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    • 1. 发明授权
    • Method for estimating the sum of stator and rotor resistances
    • 估计定子和转子电阻之和的方法
    • US07262577B2
    • 2007-08-28
    • US11408030
    • 2006-04-21
    • Samuli HeikkiläMikko Vertanen
    • Samuli HeikkiläMikko Vertanen
    • H02P3/18
    • G01R31/343H02P23/14
    • A method for estimating the sum of the stator and rotor resistances of an induction machine using a frequency converter when the frequency converter is connected to the induction machine. The method comprises the steps of controlling the stator current of the induction machine with the frequency converter such that the rotor flux (ψR) changes substantially linearly while the stator current is substantially constant, determining the magnitude of stator voltage and stator current while the rotor flux is changing substantially linearly, and calculating the sum of the stator and rotor resistances from the determined magnitudes of stator voltage and stator current.
    • 一种用于当变频器连接到感应电机时使用变频器估计感应电机的定子和转子电阻之和的方法。 该方法包括以下步骤:利用变频器控制感应电机的定子电流,使得转子磁通(psi)在定子电流基本恒定的同时基本上线性地改变,确定定子的幅度 电压和定子电流,同时转子磁通基本线性地变化,并根据确定的定子电压和定子电流的大小计算定子和转子电阻之和。
    • 4. 发明申请
    • INDUCTION MOTOR PARAMETER IDENTIFICATION
    • 感应电动机参数识别
    • US20110010116A1
    • 2011-01-13
    • US12830827
    • 2010-07-06
    • Samuli HEIKKILÄ
    • Samuli HEIKKILÄ
    • G01R15/00G01R31/34
    • H02P21/14G01R31/343H02P21/16H02P23/14
    • A method and an arrangement are provided for identifying parameters of an induction machine when the induction machine is connected to the output phases of a voltage source inverter and the induction machine is in standstill state. The method includes providing a DC magnetization current (idc—magn) to the induction machine with the inverter, controlling the power semiconductors of the inverter to an off-state, controlling all the output phases of the inverter to the same potential to provide a zero voltage vector, measuring the stator current (isd) during the zero voltage vector, and determining parameters of the induction machine from the stator current (isd) measured during the zero voltage vector.
    • 提供了一种方法和装置,用于当感应电机连接到电压源逆变器的输出相并且感应电机处于停止状态时识别感应电机的参数。 该方法包括:通过逆变器向感应电机提供直流磁化电流(idc-magn),将逆变器的功率半导体控制到截止状态,控制逆变器的所有输出相位达到相同的电位,以提供零 电压矢量,在零电压矢量期间测量定子电流(isd),以及根据在零电压矢量期间测量的定子电流(isd)确定感应电机的参数。
    • 5. 发明授权
    • Induction motor parameter identification
    • 感应电机参数识别
    • US08483981B2
    • 2013-07-09
    • US12830827
    • 2010-07-06
    • Samuli Heikkilä
    • Samuli Heikkilä
    • G01R15/00
    • H02P21/14G01R31/343H02P21/16H02P23/14
    • A method and an arrangement are provided for identifying parameters of an induction machine when the induction machine is connected to the output phases of a voltage source inverter and the induction machine is in standstill state. The method includes providing a DC magnetization current (idc—magn) to the induction machine with the inverter, controlling the power semiconductors of the inverter to an off-state, controlling all the output phases of the inverter to the same potential to provide a zero voltage vector, measuring the stator current (isd) during the zero voltage vector, and determining parameters of the induction machine from the stator current (isd) measured during the zero voltage vector.
