the construction of smart power plant-related modules, the staffing for 2*600MW units can be controlled at 150 people, and for 2*9F units at 80 people.
By using the BI-based smart management decision-making module of the smart power plant, work efficiency can be increased by more than double.
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