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    • 3. 发明授权
    • Permanent magnet brushless machine with magnetic flux regulation
    • 永磁无刷电机带磁通量调节
    • US08148867B2
    • 2012-04-03
    • US12538650
    • 2009-08-10
    • Jacek F. GierasGregory I. RozmanAndreas C. Koenig
    • Jacek F. GierasGregory I. RozmanAndreas C. Koenig
    • H02K21/00
    • H02K21/046
    • A permanent magnet machine (PMM) has a generally cylindrical permanent magnet (PM) rotor that has multiple PM rotor poles arranged around a rotor axis of rotation; and a stator with two generally cylindrical and concentric yokes, an inner yoke proximate the PM rotor with associated multiple inner poles and inner armature windings suitable for multiphase alternating current operation that form a PMM magnetic flux circuit, an outer yoke with associated multiple outer poles and outer control windings suitable for connection to a direct current source, with distal ends of the outer poles in contact with the inner yoke to form an external magnetic flux circuit that diverts magnetic flux from the PMM magnetic flux circuit; wherein application of increasing direct current to the outer windings results in increased magnetic reluctance of the external magnetic flux circuit, thereby causing the external magnetic flux circuit to divert less magnetic flux from the PMM magnetic flux circuit.
    • 永磁机(PMM)具有大致圆柱形的永磁体(PM)转子,其具有围绕转子旋转轴线布置的多个PM转子磁极; 以及具有两个大致圆柱形和同心磁轭的定子,靠近PM转子的内磁轭,具有相关联的多个内极和适合于形成PMM磁通电路的多相交流操作的内电枢绕组,具有相关联的多个外极的外磁轭和 外部控制绕组适于连接到直流电源,外部磁极的末端与内部磁轭接触,形成外部磁通电路,该磁通电流从PMM磁通电路转移磁通量; 其中向外部绕组施加增加的直流电流导致外部磁通电路的磁阻增加,从而使外部磁通电路从PMM磁通电路转移较少的磁通量。
    • 4. 发明申请
    • Permanent Magnet Brushless Machine with Magnetic Flux Regulation
    • 具有磁通量调节的永磁无刷电机
    • US20110031841A1
    • 2011-02-10
    • US12538650
    • 2009-08-10
    • Jacek F. GierasGregory I. RozmanAndreas C. Koenig
    • Jacek F. GierasGregory I. RozmanAndreas C. Koenig
    • H02K21/16
    • H02K21/046
    • A permanent magnet machine (PMM) comprises: a generally cylindrical permanent magnet (PM) rotor that comprises multiple PM rotor poles arranged around a rotor axis of rotation; and a stator with two generally cylindrical and concentric yokes, an inner yoke proximate the PM rotor with associated multiple inner poles and inner armature windings suitable for multiphase alternating current operation that form a PMM magnetic flux circuit, an outer yoke with associated multiple outer poles and outer control windings suitable for connection to a direct current source, with distal ends of the outer poles in contact with the inner yoke to form an external magnetic flux circuit that diverts magnetic flux from the PMM magnetic flux circuit; wherein application of increasing direct current to the outer windings results in increased magnetic reluctance of the external magnetic flux circuit, thereby causing the external magnetic flux circuit to divert less magnetic flux from the PMM magnetic flux circuit.
    • 永磁机(PMM)包括:大致圆柱形的永磁体(PM)转子,其包括绕转子旋转轴线布置的多个PM转子极; 以及具有两个大致圆柱形和同心磁轭的定子,靠近PM转子的内磁轭,具有相关联的多个内极和适合于形成PMM磁通电路的多相交流操作的内电枢绕组,具有相关联的多个外极的外磁轭和 外部控制绕组适于连接到直流电源,外部磁极的末端与内部磁轭接触,形成外部磁通电路,该磁通电流从PMM磁通电路转移磁通量; 其中向外部绕组施加增加的直流电流导致外部磁通电路的磁阻增加,从而使外部磁通电路从PMM磁通电路转移较少的磁通量。
    • 5. 发明申请
    • Electric Power Generation and Conversion with Controlled Magnetics
    • 电力发电与控制磁学转换
    • US20100034003A1
    • 2010-02-11
    • US12186737
    • 2008-08-06
    • Gregory I. RozmanJacek F. GierasAndreas C. Koenig
    • Gregory I. RozmanJacek F. GierasAndreas C. Koenig
    • H02M5/16
    • H02M7/066
    • A power conversion system comprises: a source of multiphase high frequency alternating current (AC) electrical input power; a high frequency controlled magnetics transformer for each phase of the multiphase high frequency AC input power, with each transformer having a primary winding coupled to its respective phase of the multiphase high frequency AC input power, at least one secondary winding that produces high frequency AC output power and at least one control winding responsive to a direct current (DC) control signal that changes the high frequency output power in proportion to the amplitude of the DC control signal; a power converter that receives the multiphase high frequency AC output power from each high frequency transformer secondary and converts it to system output power without the high frequency AC content; and a system controller responsive to the system output power that produces a DC control signal for each control winding that changes in amplitude in response to changes in a measured parameter of the system output power.
    • 电力转换系统包括:多相高频交流(AC)电输入电源; 用于多相高频AC输入功率的每相的高频控制磁变压器,每个变压器具有耦合到其相位相位的多相高频交流输入功率的初级绕组,至少一个次级绕组,其产生高频AC输出 功率和响应于与DC控制信号的幅度成比例地改变高频输出功率的直流(DC)控制信号的至少一个控制绕组; 电力转换器,其从每个高频变压器次级接收多相高频AC输出功率,并将其转换为系统输出功率而不具有高频AC含量; 以及响应于系统输出功率的系统控制器,其响应于系统输出功率的测量参数的变化而产生用于每个控制绕组的DC控制信号,所述控制绕组的幅度变化。
    • 8. 发明授权
    • Electric power generation and conversion with controlled magnetics
    • 发电和转换与控制磁力
    • US07885089B2
    • 2011-02-08
    • US12186737
    • 2008-08-06
    • Gregory I. RozmanJacek F. GierasAndreas C. Koenig
    • Gregory I. RozmanJacek F. GierasAndreas C. Koenig
    • H02M5/42
    • H02M7/066
    • A power conversion system comprises: a source of multiphase high frequency alternating current (AC) electrical input power; a high frequency controlled magnetics transformer for each phase of the multiphase high frequency AC input power, with each transformer having a primary winding coupled to its respective phase of the multiphase high frequency AC input power, at least one secondary winding that produces high frequency AC output power and at least one control winding responsive to a direct current (DC) control signal that changes the high frequency output power in proportion to the amplitude of the DC control signal; a power converter that receives the multiphase high frequency AC output power from each high frequency transformer secondary and converts it to system output power without the high frequency AC content; and a system controller responsive to the system output power that produces a DC control signal for each control winding that changes in amplitude in response to changes in a measured parameter of the system output power.
    • 电力转换系统包括:多相高频交流(AC)电输入电源; 用于多相高频AC输入功率的每相的高频控制磁变压器,每个变压器具有耦合到其相位相位的多相高频交流输入功率的初级绕组,至少一个次级绕组,其产生高频AC输出 功率和响应于与DC控制信号的幅度成比例地改变高频输出功率的直流(DC)控制信号的至少一个控制绕组; 电力转换器,其从每个高频变压器次级接收多相高频AC输出功率,并将其转换为系统输出功率而不具有高频AC含量; 以及响应于系统输出功率的系统控制器,其响应于系统输出功率的测量参数的变化而产生用于每个控制绕组的DC控制信号,所述控制绕组的幅度变化。