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    • 1. 发明授权
    • Turbogenerator/motor controller
    • 涡轮发电机/电机控制器
    • US5903116A
    • 1999-05-11
    • US924966
    • 1997-09-08
    • Everett R. GeisBrian W. Peticolas
    • Everett R. GeisBrian W. Peticolas
    • H02P9/04H02P5/20
    • H02P9/04
    • A turbogenerator/motor controller with a microprocessor based inverter having multiple modes of operation. To start the turbine, the inverter connects to and supplies fixed current, variable voltage, variable frequency, AC power to the permanent magnet turbogenerator/motor, driving the permanent magnet turbogenerator/motor as a motor to accelerate the gas turbine. During this acceleration, spark and fuel are introduced in the correct sequence, and self-sustaining gas turbine operating conditions are reached. The inverter is then disconnected from the permanent magnet generator/motor, reconfigured to a controlled 60 hertz mode, and then either supplies regulated 60 hertz three phase voltage to a stand alone load or phase locks to the utility, or to other like controllers, to operate as a supplement to the utility. In this mode of operation, the power for the inverter is derived from the permanent magnet generator/motor via high frequency rectifier bridges. The microprocessor monitors turbine conditions and controls fuel flow to the gas turbine combustor.
    • 具有基于微处理器的逆变器的涡轮发电机/电动机控制器具有多种操作模式。 为了启动涡轮机,变频器连接并提供固定电流,可变电压,可变频率,交流电力给永磁涡轮发电机/电机,驱动永磁涡轮发电机/电动机作为电机加速燃气轮机。 在此加速期间,以正确的顺序引入火花和燃料,并达到自持式燃气轮机运行条件。 然后将逆变器与永磁发电机/电机断开,重新配置为受控的60赫兹模式,然后将稳定的60赫兹三相电压提供给独立的负载或相位锁定到公用事业或其他类似的控制器 作为公用事业的补充。 在这种操作模式下,变频器的功率来自永磁发电机/电动机通过高频整流桥。 微处理器监测涡轮机状况并控制到燃气轮机燃烧器的燃料流。
    • 2. 再颁专利
    • Turbogenerator/motor controller
    • 涡轮发电机/电机控制器
    • USRE40713E1
    • 2009-05-19
    • US09853852
    • 2001-05-11
    • Everett R. GeisBrian W. Peticolas
    • Everett R. GeisBrian W. Peticolas
    • H02P7/00
    • H02P9/04
    • A turbogenerator/motor controller with a microprocessor based inverter having multiple modes of operation. To start the turbine, the inverter connects to and supplies fixed current, variable voltage, variable frequency, AC power to the permanent magnet turbogenerator/motor, driving the permanent magnet turbogenerator/motor as a motor to accelerate the gas turbine. During this acceleration, spark and fuel are introduced in the correct sequence, and self-sustaining gas turbine operating conditions are reached. The inverter is then disconnected from the permanent magnet generator/motor, reconfigured to a controlled 60 hertz mode, and then either supplies regulated 60 hertz three phase voltage to a stand alone load or phase locks to the utility, or to other like controllers, to operate as a supplement to the utility. In this mode of operation, the power for the inverter is derived from the permanent magnet generator/motor via high frequency rectifier bridges. The microprocessor monitors turbine conditions and controls fuel flow to the gas turbine combustor.