    • 提供了一种方法和装置,用于当感应电机连接到电压源逆变器的输出相并且感应电机处于停止状态时识别感应电机的参数。 该方法包括:通过逆变器向感应电机提供直流磁化电流(idc-magn),将逆变器的功率半导体控制到截止状态,控制逆变器的所有输出相位达到相同的电位,以提供零 电压矢量,在零电压矢量期间测量定子电流(isd),以及根据在零电压矢量期间测量的定子电流(isd)确定感应电机的参数。
    • 6. 发明申请
    • ESTIMATION OF PARAMETERS OF AN INDUCTION MACHINE
    • 感应电机参数估算
    • US20110001447A1
    • 2011-01-06
    • US12829908
    • 2010-07-02
    • Samuli HEIKKILÄ
    • Samuli HEIKKILÄ
    • H02K11/00
    • H02P21/14G01R31/343H02P23/14
    • A method and an arrangement are disclosed for identifying one or more parameters of an induction machine when the induction machine is connected to the output phases of a voltage source inverter and the induction machine is in standstill state. The method can include a first phase for magnetizing the machine by providing a first DC magnetization current until the induction machine reaches steady state, the current reference of the inverter having a first value (ide—ref1). A first maximum value (imz—max) of the stator current (isd) is measured during a zero voltage vector. In a second phase, the machine is magnetized by providing a second DC magnetization current, the current reference having a second value (idc—ref2) which is higher than the first reference (ide—ref1). A second maximum value of (isdz—max) the stator current is measured during a zero voltage vector, and a parameter of the induction machine is estimated when the measured first and second maximum values are equal.
    • 公开了一种方法和装置,用于当感应电机连接到电压源逆变器的输出相并且感应电机处于停止状态时识别感应电机的一个或多个参数。 该方法可以包括通过提供第一直流磁化电流直到感应电机达到稳定状态来使电机磁化的第一相,反相器的电流基准具有第一值(ide-ref1)。 在零电压矢量期间测量定子电流(isd)的第一最大值(imz-max)。 在第二阶段,机器通过提供第二直流磁化电流而被磁化,电流参考具有高于第一参考值(ide-ref1)的第二值(idc-ref2)。 在零电压矢量期间测量定子电流的第二个最大值(isdz-max),并且当测量的第一和第二最大值相等时,估计感应电机的参数。
    • 7. 发明授权
    • Measuring average of phase voltage of a frequency converter based on an idealized waveform
    • 基于理想化波形测量变频器的相电压平均值
    • US07352220B2
    • 2008-04-01
    • US11350933
    • 2006-02-10
    • Samuli Heikkilä
    • Samuli Heikkilä
    • H03K3/017H03K5/04H03K7/08
    • H02P27/12H02M7/5395H02M2001/0022
    • A method and arrangement for determining the effective time of a voltage pulse of phase voltage generated by a frequency converter provided with an intermediate voltage circuit, the voltage pulses of the phase voltage being generated from the upper and lower voltage levels (UDC, 0) of the intermediate voltage circuit, the voltage levels showing a difference in potential (UDC). The method includes generating a first reference voltage (Uref1) and a second reference voltage (Uref2); scaling the phase output voltage by the scaling coefficient (k); comparing the low-pass filtered phase output voltage with the first reference voltage (Uref1); detecting a time instant (t1) when the low-pass filtered phase output voltage exceeds the first reference voltage (Uref1); comparing the low-pass filtered phase output voltage with the second reference voltage (Uref2); detecting a time instant (t2) when the low-pass filtered phase output voltage is lower than the second reference voltage (Uref2); and calculating the effective time of the voltage pulse on the basis of the time between the first and the second time instants and a constant term.
