2018•Unpublished venueRequires access

Study on Power-Transmission Curve of Wind Power Transmitted with Thermal Power Considering Wind Power Peak Load Regulation Requirement

Tingting Hou, Yujia Li, Wei Zhang, Bo Ruan, Xiaobing Zhou, Luo Chunjian, Shuang Zhao

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Abstract

Driven by growing concerns about climate change, rapid depletion of conventional fossil fuel and global environmental issues, the installation of wind power has increased significantly in many countries in recent years. Due to the variability and low capacity factor of wind power, it is inevitable that wind power should be transmitted with thermal power through high-voltage transmission lines to the load centers. In this situation, the paper presents a method for power-transmission curve of wind power transmitted with thermal power considering wind power peak load regulation requirement. The peak load regulation requirement probabilistic model for transmitted wind power is proposed due to its random nature. Then, the optimation model for co-operation wind power and thermal power is prensted, which takes into the account constraints of thermal units and transmission line, and the objective function being maximized is the transmitted energy The case studies are carried out for a system, and the results verify the effectiveness and accuracy of the presented method.

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What this paper is about

Driven by growing concerns about climate change, rapid depletion of conventional fossil fuel and global environmental issues, the installation of wind power has increased significantly in many countries in recent years. Due to the variability and low capacity factor of wind power, it is inevitable that wind power should be transmitted with thermal power through high-voltage transmission lines to the load centers. In this situation, the paper presents a method for power-transmission curve of wind power transmitted with thermal power considering wind power peak load regulation requirement. The peak load regulation requirement probabilistic model for transmitted wind power is proposed due to its random nature. Then, the optimation model for co-operation wind power and thermal power is prensted, which takes into the account constraints of thermal units and transmission line, and the objective function being maximized is the transmitted energy The case studies are carried out for a system, and the results verify the effectiveness and accuracy of the presented method.

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Available abstract

Driven by growing concerns about climate change, rapid depletion of conventional fossil fuel and global environmental issues, the installation of wind power has increased significantly in many countries in recent years. Due to the variability and low capacity factor of wind power, it is inevitable that wind power should be transmitted with thermal power through high-voltage transmission lines to the load centers. In this situation, the paper presents a method for power-transmission curve of wind power transmitted with thermal power considering wind power peak load regulation requirement. The peak load regulation requirement probabilistic model for transmitted wind power is proposed due to its random nature. Then, the optimation model for co-operation wind power and thermal power is prensted, which takes into the account constraints of thermal units and transmission line, and the objective function being maximized is the transmitted energy The case studies are carried out for a system, and the results verify the effectiveness and accuracy of the presented method.

Key concepts: Wind power, Base load power plant, Electric power transmission, Power (physics), Electric power system, Power transmission, Thermal power station, Transmission (telecommunications)

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