The Experts below are selected from a list of 20748 Experts worldwide ranked by ideXlab platform
Wen Jiang - One of the best experts on this subject based on the ideXlab platform.
-
Electric Drive System of dual winding fault tolerant permanent magnet motor for aerospace applications
IEEE Transactions on Industrial Electronics, 2015Co-Authors: Xuefeng Jiang, Zhenyang Hao, Ruiwu Cao, Wenxin Huang, Wen JiangAbstract:In this paper, a new Electric Drive System based on a six-phase ten-pole dual-winding fault-tolerant permanent-magnet (DFPM) motor for aerospace applications is proposed and investigated. The proposed DFPM motor consists of optimal surface-mounted permanent-magnet (PM) rotor and 12-slot stator with two sets of independent three-phase concentrated armature windings on alternate teeth, which incorporates the merits of high power density and high efficiency of the PM motor and high fault tolerance of the dual-winding motor. To achieve the fault-tolerant performance of the Electric Drive System, the redundant fault-tolerant control strategy based on the failure diagnosis and redundancy communication is proposed and applied to the Electric Drive System. Then, the operational performance of the Drive System under open-circuit and short-circuit fault has been verified by simulation and experiments. The research results show that the open-circuit and short-circuit fault can be detected immediately and the output performance of the DFPM motor under fault conditions is almost the same as the normal condition, which verified the proposed Electric Drive System, DFPM motor, and fault-tolerant control strategy.
-
Analysis of a dual-winding fault-tolerant permanent magnet machine Drive for aerospace applications
2015 IEEE International Magnetics Conference (INTERMAG), 2015Co-Authors: Xuefeng Jiang, Wenxin Huang, C. Li, Wen JiangAbstract:With the increasing development of aircraft and helicopter, new Electric Drive System for aerospace applications have attracted more and more attentions in the aviation sector [1]-[2]. The common hydraulic Drive helicopter winch is replaced by the Electric Drive helicopter winch gradually, due to the fact that the Electric Drive System can not only improve the System efficiency and the flexibility of variable speed control, but also reduce the weight and volume of the System [2]-[3]. However, in the Electric Drive helicopter winch Systems, where continuous operation must be ensured, high reliability and strong fault tolerance become a critical requirement [2]-[4]. The purpose of this paper is to propose a new Electric Drive helicopter winch System based on a six-phase ten-pole dual-winding fault-tolerant permanent magnet (DFPM) machine. The DFPM machine, which incorporates the merits of high power density and high efficiency of permanent magnet (PM) machine and high fault-tolerance of dual-winding machine, consists of optimal surface-mounted permanent magnet rotor and 12 slots stator with two sets of independent three-phase concentrated armature windings on alternate teeth. To achieve the fault-tolerant performance, the redundant fault-tolerant control strategy based on speed, current, voltage three-loop control is proposed and analyzed. Then, the electromagnetic performances of the DFPM machine Drive with an open-circuit fault under load hoisting and dropping conditions have been verified by experiments. The research results showing the effectiveness of the proposed fault-tolerant control strategy and the high performance of the fault-tolerant characteristic of the proposed DFPM machine Drive.
Xuefeng Jiang - One of the best experts on this subject based on the ideXlab platform.
-
Electric Drive System of dual winding fault tolerant permanent magnet motor for aerospace applications
IEEE Transactions on Industrial Electronics, 2015Co-Authors: Xuefeng Jiang, Zhenyang Hao, Ruiwu Cao, Wenxin Huang, Wen JiangAbstract:In this paper, a new Electric Drive System based on a six-phase ten-pole dual-winding fault-tolerant permanent-magnet (DFPM) motor for aerospace applications is proposed and investigated. The proposed DFPM motor consists of optimal surface-mounted permanent-magnet (PM) rotor and 12-slot stator with two sets of independent three-phase concentrated armature windings on alternate teeth, which incorporates the merits of high power density and high efficiency of the PM motor and high fault tolerance of the dual-winding motor. To achieve the fault-tolerant performance of the Electric Drive System, the redundant fault-tolerant control strategy based on the failure diagnosis and redundancy communication is proposed and applied to the Electric Drive System. Then, the operational performance of the Drive System under open-circuit and short-circuit fault has been verified by simulation and experiments. The research results show that the open-circuit and short-circuit fault can be detected immediately and the output performance of the DFPM motor under fault conditions is almost the same as the normal condition, which verified the proposed Electric Drive System, DFPM motor, and fault-tolerant control strategy.