    • 一种用于确定由设置有中间电压电路的变频器产生的相电压的电压脉冲的有效时间的方法和装置,所述相电压的电压脉冲是从上和下电压电平(U DC)产生的 ,0),表示电位差(U SUB DC)的电压电平。 该方法包括产生第一参考电压(U SUB ref1)和第二参考电压(U SUB ref2 ); 按比例系数(k)缩放相位输出电压; 将低通滤波的相位输出电压与第一参考电压(U ref1)进行比较; 当所述低通滤波相位输出电压超过所述第一参考电压(U SUB ref1)时,检测时刻(t 1> 1); 将低通滤波相位输出电压与第二参考电压(U SUB ref2)进行比较; 当所述低通滤波相位输出电压低于所述第二参考电压(U SUB ref2)时,检测时刻(t 2> 2); 并且基于第一和第二时刻之间的时间和恒定项计算电压脉冲的有效时间。
    • 9. 发明授权
    • Method for defining instantaneous value of current of pulse-controlled inductive load
    • 定义脉冲电感负载电流瞬时值的方法
    • US06195274B1
    • 2001-02-27
    • US09555334
    • 2000-05-30
    • Petri SchroderusSamuli Heikkilä
    • Petri SchroderusSamuli Heikkilä
    • H02J102
    • G01R19/0092
    • A method of defining an instantaneous value of a current (i2e) of a pulse-controlled inductive load when the impedance of the load is known, the method comprising the steps of: measuring the output voltage (u1) of a pulsed voltage source, and measuring the output current (i1) of the pulsed voltage source. The method is characterized by further comprising the steps of: low-pass filtering the measured output current (i1) of the pulsed voltage source to produce a fundamental wave current (i1lp), defining a load current estimate (i2est) by computation on the basis of the measured output voltage (u1) of the pulsed voltage source and the impedance of the load, high-pass filtering the load current estimate (i2est), and defining the instantaneous value of the load current (i2e) by adding the high-pass-filtered load current estimate (i2hp) to the fundamental wave current (i1p).
    • 一种在已知负载阻抗时定义脉冲控制电感负载的电流(i2e)的瞬时值的方法,所述方法包括以下步骤:测量脉冲电压源的输出电压(u1),以及 测量脉冲电压源的输出电流(i1)。 该方法的特征还在于包括以下步骤:对所测量的脉冲电压源的输出电流(i1)进行低通滤波,以产生基波电流(i1lp),通过计算基础确定负载电流估计(i2est) 的脉冲电压源的测量输出电压(u1)和负载阻抗,对负载电流估计(i2est)进行高通滤波,并通过加上高通量来定义负载电流(i2e)的瞬时值 - 滤波负载电流估计(i2hp)到基波电流(i1p)。
    • 10. 发明授权
    • Estimation of parameters of an induction machine
    • 感应电机参数估算
    • US08415916B2
    • 2013-04-09
    • US12829908
    • 2010-07-02
    • Samuli Heikkilä
    • Samuli Heikkilä
    • H02P1/24
    • H02P21/14G01R31/343H02P23/14
    • A method and an arrangement are disclosed for identifying one or more parameters of an induction machine when the induction machine is connected to the output phases of a voltage source inverter and the induction machine is in standstill state. The method can include a first phase for magnetizing the machine by providing a first DC magnetization current until the induction machine reaches steady state, the current reference of the inverter having a first value (idc—ref1). A first maximum value (imz—max) of the stator current (isd) is measured during a zero voltage vector. In a second phase, the machine is magnetized by providing a second DC magnetization current, the current reference having a second value (idc—ref2) which is higher than the first reference (idc—ref1). A second maximum value of (isdz—max) the stator current is measured during a zero voltage vector, and a parameter of the induction machine is estimated when the measured first and second maximum values are equal.
    • 公开了一种方法和装置,用于当感应电机连接到电压源逆变器的输出相并且感应电机处于停止状态时识别感应电机的一个或多个参数。 该方法可以包括通过提供第一直流磁化电流直到感应电机达到稳定状态来使机器磁化的第一相,反相器的电流基准具有第一值(idc-ref1)。 在零电压矢量期间测量定子电流(isd)的第一最大值(imz-max)。 在第二阶段,通过提供第二直流磁化电流来对机器进行磁化,该电流参考具有高于第一参考值(idc-ref1)的第二值(idc-ref2)。 在零电压矢量期间测量定子电流的第二个最大值(isdz-max),并且当测量的第一和第二最大值相等时,估计感应电机的参数。