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    • 7. 发明申请
    • Wireless Powering Device, an Energiable Load, a Wireless System and a Method For a Wireless Energy Transfer
    • 无线供电装置,能量负载,无线系统和无线能量传输的方法
    • US20070222426A1
    • 2007-09-27
    • US11568473
    • 2005-04-28
    • Eberhard WaffenschmidtHarald ReiterCarsten DeppeGeorg SauerlanderBernd Ackermann
    • Eberhard WaffenschmidtHarald ReiterCarsten DeppeGeorg SauerlanderBernd Ackermann
    • H01F38/14
    • H01F38/14H02J5/005H02J7/025H02J50/12H02J50/80H02J50/90H02M3/337
    • A wireless resonant powering device 1 according to the invention comprises a first inductor winding 3, which is arranged to form a transformer 9 with the inductor winding 13 of the energizable load 11. The first inductor winding 3 is arranged to form a resonant circuit 5, which may comprise a suitable plurality of electric capacitances and coils. The components of the resonant circuit 5 are selected such that the magnetic energy received by the inductor winding 13 damps the energy flow in the resonant circuit so that the induced voltage in the inductor winding 13 is substantially constant and is independent of the magnetic coupling between the first inductor winding 3 and the inductor winding 13 at the operating frequency of the driving means 6. The resonant circuit is driven by the driving means 6, comprising a control unit 6c arranged to induce an alternating voltage between a first semiconductor switch 6a and a second semiconductor switch 6b. At the output of the transformer 9 an alternating voltage is generated, which is rectified to a DC-voltage by a diode rectifier, filtered by an output capacitance. The resonant circuit 5 is operable on its coupling independent point by the driving means 6. This figure schematically illustrates a situation, where a variable coupling between the first inductor winding 3 and the inductor winding 13 exists. The invention further relates to a wireless inductive powering device, an energizable load, a wireless system and a method for wireless power transfer.
    • 根据本发明的无线谐振供电装置1包括第一电感器绕组3,其被布置成与可激励负载11的电感器绕组13形成变压器9。 第一电感器绕组3被布置成形成谐振电路5,其可以包括适当的多个电容和线圈。 谐振电路5的组件被选择成使得由电感器绕组13接收的磁能阻止谐振电路中的能量流,使得电感器绕组13中的感应电压基本上是恒定的,并且独立于 第一电感绕组3和电感绕组13处于驱动装置6的工作频率。 谐振电路由驱动装置6驱动,包括布置成在第一半导体开关6a和第二半导体开关6b之间引起交流电压的控制单元6c。 在变压器9的输出端产生交流电压,其由二极管整流器整流为直流电压,由输出电容滤波。 谐振电路5可通过驱动装置6在其耦合独立点上操作。 该图示意性地示出了存在第一电感器绕组3和电感器绕组13之间的可变耦合的情况。 本发明还涉及无线感应供电装置,可激励负载,无线系统和无线电力传送方法。
    • 10. 发明申请
    • Method , a system and a generator of a script for routing a script-oriented dialog between an operator of a call center and a customer
    • 用于在呼叫中心的运营商和客户之间路由面向脚本的对话的脚本的方法,系统和生成器
    • US20060095273A1
    • 2006-05-04
    • US10548255
    • 2004-03-02
    • Andras MontvayJens MuhlsteffHarald ReiterRalf SchmidtOlaf SuchJosef Lauter
    • Andras MontvayJens MuhlsteffHarald ReiterRalf SchmidtOlaf SuchJosef Lauter
    • G06Q99/00H04L9/00
    • H04M3/527G06Q50/188H04M3/36H04M3/493H04M3/523
    • A system (6) arranged to route a dialog between an operator of a call center and a customer. Said system comprising a communication script (44) arranged to follow a scenario corresponding to a customer's case by means of presenting a plurality of messages to the operator. Said system further comprising means (3,7) for determining a type of the scenario, means (11) for determining a current state of the scenario and a generator (9) of the communication script (44). Said generator being arranged to select a plurality of messages (44a, 44b, 44c) from a database of messages (10) in compliance with said type and said current state in order to obtain a plurality of selected messages. Ranking means (14b) are arranged to rank the selected messages, wherein the message with a higher relevance to the current state of the scenario being ranked higher. A user interface (8) arranged to present the selected messages together with their rank (46a, 46b, 46c) to the operator in a list (18).
    • 布置成在呼叫中心的运营商和客户之间路由对话的系统(6)。 所述系统包括通信脚本(44),该通信脚本(44)通过向操作员呈现多个消息而被配置为跟随与客户的情况相对应的情景。 所述系统还包括用于确定场景类型的装置(3,7),用于确定场景的当前状态的装置(11)和通信脚本(44)的发生器(9)。 所述发生器被布置为从符合所述类型和所述当前状态的消息(10)的数据库中选择多个消息(44a,44b,44c),以便获得多个选择的消息。 排列方式(14b)被布置为对所选择的消息进行排名,其中与场景的当前状态更高相关性的消息被排序较高。 一种用户界面(8),被布置成将所选择的消息与其等级(46a,46b,46c)一起呈现给列表(18)中的操作者。