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    • 1. 发明授权
    • Unrestricted frequency converter for unbalanced loads
    • 无限制的变频器用于不平衡负载
    • US5047915A
    • 1991-09-10
    • US543984
    • 1990-06-26
    • Geoffrey M. SmithThomas H. PutmanEric J. StaceyLaszlo Gyugyi
    • Geoffrey M. SmithThomas H. PutmanEric J. StaceyLaszlo Gyugyi
    • H02M5/27
    • H02M5/271
    • A current fed unrestricted frequency converter (UFC) for supplying power with balanced voltages to a three-phase unbalanced load generates two sets of existence functions for controlling the switching matrices of the UFC to generate positive and negative sequence current components in the load. Existence function generators generating the positive and negative sequence existence functions are phase locked, respectively, to a positive sequence reference signal generated by a clock and a negative sequence reference signal derived by circuits which monitor the negative sequence voltage in the load. Select circuits alternately gate the positive and negative sequence existence functions to the UFC switching matrices in proportion to the detected magnitude of the negative sequence voltage in a sense to drive the negative sequence voltage in the load to zero. A neutral forming transformer eliminates any zero sequence voltage in the load so that all that remains is the positive sequence components of voltage which by definition are balanced.
    • 用于向三相不平衡负载提供具有平衡电压的电力的电流馈送无限制变频器(UFC)产生两组存在函数,用于控制UFC的开关矩阵以在负载中产生正序和负序电流分量。 产生正序和负序存在函数的存在函数发生器分别锁相于由监视负载中的负序电压的电路导出的时钟和负序参考信号产生的正序参考信号。 与负序电压的检测幅度成比例的选择电路将正序和负序存在函数交替地切换到UFC开关矩阵,从而将负载中的负序电压驱动为零。 中性成形变压器消除了负载中的任何零序电压,使得保留的所有电压是根据定义平衡的电压的正序分量。
    • 5. 发明授权
    • Apparatus and method for transient free energization and deenergization
of static VAR generators
    • 用于静态VAR发生器的瞬态自由通电和断电的装置和方法
    • US4047097A
    • 1977-09-06
    • US677202
    • 1976-04-15
    • Laszlo GyugyiEric J. StaceyMichael B. Brennen
    • Laszlo GyugyiEric J. StaceyMichael B. Brennen
    • G05F1/70H02J3/18
    • H02J3/1864Y02E40/12
    • A static VAR generator is taught for use with a source of electrical power and a rapidly varying load. The static VAR generator comprises thyristor switched inductors connected across a capacitor. The gate of the thyristor switch is fired each half cycle in accordance with a predetermined firing angle to provide sufficient inductive current to cancel a portion of the capacitive current to thus provide a net reactive current for the system served. This is done on a half cycle by half cycle basis. A main disconnect switch is connected in parallel with the series combination of a secondary disconnect switch, a diode and a large resistor. The latter combination is connected in series with the parallel combination of the compensating inductor and the compensating capacitor. The secondary disconnect switch is utilized to charge the capacitor to the peak voltage between lines of the electrical system prior to connecting the static VAR generator to the system or prior to disconnecting the static VAR generator from the system. Prior to a disconnecting or connecting operation an oscillating current is introduced between the compensating capacitor and the compensating inductor. This current is found to have the same frequency phase, wave shape and amplitude as the voltage between the lines to which the static VAR generator is connected. The gate control for the thyristor is utilized to fix the phase difference between the oscillating current and the alternating voltage of the system at or near zero. The oscillating voltage caused by the oscillating current is thus equal in phase, frequency, wave shape and magnitude to the alternating voltage of the system. Consequently the main disconnect switch can be opened or closed as desired with zero electrical potential thereacross.
