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    • 4. 发明申请
    • INPUT PARASITIC METAL DETECTION
    • 输入PARASITIC金属检测
    • US20110196544A1
    • 2011-08-11
    • US13022944
    • 2011-02-08
    • David W. BAARMANJoshua K. SCHWANNECKENeil W. KUYVENHOVENA. Esai UMENEIDale R. LIFFAndrew C. ZEIKMark A. BLAHAJason L. AMISTADIRobert D. GRUICH
    • David W. BAARMANJoshua K. SCHWANNECKENeil W. KUYVENHOVENA. Esai UMENEIDale R. LIFFAndrew C. ZEIKMark A. BLAHAJason L. AMISTADIRobert D. GRUICH
    • G06F1/28
    • H02J50/12G01R21/00G01V3/02H01F38/14H02J5/005H02J7/025H02J50/60
    • A system and method of controlling inductive power transfer in an inductive power transfer system and a method for designing an inductive power transfer system with power accounting. The method of controlling inductive power transfer including measuring a characteristic of input power, a characteristic of power in the tank circuit, and receiving information from a secondary device. Estimating power consumption based on the measured characteristic of tank circuit power and received information and comparing the measured characteristic of input power, the information from the secondary device, and the estimated power consumption to determine there is an unacceptable power loss. The method for designing an inductive power transfer system with power accounting including changing the distance between a primary side and a secondary side and changing a load of the secondary side. For each distance between the primary side and the secondary side and for each load, measuring a circuit parameter on the primary side in the tank circuit and a circuit parameter on the secondary side during the transfer of contactless energy. The method further including selecting a formula to describe power consumption in the system during the transfer of contactless energy based on coefficients and the circuit parameters, and determining the coefficients using the measured circuit parameters.
    • 一种在感应功率传输系统中控制感应功率传输的系统和方法以及用于设计具有功率计费的感应功率传输系统的方法。 控制感应功率传输的方法,包括测量输入功率的特性,储能电路中的功率特性,以及从辅助设备接收信息。 基于测量的电路功率特性和接收到的信息估计功耗,并比较输入功率的测量特性,来自次级设备的信息和估计的功耗,以确定存在不可接受的功率损耗。 用于设计具有功率计量的感应功率传输系统的方法,包括改变初级侧和次级侧之间的距离并改变次级侧的负载。 对于初级侧和次级侧之间以及每个负载的每个距离,在传递无接触能量期间,测量储能电路初级侧的电路参数和次级侧的电路参数。 该方法还包括在基于系数和电路参数的非接触能量传送期间选择公式来描述系统中的功率消耗,以及使用所测量的电路参数来确定系数。
    • 7. 发明授权
    • System and method for providing communications in a wireless power supply
    • 用于在无线电源中提供通信的系统和方法
    • US09106269B2
    • 2015-08-11
    • US13311730
    • 2011-12-06
    • Benjamin C. MoesJoseph S. Melton, Jr.Dale R. LiffAndrew C. Zeik
    • Benjamin C. MoesJoseph S. Melton, Jr.Dale R. LiffAndrew C. Zeik
    • H04B5/00
    • H04B5/0025H04B5/0031H04B5/0037
    • A wireless power transfer system with a remote device having a communication transmitter configured to initiate communications with a framing pulse to prevent noise from being mistaken for legitimate data. The communication system may employ a bi-phase modulation scheme, and the framing pulse may be generated to present no transitions in the communication signal during a specified period of time. The communication transmitter may produce the framing pulse by applying a load in the remote device. The present invention also provides a method for transmitting communication signals in a wireless power supply system including the general steps of: (a) preceding each communication with a framing pulse configured to present a bit sequence that does not exist in legitimate data communications, (b) maintaining the framing pulse for a period of time sufficient to effectively “reset” the communications receiver and (c) transmitting communications following the framing pulse.
