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    • 2. 发明授权
    • Microgrid power distribution system and power flow asymmetrical fault analysis method therefor
    • 微电网配电系统和电力流量不对称故障分析方法
    • US09118205B2
    • 2015-08-25
    • US13528043
    • 2012-06-20
    • Ting-Chia Ou
    • Ting-Chia Ou
    • H02J3/06H02J3/38H02J3/00
    • H02J3/06G01R19/2513H02J3/00H02J3/382H02J2003/001H02J2003/007Y02P80/14
    • A fault analysis method includes: using a matrix of two sets of microgrid power distribution networks to analyze and solve a fault current, and for various types of faults of the distributed power distribution system, obtaining appropriate boundary conditions to calculate a variety of different types of single or simultaneous fault currents of load points. The present invention may be further applied to a situation where a bus or impedance or parallel loop is added. The present invention has good robustness and execution speed, and requires small memory space for calculation of analysis and identification of a power flow fault of the distributed power distribution system, and may be actually applied to an instrument control system for identification and analysis of a fault of a large-scalemicrogrid distribution system.
    • 故障分析方法包括:使用两组微电网配电网矩阵来分析和解决故障电流,并对分布式配电系统的各种故障进行分析,获得适当的边界条件,以计算各种不同类型的 负载点的单个或同时故障电流。 本发明可以进一步应用于其中添加总线或阻抗或并联环路的情况。 本发明具有良好的鲁棒性和执行速度,并且需要较小的存储空间来计算分布式配电系统的功率流故障的分析和识别,并且可以实际应用于用于识别和分析故障的仪器控制系统 的大型微电网分配系统。
    • 3. 发明申请
    • Integrated Generation control system
    • 集成发电控制系统
    • US20130257347A1
    • 2013-10-03
    • US13437180
    • 2012-04-02
    • Ting-Chia Ou
    • Ting-Chia Ou
    • H02J7/14
    • H02P9/105H02J3/24H02J7/32
    • An integrated generation control system includes at least one integrated control module, a rectification module, a communication module, a rectifier, a permanent magnet alternator, a generator, a maintenance module, a local control unit and a battery. The integrated control module includes an automatic voltage regulator, a power system stabilizer and an extensive gate controller. The rectification module is connected to the integrated control module. The communication module is arranged between the integrated control module and the rectification module. The rectifier is connected to the integrated control module and the rectification module. The permanent magnet alternator is connected to the rectifier. The generator is connected to the integrated control module.
    • 集成发电控制系统包括至少一个集成控制模块,整流模块,通信模块,整流器,永磁发电机,发电机,维护模块,本地控制单元和电池。 集成控制模块包括自动稳压器,电力系统稳定器和广泛的门控制器。 整流模块连接到集成控制模块。 通信模块设置在集成控制模块和整流模块之间。 整流器连接到集成控制模块和整流模块。 永磁交流发电机连接到整流器。 发电机连接到集成控制模块。
    • 5. 发明授权
    • Integrated generation control system
    • 集成发电控制系统
    • US09154069B2
    • 2015-10-06
    • US13437180
    • 2012-04-02
    • Ting-Chia Ou
    • Ting-Chia Ou
    • H02P11/00H02P9/10H02J3/24H02J7/32
    • H02P9/105H02J3/24H02J7/32
    • An integrated generation control system includes at least one integrated control module, a rectification module, a communication module, a rectifier, a permanent magnet alternator, a generator, a maintenance module, a local control unit and a battery. The integrated control module includes an automatic voltage regulator, a power system stabilizer and an extensive gate controller. The rectification module is connected to the integrated control module. The communication module is arranged between the integrated control module and the rectification module. The rectifier is connected to the integrated control module and the rectification module. The permanent magnet alternator is connected to the rectifier. The generator is connected to the integrated control module.
    • 集成发电控制系统包括至少一个集成控制模块,整流模块,通信模块,整流器,永磁发电机,发电机,维护模块,本地控制单元和电池。 集成控制模块包括自动稳压器,电力系统稳定器和广泛的门控制器。 整流模块连接到集成控制模块。 通信模块设置在集成控制模块和整流模块之间。 整流器连接到集成控制模块和整流模块。 永磁交流发电机连接到整流器。 发电机连接到集成控制模块。
    • 6. 发明授权
    • Hybrid intelligent control method and system for power generating apparatuses
    • 用于发电设备的混合智能控制方法和系统
    • US08774949B2
    • 2014-07-08
    • US13272328
    • 2011-10-13
    • Ting-Chia Ou
    • Ting-Chia Ou
    • B63H3/10F03D7/02F03D7/04G06N5/04
    • F03D7/0224F03D7/04F03D7/046F05B2270/707F05B2270/709G06N5/04G06N5/048Y02B10/30Y02E10/723Y02E10/725Y02E40/76Y04S10/545
    • A present invention relates to a novel hybrid intelligent control system and method for power generating apparatuses, in which the control system comprises: a fuzzy sliding mode speed controller, embedded with a fuzzy inference mechanism so as to be used for controlling the speed of a power generating apparatus; and a radial basis function network (RBFN) pitch controller, being embedded with an on-line training RBFN so as to be used for controlling the pitch angle of a turbine coupled to the power generating apparatus. In a variable-speed energy conversion system using the aforesaid control system, the turbine can be driven to operate at its maximum efficiency by adjusting its blade pitch angle in response to the variation of the input flowing into the turbine, while allowing the shaft speed of the power generating apparatus to be controlled by a fuzzy interference mechanism so as to achieve its maximum power output.
    • 本发明涉及一种用于发电设备的新颖的混合智能控制系统和方法,其中控制系统包括:模糊滑模转速控制器,嵌入模糊推理机构,以便用于控制功率的速度 发电装置; 以及嵌入在线训练RBFN的径向基函数网络(RBFN)变桨控制器,以便用于控制耦合到发电装置的涡轮机的俯仰角。 在使用上述控制系统的变速能量转换系统中,可以通过根据输入到涡轮机的输入的变化来调节其叶片桨距角来驱动涡轮机以其最大效率进行操作,同时允许 所述发电装置由模糊干扰机构控制,以实现其最大功率输出。