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    • 1. 发明授权
    • Method for controlling gas turbine using fuzzy logic
    • 使用模糊逻辑控制燃气轮机的方法
    • US6119446A
    • 2000-09-19
    • US187753
    • 1998-11-09
    • Young-chang Shon
    • Young-chang Shon
    • H02P23/14F02C9/28F02C9/30G05B11/36G05B11/42G05B13/02G05B17/02
    • F02C9/28F02C9/30F05D2270/052F05D2270/70
    • In a control of a gas turbine having a gas turbine engine, a fuel pump for supplying fuel to the gas turbine engine, a fuel valve, and a motor for driving the fuel pump, the motor or the fuel valve as a subject of control is controlled. (A) The difference between a target torque set by a user and an actual torque of the gas turbine engine is obtained. (B) A fuzzy control value is obtained by executing a fuzzy control algorithm in which the torque difference and a time differential value of the torque difference are set as input variables. (C) A proportional-differential control value is obtained by multiplying the fuzzy control value by a gain set through a simulation in which the fuzzy control value approximates to the proportional-differential control value from the torque difference. (D) An integral control value is obtained from the torque difference. (E) A proportional-integral-differential control value is obtained by adding the proportional-differential control value and the integral control value obtained from the steps (C) and (D), respectively. (F) Driving of the subject of control is controlled according to the proportional-integral-differential control value. (G) The steps (A) through (F) are repeated.
    • 在具有燃气涡轮发动机的燃气轮机的控制中,将作为控制对象的燃料泵,用于驱动燃料泵,电动机或燃料阀的燃料供给到燃气轮机的燃料泵,燃料阀和电动机, 受控。 (A)获得用户设定的目标转矩与燃气轮机的实际转矩之差。 (B)通过执行将转矩差和转矩差的时间微分值设定为输入变量的模糊控制算法,得到模糊控制值。 (C)通过将模糊控制值与通过模拟控制值近似于比例差动控制值的模拟相比,通过将模糊控制值乘以设定的增益来获得比例差动控制值。 (D)从转矩差获得积分控制值。 (E)通过分别从步骤(C)和(D)获得的比例差分控制值和积分控制值分别获得比例积分微分控制值。 (F)控制对象的驱动根据比例积分微分控制值进行控制。 (G)重复步骤(A)至(F)。
    • 3. 发明授权
    • Power generation system and power generation method
    • 发电系统及发电方式
    • US09249728B2
    • 2016-02-02
    • US13468218
    • 2012-05-10
    • Chan-Sun LimMyeong-Hyo KimJong-Sub ShinYoung-Chang ShonJeong-Hun Lee
    • Chan-Sun LimMyeong-Hyo KimJong-Sub ShinYoung-Chang ShonJeong-Hun Lee
    • F02C7/08F02C6/16
    • F02C7/08F02C6/16Y02E60/15
    • A power generation system includes a compression unit which compresses a gas, a storage which stores the compressed gas output from the compression unit, a first expansion unit which generates first power and outputs a first exhaust gas, a heating unit which heats at least the stored gas output from the storage, a second expansion unit which generates second power and outputs a second exhaust gas, a first regenerator which performs a first heat exchange between the second exhaust gas and the stored gas output from the storage, to generate a first heat exchange gas used to generate the first power and a first regenerator gas, and a second regenerator which performs a second heat exchange between the first exhaust gas and the first regenerator gas to generate a second heat exchange gas used to generate the second power after heated at the heating unit.
    • 发电系统包括压缩气体的压缩单元,存储从压缩单元输出的压缩气体的存储器,产生第一功率并输出第一排气的第一膨胀单元,至少加热存储的加热单元 从存储器输出的气体,产生第二功率并输出第二废气的第二膨胀单元,在第二排气和从储存器输出的储存气体之间进行第一热交换的第一再生器,以产生第一热交换 用于产生第一功率的气体和第一再生器气体;以及第二再生器,其在第一废气和第一再生器气体之间进行第二热交换,以产生用于在第二再生器加热后产生第二功率的第二热交换气体 加热单元