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Application of Homemade DCS in Integrated BOP Control of 600-MW Supercritical Unit
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作者 Sun Yu1, Zhang Jinxiang2, Liu Mingjia1, Yu Xueli2, Yu Guanghui1 1. Beijing GuoDian ZhiShen Control Technology Co., Ltd. 2. Guodian Dalian Zhuanghe Power Co., Ltd. Wang Ningling 《Electricity》 2008年第4期36-39,共4页
The PLC and upper computer are used in BOP control system of traditional thermal power plant to monitor the in-situ equipment. It is complicated and wastes labor and resources. It is difficult to maintain and manage t... The PLC and upper computer are used in BOP control system of traditional thermal power plant to monitor the in-situ equipment. It is complicated and wastes labor and resources. It is difficult to maintain and manage them. Beijing GuoDian ZhiShen Control Technology applied the homemade DCS (EDPF-NT System) to the integrated BOP control system of 600-MW supercritical power unit, which offers advantages in efficiency promotion, cost reduction and resource sharing. That also reflects the dominance of EDPF-NT System in performance, price, real-time DUP, network compatibility and communication. This article introduces the main characteristics, structure and configuration of EDPF-NT System, as well as the hierarchical operation, the multi-domain network structure and the private network router developed for Zhuanghe Power Plant. 展开更多
关键词 BOP Application of Homemade DCS in Integrated BOP Control of 600-MW supercritical unit DCS
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Research on the Prediction of Load Regulation Capacity for Supercritical Thermal Power Unit
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作者 Yong He Zhuo Huang +3 位作者 Yaohua Tang Weimin Guo Yuanli Cai Haonan Jiang 《Journal of Power and Energy Engineering》 2020年第8期23-36,共14页
Both the modeling and the load regulation capacity prediction of a supercritical power plant are investigated in this paper. Firstly, an indirect identification method based on subspace identification method is propos... Both the modeling and the load regulation capacity prediction of a supercritical power plant are investigated in this paper. Firstly, an indirect identification method based on subspace identification method is proposed. The obtained identification model is verified by the actual operation data and the dynamic characteristics of the system are well reproduced. Secondly, the model is used to predict the load regulation capacity of thermal power unit. The power, main steam pressure, main steam temperature and other parameters are simulated respectively when the unit load is going up and down. Under the actual constraints, the load regulation capacity of thermal power unit can be predicted quickly. 展开更多
关键词 supercritical Thermal Power unit Subspace Identification Indirect Identification Load Regulation
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Operation Experience of the First Supercritical Pressure Unit and Its Developmental Prospect
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《Electricity》 1997年第4期15-17,共3页
关键词 Operation Experience of the First supercritical Pressure unit and Its Developmental Prospect
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