    • 一种具有远程设备的无线电力传输系统,其具有通信发射机,该通信发射机被配置为发起与成帧脉冲的通信,以防止噪声被误认为合法数据。 通信系统可以采用双相调制方案,并且可以生成成帧脉冲,以在指定的时间段内不在通信信号中呈现转换。 通信发射机可以通过在远程设备中施加负载来产生成帧脉冲。 本发明还提供了一种用于在无线电源系统中发送通信信号的方法,包括以下步骤:(a)在构成为呈现在合法数据通信中不存在的比特序列的成帧脉冲之前的每个通信之前,(b )保持成帧脉冲一段时间足以有效地“复位”通信接收机,并且(c)在成帧脉冲之后发送通信。
    • 8. 发明授权
    • Input parasitic metal detection
    • 输入寄生金属检测
    • US08620484B2
    • 2013-12-31
    • US13022944
    • 2011-02-08
    • David W. BaarmanJoshua K. SchwanneckeNeil W. KuyvenhovenA. Esai UmeneiDale R. LiffAndrew C. ZeikMark A. BlahaJason L. AmistadiRobert D. Gruich
    • David W. BaarmanJoshua K. SchwanneckeNeil W. KuyvenhovenA. Esai UmeneiDale R. LiffAndrew C. ZeikMark A. BlahaJason L. AmistadiRobert D. Gruich
    • G06F19/00
    • H02J50/12G01R21/00G01V3/02H01F38/14H02J5/005H02J7/025H02J50/60
    • A system and method of controlling inductive power transfer in an inductive power transfer system and a method for designing an inductive power transfer system with power accounting. The method of controlling inductive power transfer including measuring a characteristic of input power, a characteristic of power in the tank circuit, and receiving information from a secondary device. Estimating power consumption based on the measured characteristic of tank circuit power and received information and comparing the measured characteristic of input power, the information from the secondary device, and the estimated power consumption to determine there is an unacceptable power loss. The method for designing an inductive power transfer system with power accounting including changing the distance between a primary side and a secondary side and changing a load of the secondary side. For each distance between the primary side and the secondary side and for each load, measuring a circuit parameter on the primary side in the tank circuit and a circuit parameter on the secondary side during the transfer of contactless energy. The method further including selecting a formula to describe power consumption in the system during the transfer of contactless energy based on coefficients and the circuit parameters, and determining the coefficients using the measured circuit parameters.
    • 一种在感应功率传输系统中控制感应功率传输的系统和方法以及用于设计具有功率计费的感应功率传输系统的方法。 控制感应功率传输的方法,包括测量输入功率的特性,储能电路中的功率特性,以及从辅助设备接收信息。 基于测量的电路功率特性和接收到的信息估计功耗,并比较输入功率的测量特性,来自辅助设备的信息和估计的功耗,以确定存在不可接受的功率损耗。 用于设计具有功率计量的感应功率传输系统的方法,包括改变初级侧和次级侧之间的距离并改变次级侧的负载。 对于初级侧和次级侧之间以及每个负载的每个距离,在传递无接触能量期间,测量储能电路初级侧的电路参数和次级侧的电路参数。 该方法还包括在基于系数和电路参数的非接触能量传送期间选择公式来描述系统中的功率消耗,以及使用所测量的电路参数来确定系数。
    • 9. 发明申请
    • SYSTEM AND METHOD FOR PROVIDING COMMUNICATIONS IN A WIRELESS POWER SUPPLY
    • 用于在无线电源中提供通信的系统和方法
    • US20120149303A1
    • 2012-06-14
    • US13311730
    • 2011-12-06
    • Benjamin C. MoesJoseph S. Melton, JR.Dale R. LiffAndrew C. Zeik
    • Benjamin C. MoesJoseph S. Melton, JR.Dale R. LiffAndrew C. Zeik
    • H04B5/00
    • H04B5/0025H04B5/0031H04B5/0037
    • A wireless power transfer system with a remote device having a communication transmitter configured to initiate communications with a framing pulse to prevent noise from being mistaken for legitimate data. The communication system may employ a bi-phase modulation scheme, and the framing pulse may be generated to present no transitions in the communication signal during a specified period of time. The communication transmitter may produce the framing pulse by applying a load in the remote device. The present invention also provides a method for transmitting communication signals in a wireless power supply system including the general steps of: (a) preceding each communication with a framing pulse configured to present a bit sequence that does not exist in legitimate data communications, (b) maintaining the framing pulse for a period of time sufficient to effectively “reset” the communications receiver and (c) transmitting communications following the framing pulse.
    • 一种具有远程设备的无线电力传输系统,其具有通信发射机,该通信发射机被配置为发起与成帧脉冲的通信,以防止噪声被误认为合法数据。 通信系统可以采用双相调制方案,并且可以生成成帧脉冲,以在指定的时间段内不在通信信号中呈现转换。 通信发射机可以通过在远程设备中施加负载来产生成帧脉冲。 本发明还提供了一种用于在无线电源系统中发送通信信号的方法,包括以下步骤:(a)在构成为呈现在合法数据通信中不存在的比特序列的成帧脉冲之前的每个通信之前,(b )保持成帧脉冲一段时间足以有效地“复位”通信接收机,并且(c)在成帧脉冲之后发送通信。