-
Analysis of a dual-winding fault-tolerant permanent magnet machine Drive for aerospace applications
2015 IEEE International Magnetics Conference (INTERMAG), 2015Co-Authors: Xuefeng Jiang, Wenxin Huang, C. Li, Wen JiangAbstract:With the increasing development of aircraft and helicopter, new Electric Drive System for aerospace applications have attracted more and more attentions in the aviation sector [1]-[2]. The common hydraulic Drive helicopter winch is replaced by the Electric Drive helicopter winch gradually, due to the fact that the Electric Drive System can not only improve the System efficiency and the flexibility of variable speed control, but also reduce the weight and volume of the System [2]-[3]. However, in the Electric Drive helicopter winch Systems, where continuous operation must be ensured, high reliability and strong fault tolerance become a critical requirement [2]-[4]. The purpose of this paper is to propose a new Electric Drive helicopter winch System based on a six-phase ten-pole dual-winding fault-tolerant permanent magnet (DFPM) machine. The DFPM machine, which incorporates the merits of high power density and high efficiency of permanent magnet (PM) machine and high fault-tolerance of dual-winding machine, consists of optimal surface-mounted permanent magnet rotor and 12 slots stator with two sets of independent three-phase concentrated armature windings on alternate teeth. To achieve the fault-tolerant performance, the redundant fault-tolerant control strategy based on speed, current, voltage three-loop control is proposed and analyzed. Then, the electromagnetic performances of the DFPM machine Drive with an open-circuit fault under load hoisting and dropping conditions have been verified by experiments. The research results showing the effectiveness of the proposed fault-tolerant control strategy and the high performance of the fault-tolerant characteristic of the proposed DFPM machine Drive.
Wenxin Huang - One of the best experts on this subject based on the ideXlab platform.
-
Electric Drive System of dual winding fault tolerant permanent magnet motor for aerospace applications
IEEE Transactions on Industrial Electronics, 2015Co-Authors: Xuefeng Jiang, Zhenyang Hao, Ruiwu Cao, Wenxin Huang, Wen JiangAbstract:In this paper, a new Electric Drive System based on a six-phase ten-pole dual-winding fault-tolerant permanent-magnet (DFPM) motor for aerospace applications is proposed and investigated. The proposed DFPM motor consists of optimal surface-mounted permanent-magnet (PM) rotor and 12-slot stator with two sets of independent three-phase concentrated armature windings on alternate teeth, which incorporates the merits of high power density and high efficiency of the PM motor and high fault tolerance of the dual-winding motor. To achieve the fault-tolerant performance of the Electric Drive System, the redundant fault-tolerant control strategy based on the failure diagnosis and redundancy communication is proposed and applied to the Electric Drive System. Then, the operational performance of the Drive System under open-circuit and short-circuit fault has been verified by simulation and experiments. The research results show that the open-circuit and short-circuit fault can be detected immediately and the output performance of the DFPM motor under fault conditions is almost the same as the normal condition, which verified the proposed Electric Drive System, DFPM motor, and fault-tolerant control strategy.