    • 具有基于微处理器的逆变器的涡轮发电机/电动机控制器具有多种操作模式。 要启动涡轮机,变频器<?delete-start id =“DEL-S-00001”date =“20090519”?>连接到,<?delete-end id =“DEL-S-00001”?>提供固定电流 ,可变电压,可变频率,永磁涡轮发电机/电动机的交流电力,驱动永磁涡轮发电机/电动机作为电动机,以加速燃气轮机。 在此加速期间,以正确的顺序引入火花和燃料,并达到自持式燃气轮机运行条件。 然后,变频器与永磁发电机/电动机断开连接的<?delete-start id =“DEL-S-00002”date =“20090519”?> <?delete-end id =“DEL-S-00002”?> 重新配置为受控的60赫兹模式,然后将稳定的60赫兹三相电压提供给独立的负载或相位锁定到公用事业或其他类似的控制器,作为公用事业的补充。 在这种操作模式下,变频器的功率来自永磁发电机/电动机通过高频整流桥。 微处理器监测涡轮机状况并控制到燃气轮机燃烧器的燃料流。
    • 6. 发明授权
    • Turbogenerator/motor control with synchronous condenser
    • 涡轮发电机/电机控制与同步冷凝器
    • US6093975A
    • 2000-07-25
    • US181388
    • 1998-10-27
    • Brian W. Peticolas
    • Brian W. Peticolas
    • F02C9/56H02J3/32H02K7/18H02P9/04F01D15/10
    • H02P9/04F02C9/56H02J3/32H02K7/1823
    • A turbogenerator/motor controller with a microprocessor-based control system having a synchronous condenser, line commutated inverter, and a battery coupled to the turbogenerator/motor controller. When a load transient occurs, the gas turbine engine and the synchronous condenser, which draws its power from the line commutated inverter and battery, provide the power required to successfully meet the transient until the gas turbine engine controls respond by commanding the gas turbine engine to a higher speed, producing more power out of the turbogenerator. In the event of a sudden reduction in load, an auxiliary load device temporarily draws load until the gas turbine engine controls can respond and reduce the output power of the turbogenerator.
    • 具有基于微处理器的控制系统的涡轮发电机/电动机控制器,其具有同步电容器,线路换向逆变器和耦合到涡轮发电机/电动机控制器的电池。 当发生负载瞬变时,燃气涡轮发动机和同步电动机从线路换向逆变器和电池抽取其功率,提供成功满足瞬态的功率,直到燃气轮机发动机控制通过指令燃气涡轮发动机来响应 更高的速度,从涡轮发电机产生更多的电力。 在负载突然减少的情况下,辅助负载装置临时牵引负载,直到燃气涡轮发动机控制可以响应并降低涡轮发电机的输出功率。
    • 7. 发明申请
    • CELL VOLTAGE MEASURING SYSTEMS AND METHODS
    • 电池电压测量系统和方法
    • US20090181286A1
    • 2009-07-16
    • US12329903
    • 2008-12-08
    • DOUGLAS A. BRUNNERBrian W. Peticolas
    • DOUGLAS A. BRUNNERBrian W. Peticolas
    • H01M10/48H01M10/44
    • H02J7/0021G01R31/3835G01R31/396
    • Cell voltage measuring systems and methods for determining voltage levels across cells within a string of electrochemical cells coupled to each other in series are provided. The string of electrochemical cells has a plurality of tap points dispersed throughout the string. A network of electro-mechanical relays electrically couple to the string of electrochemical cells with each relay coupling to a respective tap point. A controller is coupled to the network of relays and selectively activates a pair of relays within the network responsive to a selection signal. Activation of the pair of relays develops an output voltage level that corresponds to the voltage across one or more cells between respective tap points of the activated pair of relays.
    • 提供了电池电压测量系统和用于确定串联耦合的电化学电池组内的电池两端的电压电平的方法。 电化学电池串具有分散在整个串中的多个抽头点。 机电继电器的网络电耦合到电化学电池组,每个继电器耦合到相应的分接点。 控制器耦合到中继网络,并响应于选择信号选择性地激活网络内的一对中继。 一对继电器的激活产生对应于激活的一对继电器的相应分接点之间的一个或多个单元上的电压的输出电压电平。
    • 8. 发明授权
    • Turbogenerator power control system
    • 涡轮发电机功率控制系统
    • US06495929B2
    • 2002-12-17
    • US09829035
    • 2001-04-09
    • Robert W. BosleyEdward C. EdelmanSteven W. LampeBrian W. Peticolas
    • Robert W. BosleyEdward C. EdelmanSteven W. LampeBrian W. Peticolas
    • H02P900
    • F04B47/022F02C9/56F05D2200/15H02P9/04
    • A power control system for a turbogenerator which provides electrical power to one or more pump-jack oil wells. When the induction motor of a pump-jack oil well is powered by three-phase utility power, the speed of the pump-jack shaft varies only slightly over the pumping cycle but the utility power requirements can vary by four times the average pumping power. This power variation makes it impractical to power a pump-jack oil well with a stand-alone turbogenerator controlled by a conventional power control system. This power control system comprises a turbogenerator inverter, a load inverter, and a central processing unit which controls the frequency and voltage/current of each inverter. Throughout the oil well's pumping cycle, the central processing unit increases or decreases the frequency of the load inverter in order to axially accelerate and decelerate the masses of the down hole steel pump rods and oil, and to rotationally accelerate and decelerate the masses of the motor rotors and counter balance weights. This allows kinetic energy to be alternately stored in and extracted from the moving masses of the oil well and allows the oil pumping power to be precisely controlled throughout the pumping cycle, resulting in a constant turbogenerator power requirement.