    • 教导静态VAR发生器用于电源和快速变化的负载。 静态VAR发生器包括连接在电容器上的晶闸管开关电感器。 晶闸管开关的栅极根据预定的触发角度每半个周期被烧,以提供足够的感应电流来消除电容电流的一部分,从而为所服务的系统提供净无功电流。 这是以半个周期为基础进行的。 主断路开关与二次断路开关,二极管和大电阻的串联组合并联。 后者的组合与补偿电感器和补偿电容器的并联组合串联连接。 在将静态VAR发生器连接到系统之前或者在将静态VAR发生器从系统断开之前,二次断开开关用于将电容器充电到电气系统的线路之间的峰值电压。 在断开或连接操作之前,在补偿电容器和补偿电感器之间引入振荡电流。 发现该电流具有与静态VAR发生器连接的线路之间的电压相同的频率相位,波形和振幅。 晶闸管的栅极控制用于将系统的振荡电流和交流电压之间的相位差固定在零或接近零。 振荡电流产生的振荡电压在相位,频率,波形和幅度方面与系统的交流电压相等。 因此,主切断开关可根据需要打开或关闭,其中电位为零。
    • 9. 发明授权
    • Torque angle and peak current detector for synchronous motors
    • 同步电机的转矩角和峰值电流检测器
    • US4991429A
    • 1991-02-12
    • US458216
    • 1989-12-28
    • Eric J. StaceyGeoffrey M. Smith
    • Eric J. StaceyGeoffrey M. Smith
    • G01R31/34
    • G01R31/34
    • A torque angle and peak current detector for a three-phase synchronous motor utilizes a phase-locked loop to generate a digital stator field position signal phase locked to the stator current. The phases of digital -sine and cosine reference signals generated from the field position signal are compared with x and y stator current component signals in multiplying digital to analog converters to generate a phase error signal which is driven to zero with the reference signals in quadrature with the current component signals at phase lock. The reference signals are also multiplied by in-phase current component signals and the products are summed to generate the peak current signal. A digital rotor angle position generated by a resolver and an analog to digital converter is subtracted from the digital field position signal to generate the torque angle signal.
    • 用于三相同步电动机的转矩角和峰值电流检测器利用锁相环产生锁定到定子电流的数字定子磁场位置信号。 将从场位置信号产生的数字 - 和余弦参考信号的相位与x和y定子电流分量信号进行比较,以将数模转换器相乘,以产生相位误差信号,其中参考信号与 电流分量信号处于相位锁定状态。 参考信号也乘以同相电流分量信号,并将乘积相加以产生峰值电流信号。 从数字场位置信号中减去由解算器和模数转换器产生的数字转子角位置,以产生转矩角信号。
    • 10. 发明授权
    • Absolute shaft position sensing circuit
    • 绝对轴位置检测电路
    • US4766359A
    • 1988-08-23
    • US27468
    • 1987-03-18
    • Geoffrey M. SmithEric J. Stacey
    • Geoffrey M. SmithEric J. Stacey
    • G01D5/245G05B1/06
    • G01D5/2457
    • An absolute shaft position sensing circuit uses a magnetic sensor and a toothed wheel to produce two pulse trains which are used to determine the absolute position of a shaft which is coupled to the toothed wheel. One pulse train includes regularly spaced pulses which are fed to a phase locked loop to produce an oscillating output signal. A counter counts this signal and produces an output count which is representative of the relative angular position of the shaft. A second pulse train includes an irregularly spaced pulse. Circuitry is provided to detect the occurrence of this irregularly spaced pulse and to reset the counter in response to that occurrence, thereby making the count representative of the absolute angular position of the shaft.
    • 绝对轴位置检测电路使用磁传感器和齿轮来产生两个脉冲串,其用于确定耦合到齿轮的轴的绝对位置。 一个脉冲串包括规则间隔的脉冲,其被馈送到锁相环以产生振荡输出信号。 计数器对该信号进行计数,并产生代表轴的相对角位置的输出计数。 第二脉冲串包括不规则间隔的脉冲。 提供电路以检测这种不规则间隔的脉冲的发生,并且响应于该事件复位计数器,从而使计数表示轴的绝对角位置。