The Experts below are selected from a list of 300 Experts worldwide ranked by ideXlab platform
Yuanjie Jiang - One of the best experts on this subject based on the ideXlab platform.
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optimization of entering path for equipotential live work on 800 kv uhv dc line
IEEE Innovative Smart Grid Technologies-Asia, 2019Co-Authors: Yadi Zhang, Wencheng Sun, Ke Yang, Zehua Huang, Yuanjie JiangAbstract:Equipotential operation is the main way of live operation for ±800 kV UHV DC lines. In this paper, the numerical simulation method is used to study the optimum path to enter the equipotential in live operation of ±800 kV UHV DC lines. Firstly, according to the actual situation of live operation of typical straight-line towers in ±800 kV DC lines, a simulation model is established in the finite element analysis software ANSYS. Then, the dynamic distribution of electric field intensity on the human body surface is calculated when the operator enters the equipotential process along all possible paths and is located at several different points. The results show that the maximum electric field intensity of human body surface is different when it enters the equipotential along different paths, and the difference of the maximum electric field intensity between different paths can reach 1.7 times. The most reasonable entry path is from the tower level.
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Optimization of Entering Path for Equipotential Live Work on ± 800 kV UHV DC Line
2019 IEEE Innovative Smart Grid Technologies - Asia (ISGT Asia), 2019Co-Authors: Yadi Zhang, Wencheng Sun, Ke Yang, Zehua Huang, Yuanjie JiangAbstract:Equipotential operation is the main way of live operation for ±800 kV UHV DC lines. In this paper, the numerical simulation method is used to study the optimum path to enter the equipotential in live operation of ±800 kV UHV DC lines. Firstly, according to the actual situation of live operation of typical straight-line towers in ±800 kV DC lines, a simulation model is established in the finite element analysis software ANSYS. Then, the dynamic distribution of electric field intensity on the human body surface is calculated when the operator enters the equipotential process along all possible paths and is located at several different points. The results show that the maximum electric field intensity of human body surface is different when it enters the equipotential along different paths, and the difference of the maximum electric field intensity between different paths can reach 1.7 times. The most reasonable entry path is from the tower level.
Yadi Zhang - One of the best experts on this subject based on the ideXlab platform.
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optimization of entering path for equipotential live work on 800 kv uhv dc line
IEEE Innovative Smart Grid Technologies-Asia, 2019Co-Authors: Yadi Zhang, Wencheng Sun, Ke Yang, Zehua Huang, Yuanjie JiangAbstract:Equipotential operation is the main way of live operation for ±800 kV UHV DC lines. In this paper, the numerical simulation method is used to study the optimum path to enter the equipotential in live operation of ±800 kV UHV DC lines. Firstly, according to the actual situation of live operation of typical straight-line towers in ±800 kV DC lines, a simulation model is established in the finite element analysis software ANSYS. Then, the dynamic distribution of electric field intensity on the human body surface is calculated when the operator enters the equipotential process along all possible paths and is located at several different points. The results show that the maximum electric field intensity of human body surface is different when it enters the equipotential along different paths, and the difference of the maximum electric field intensity between different paths can reach 1.7 times. The most reasonable entry path is from the tower level.
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Optimization of Entering Path for Equipotential Live Work on ± 800 kV UHV DC Line
2019 IEEE Innovative Smart Grid Technologies - Asia (ISGT Asia), 2019Co-Authors: Yadi Zhang, Wencheng Sun, Ke Yang, Zehua Huang, Yuanjie JiangAbstract:Equipotential operation is the main way of live operation for ±800 kV UHV DC lines. In this paper, the numerical simulation method is used to study the optimum path to enter the equipotential in live operation of ±800 kV UHV DC lines. Firstly, according to the actual situation of live operation of typical straight-line towers in ±800 kV DC lines, a simulation model is established in the finite element analysis software ANSYS. Then, the dynamic distribution of electric field intensity on the human body surface is calculated when the operator enters the equipotential process along all possible paths and is located at several different points. The results show that the maximum electric field intensity of human body surface is different when it enters the equipotential along different paths, and the difference of the maximum electric field intensity between different paths can reach 1.7 times. The most reasonable entry path is from the tower level.
Zehua Huang - One of the best experts on this subject based on the ideXlab platform.
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optimization of entering path for equipotential live work on 800 kv uhv dc line
IEEE Innovative Smart Grid Technologies-Asia, 2019Co-Authors: Yadi Zhang, Wencheng Sun, Ke Yang, Zehua Huang, Yuanjie JiangAbstract:Equipotential operation is the main way of live operation for ±800 kV UHV DC lines. In this paper, the numerical simulation method is used to study the optimum path to enter the equipotential in live operation of ±800 kV UHV DC lines. Firstly, according to the actual situation of live operation of typical straight-line towers in ±800 kV DC lines, a simulation model is established in the finite element analysis software ANSYS. Then, the dynamic distribution of electric field intensity on the human body surface is calculated when the operator enters the equipotential process along all possible paths and is located at several different points. The results show that the maximum electric field intensity of human body surface is different when it enters the equipotential along different paths, and the difference of the maximum electric field intensity between different paths can reach 1.7 times. The most reasonable entry path is from the tower level.