    • 用于涡轮发电机的功率控制系统,其向一个或多个泵 - 千斤顶油井提供电力。 当泵 - 千斤顶油井的感应电动机由三相公用电源供电时,泵 - 千斤顶轴的速度在泵送周期内仅略微变化,但是公用电力要求可以变化为平均泵送功率的四倍。 这种动力变化使得通过由常规功率控制系统控制的独立涡轮发电机为泵 - 千斤顶油提供动力是不切实际的。 该电力控制系统包括涡轮发电机逆变器,负载变换器和控制每个逆变器的频率和电压/电流的中央处理单元。 在整个油井的抽油循环中,中央处理单元增加或减少负荷变换器的频率,以便轴向加速和减速井下钢泵杆和油的质量,并使电机的质量转动加速和减速 转子和平衡重。 这允许动能交替地存储在油井的移动质量块中并从其中提取,并且允许在整个泵送循环期间精确地控制抽油功率,导致恒定的涡轮发电机功率需求。
    • 9. 发明授权
    • Turbogenerator power control system
    • 涡轮发电机功率控制系统
    • US06265786B1
    • 2001-07-24
    • US09181213
    • 1998-10-27
    • Robert W. BosleyEdward C. EdelmanSteven W. LampeBrian W. Peticolas
    • Robert W. BosleyEdward C. EdelmanSteven W. LampeBrian W. Peticolas
    • F01D1510
    • E21B47/0008F02C9/56F04B47/022F05D2200/15H02P9/04Y10T74/18182
    • A power control system for a turbogenerator which provides electrical power to pump-jack oil well. When the induction motor of a pump-jack is powered by three-phase utility power, the speed of the shaft varies only slightly over the pumping cycle but the utility power requirements can vary by four times the average pumping power. This variation makes it impractical to power a pump-jack oil well with a stand-alone turbogenerator controlled by a conventional power control system. This control system comprises a turbogenerator inverter, a load inverter, and a central processing unit which controls the frequency and voltage/current of each inverter. Throughout the pumping cycle, the processing unit increases or decreases the frequency of the load inverter in order to axially accelerate and decelerate the masses of the down hole pump rods and oil, and to rotationally accelerate and decelerate the motor rotors and counter balance weights. This allows kinetic energy to be alternately stored in and extracted from the moving masses of the oil well and allows the pumping power to be precisely controlled, resulting in a constant turbogenerator power requirement.
    • 一种用于涡轮发电机的功率控制系统,其为泵油井提供电力。 当泵 - 千斤顶的感应电动机由三相公用电力供电时,轴的转速在泵送循环中仅略微变化,但是公用电力要求可以变化为平均泵送功率的四倍。 这种变化使得通过由常规功率控制系统控制的独立涡轮发电机为泵 - 千斤顶油提供动力是不切实际的。 该控制系统包括涡轮发电机逆变器,负载变换器和控制每个逆变器的频率和电压/电流的中央处理单元。 在整个泵送循环期间,处理单元增加或减少负载变换器的频率,以便轴向地加速和减速井下泵杆和油的质量,并且使电动机转子和平衡重物旋转加速和减速。 这允许动能被交替地存储在油井的移动质量块中并从其中提取,并且允许精确地控制泵送功率,导致恒定的涡轮发电机功率需求。