-
Analysis of a dual-winding fault-tolerant permanent magnet machine Drive for aerospace applications
2015 IEEE International Magnetics Conference (INTERMAG), 2015Co-Authors: Xuefeng Jiang, Wenxin Huang, C. Li, Wen JiangAbstract:With the increasing development of aircraft and helicopter, new Electric Drive System for aerospace applications have attracted more and more attentions in the aviation sector [1]-[2]. The common hydraulic Drive helicopter winch is replaced by the Electric Drive helicopter winch gradually, due to the fact that the Electric Drive System can not only improve the System efficiency and the flexibility of variable speed control, but also reduce the weight and volume of the System [2]-[3]. However, in the Electric Drive helicopter winch Systems, where continuous operation must be ensured, high reliability and strong fault tolerance become a critical requirement [2]-[4]. The purpose of this paper is to propose a new Electric Drive helicopter winch System based on a six-phase ten-pole dual-winding fault-tolerant permanent magnet (DFPM) machine. The DFPM machine, which incorporates the merits of high power density and high efficiency of permanent magnet (PM) machine and high fault-tolerance of dual-winding machine, consists of optimal surface-mounted permanent magnet rotor and 12 slots stator with two sets of independent three-phase concentrated armature windings on alternate teeth. To achieve the fault-tolerant performance, the redundant fault-tolerant control strategy based on speed, current, voltage three-loop control is proposed and analyzed. Then, the electromagnetic performances of the DFPM machine Drive with an open-circuit fault under load hoisting and dropping conditions have been verified by experiments. The research results showing the effectiveness of the proposed fault-tolerant control strategy and the high performance of the fault-tolerant characteristic of the proposed DFPM machine Drive.
Zhenyang Hao - One of the best experts on this subject based on the ideXlab platform.
-
Electric Drive System of dual winding fault tolerant permanent magnet motor for aerospace applications
IEEE Transactions on Industrial Electronics, 2015Co-Authors: Xuefeng Jiang, Zhenyang Hao, Ruiwu Cao, Wenxin Huang, Wen JiangAbstract:In this paper, a new Electric Drive System based on a six-phase ten-pole dual-winding fault-tolerant permanent-magnet (DFPM) motor for aerospace applications is proposed and investigated. The proposed DFPM motor consists of optimal surface-mounted permanent-magnet (PM) rotor and 12-slot stator with two sets of independent three-phase concentrated armature windings on alternate teeth, which incorporates the merits of high power density and high efficiency of the PM motor and high fault tolerance of the dual-winding motor. To achieve the fault-tolerant performance of the Electric Drive System, the redundant fault-tolerant control strategy based on the failure diagnosis and redundancy communication is proposed and applied to the Electric Drive System. Then, the operational performance of the Drive System under open-circuit and short-circuit fault has been verified by simulation and experiments. The research results show that the open-circuit and short-circuit fault can be detected immediately and the output performance of the DFPM motor under fault conditions is almost the same as the normal condition, which verified the proposed Electric Drive System, DFPM motor, and fault-tolerant control strategy.
Ruiwu Cao - One of the best experts on this subject based on the ideXlab platform.
-
Electric Drive System of dual winding fault tolerant permanent magnet motor for aerospace applications
IEEE Transactions on Industrial Electronics, 2015Co-Authors: Xuefeng Jiang, Zhenyang Hao, Ruiwu Cao, Wenxin Huang, Wen JiangAbstract:In this paper, a new Electric Drive System based on a six-phase ten-pole dual-winding fault-tolerant permanent-magnet (DFPM) motor for aerospace applications is proposed and investigated. The proposed DFPM motor consists of optimal surface-mounted permanent-magnet (PM) rotor and 12-slot stator with two sets of independent three-phase concentrated armature windings on alternate teeth, which incorporates the merits of high power density and high efficiency of the PM motor and high fault tolerance of the dual-winding motor. To achieve the fault-tolerant performance of the Electric Drive System, the redundant fault-tolerant control strategy based on the failure diagnosis and redundancy communication is proposed and applied to the Electric Drive System. Then, the operational performance of the Drive System under open-circuit and short-circuit fault has been verified by simulation and experiments. The research results show that the open-circuit and short-circuit fault can be detected immediately and the output performance of the DFPM motor under fault conditions is almost the same as the normal condition, which verified the proposed Electric Drive System, DFPM motor, and fault-tolerant control strategy.