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    • 2. 发明授权
    • System with flicker control and method of reducing flicker generated by a system
    • 具有闪烁控制的系统和减少系统产生闪烁的方法
    • US08119952B2
    • 2012-02-21
    • US12357770
    • 2009-01-22
    • Tim PalmerPaul WinterBrendan RonayneMatthew Charles Bradley Lumb
    • Tim PalmerPaul WinterBrendan RonayneMatthew Charles Bradley Lumb
    • H05B1/02
    • H02J3/14F24H9/2028Y02B70/3225Y02B70/3275Y04S20/222Y04S20/244
    • A system is disclosed that is designed to be connected to an electrical power supply. The system comprises a plurality of electric load component comprising stages for cooperatively producing an output (Tout), each stage in a first subset of the stages comprising at least one electrical load component having a first load and each stage in a second subset of the stages comprising at least one electrical load component having a second load, the first load being larger than the second load. The system has a controller for controlling the electrical load components. The controller is designed to estimate voltage variations on the electrical power supply from the switching frequencies of the respective electrical load components during a predefined time frame. The controller further implements an algorithm for adjusting the switching frequencies of the electrical load components having the first load and the electrical load components having the second load in response to the estimation to reduce the voltage variations on the electrical power supply during a next time frame whilst ensuring that the plurality of stages are capable of producing the output (Tout) during the next time frame. The system thus ensures that the amount of flicker generated by the system remains within acceptable limits.
    • 公开了被设计为连接到电源的系统。 所述系统包括多个电负载部件,其包括用于协同产生输出(Tout)的级,所述级的第一子集中的每个级包括至少一个电负载部件,所述至少一个电负载部件具有第一负载,并且所述级的第二子集中的每个级 包括具有第二负载的至少一个电负载部件,所述第一负载大于所述第二负载。 该系统具有用于控制电气负载组件的控制器。 控制器被设计成在预定义的时间范围内从相应的电负载组件的开关频率估计电力供应的电压变化。 控制器进一步实施一种算法,用于响应于估计来调整具有第一负载的电负载组件和具有第二负载的电负载组件的开关频率,以减少在下一时间帧期间电力供应的电压变化,同时 确保多个级能够在下一时间段内产生输出(Tout)。 因此,系统确保系统产生的闪烁量保持在可接受的限度内。
    • 4. 发明申请
    • System with flicker control and method of reducing flicker generated by a system
    • 具有闪烁控制的系统和减少系统产生闪烁的方法
    • US20090189544A1
    • 2009-07-30
    • US12357770
    • 2009-01-22
    • Tim PalmerPaul WinterBrendan RonayneMatthew Charles Bradley Lumb
    • Tim PalmerPaul WinterBrendan RonayneMatthew Charles Bradley Lumb
    • H05B37/02
    • H02J3/14F24H9/2028Y02B70/3225Y02B70/3275Y04S20/222Y04S20/244
    • A system is disclosed that is designed to be connected to an electrical power supply. The system comprises a plurality of electric load component comprising stages for cooperatively producing an output (Tout), each stage in a first subset of the stages comprising at least one electrical load component having a first load and each stage in a second subset of the stages comprising at least one electrical load component having a second load, the first load being larger than the second load. The system has a controller for controlling the electrical load components. The controller is designed to estimate voltage variations on the electrical power supply from the switching frequencies of the respective electrical load components during a predefined time frame. The controller further implements an algorithm for adjusting the switching frequencies of the electrical load components having the first load and the electrical load components having the second load in response to the estimation to reduce the voltage variations on the electrical power supply during a next time frame whilst ensuring that the plurality of stages are capable of producing the output (Tout) during the next time frame. The system thus ensures that the amount of flicker generated by the system remains within acceptable limits.
    • 公开了被设计为连接到电源的系统。 所述系统包括多个电负载部件,其包括用于协同产生输出(Tout)的级,所述级的第一子集中的每个级包括至少一个电负载部件,所述至少一个电负载部件具有第一负载,并且所述级的第二子集中的每个级 包括具有第二负载的至少一个电负载部件,所述第一负载大于所述第二负载。 该系统具有用于控制电气负载组件的控制器。 控制器被设计成在预定义的时间范围内从相应的电负载组件的开关频率估计电力供应的电压变化。 控制器进一步实施一种算法,用于响应于估计来调整具有第一负载的电负载组件和具有第二负载的电负载组件的开关频率,以减少在下一时间帧期间电力供应的电压变化,同时 确保多个级能够在下一时间段内产生输出(Tout)。 因此,系统确保系统产生的闪烁量保持在可接受的限度内。