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Optimization of Entering Path for Equipotential Live Work on ± 800 kV UHV DC Line
2019 IEEE Innovative Smart Grid Technologies - Asia (ISGT Asia), 2019Co-Authors: Yadi Zhang, Wencheng Sun, Ke Yang, Zehua Huang, Yuanjie JiangAbstract:Equipotential operation is the main way of live operation for ±800 kV UHV DC lines. In this paper, the numerical simulation method is used to study the optimum path to enter the equipotential in live operation of ±800 kV UHV DC lines. Firstly, according to the actual situation of live operation of typical straight-line towers in ±800 kV DC lines, a simulation model is established in the finite element analysis software ANSYS. Then, the dynamic distribution of electric field intensity on the human body surface is calculated when the operator enters the equipotential process along all possible paths and is located at several different points. The results show that the maximum electric field intensity of human body surface is different when it enters the equipotential along different paths, and the difference of the maximum electric field intensity between different paths can reach 1.7 times. The most reasonable entry path is from the tower level.
Ke Yang - One of the best experts on this subject based on the ideXlab platform.
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optimization of entering path for equipotential live work on 800 kv uhv dc line
IEEE Innovative Smart Grid Technologies-Asia, 2019Co-Authors: Yadi Zhang, Wencheng Sun, Ke Yang, Zehua Huang, Yuanjie JiangAbstract:Equipotential operation is the main way of live operation for ±800 kV UHV DC lines. In this paper, the numerical simulation method is used to study the optimum path to enter the equipotential in live operation of ±800 kV UHV DC lines. Firstly, according to the actual situation of live operation of typical straight-line towers in ±800 kV DC lines, a simulation model is established in the finite element analysis software ANSYS. Then, the dynamic distribution of electric field intensity on the human body surface is calculated when the operator enters the equipotential process along all possible paths and is located at several different points. The results show that the maximum electric field intensity of human body surface is different when it enters the equipotential along different paths, and the difference of the maximum electric field intensity between different paths can reach 1.7 times. The most reasonable entry path is from the tower level.
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Optimization of Entering Path for Equipotential Live Work on ± 800 kV UHV DC Line
2019 IEEE Innovative Smart Grid Technologies - Asia (ISGT Asia), 2019Co-Authors: Yadi Zhang, Wencheng Sun, Ke Yang, Zehua Huang, Yuanjie JiangAbstract:Equipotential operation is the main way of live operation for ±800 kV UHV DC lines. In this paper, the numerical simulation method is used to study the optimum path to enter the equipotential in live operation of ±800 kV UHV DC lines. Firstly, according to the actual situation of live operation of typical straight-line towers in ±800 kV DC lines, a simulation model is established in the finite element analysis software ANSYS. Then, the dynamic distribution of electric field intensity on the human body surface is calculated when the operator enters the equipotential process along all possible paths and is located at several different points. The results show that the maximum electric field intensity of human body surface is different when it enters the equipotential along different paths, and the difference of the maximum electric field intensity between different paths can reach 1.7 times. The most reasonable entry path is from the tower level.
Wencheng Sun - One of the best experts on this subject based on the ideXlab platform.
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optimization of entering path for equipotential live work on 800 kv uhv dc line
IEEE Innovative Smart Grid Technologies-Asia, 2019Co-Authors: Yadi Zhang, Wencheng Sun, Ke Yang, Zehua Huang, Yuanjie JiangAbstract:Equipotential operation is the main way of live operation for ±800 kV UHV DC lines. In this paper, the numerical simulation method is used to study the optimum path to enter the equipotential in live operation of ±800 kV UHV DC lines. Firstly, according to the actual situation of live operation of typical straight-line towers in ±800 kV DC lines, a simulation model is established in the finite element analysis software ANSYS. Then, the dynamic distribution of electric field intensity on the human body surface is calculated when the operator enters the equipotential process along all possible paths and is located at several different points. The results show that the maximum electric field intensity of human body surface is different when it enters the equipotential along different paths, and the difference of the maximum electric field intensity between different paths can reach 1.7 times. The most reasonable entry path is from the tower level.
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Optimization of Entering Path for Equipotential Live Work on ± 800 kV UHV DC Line
2019 IEEE Innovative Smart Grid Technologies - Asia (ISGT Asia), 2019Co-Authors: Yadi Zhang, Wencheng Sun, Ke Yang, Zehua Huang, Yuanjie JiangAbstract:Equipotential operation is the main way of live operation for ±800 kV UHV DC lines. In this paper, the numerical simulation method is used to study the optimum path to enter the equipotential in live operation of ±800 kV UHV DC lines. Firstly, according to the actual situation of live operation of typical straight-line towers in ±800 kV DC lines, a simulation model is established in the finite element analysis software ANSYS. Then, the dynamic distribution of electric field intensity on the human body surface is calculated when the operator enters the equipotential process along all possible paths and is located at several different points. The results show that the maximum electric field intensity of human body surface is different when it enters the equipotential along different paths, and the difference of the maximum electric field intensity between different paths can reach 1.7 times. The most reasonable entry path is from the tower level.