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    • 2. 发明申请
    • Method and Apparatus for Calculating the Separation Time of Arcing Contacts of a High-Volume Switchgear
    • 用于计算大容量开关柜的电弧触点分离时间的方法和装置
    • US20080294353A1
    • 2008-11-27
    • US12122860
    • 2008-05-19
    • Anton PoeltlMichael Mendik
    • Anton PoeltlMichael Mendik
    • G06F19/00
    • H01H33/593
    • A method and an apparatus for calculating the separation time of the arcing contacts of a high-voltage switchgear which is operatively coupled to a synchronous switching device and to an auxiliary switch having auxiliary contacts operatively connected to the arcing contacts. During execution of a predefined test condition the separation time of the arcing contacts and of the auxiliary contacts is measured. The time delay between the measured separation time of the arcing contacts and of the auxiliary contacts is calculated. Upon separation of the arcing contacts under an operating condition other than the predefined test condition, the separation time of the auxiliary contacts is measured. Then, the separation time of the arcing contacts is calculated as the difference between the separation time of the auxiliary contacts measured during the operating condition other than the predefined test condition and the calculated time delay.
    • 一种用于计算可操作地耦合到同步开关装置的高压开关装置的电弧触头和具有可操作地连接到电弧触点的辅助触点的辅助开关的分离时间的方法和装置。 在执行预定义的测试条件期间,测量电弧触点和辅助触点的分离时间。 计算电弧触点和辅助触点的测量分离时间之间的时间延迟。 在除了预定的测试条件之外的操作条件下分离电弧触点时,测量辅助触点的分离时间。 然后,将电弧触点的分离时间计算为在预定的测试条件之外的操作条件期间测量的辅助触点的分离时间与所计算的时间延迟之间的差。
    • 4. 发明授权
    • Method and apparatus for optimizing synchronous switching operations in power systems
    • 用于优化电力系统中同步开关操作的方法和装置
    • US08084891B2
    • 2011-12-27
    • US12209388
    • 2008-09-12
    • Anton PoeltlMichael Mendik
    • Anton PoeltlMichael Mendik
    • H01H47/00H01H83/00
    • H01H9/563H03K17/133Y10T307/826
    • A method and an apparatus for optimizing switching operations executed by a switching device coupled to an AC power line, wherein signals related to the waveform of the electrical phases of the power line are acquired. When a command for executing a switching operation on one of the electrical phases is issued, the signals acquired are stored. Based on the signals stored, data indicative of the severity of switching transients occurred during the executed switching operation and second data indicative of the time occurred for the executed switching operation are calculated and correlated to each other. Based on the data calculated, it is determined whether a parameter representative of a target point on the waveform for executing future switching operations substantially synchronous with the waveform has to be adjusted.
    • 一种用于优化由耦合到AC电力线的开关装置执行的开关操作的方法和装置,其中获取与电力线的电相的波形相关的信号。 当发出用于在其中一个电相上执行切换操作的命令时,存储获取的信号。 基于存储的信号,计算表示在执行的切换操作期间发生的切换瞬变的严重性的数据和指示执行的切换操作所发生的时间的第二数据并彼此相关。 基于所计算的数据,确定是否必须调整表示用于执行与波形基本同步的未来切换操作的波形上的目标点的参数。
    • 5. 发明授权
    • Method and apparatus for communicating with an intelligent electronic device associated to a switching device in power systems
    • 与与电力系统中的开关装置相关联的智能电子设备通信的方法和装置
    • US08082500B2
    • 2011-12-20
    • US12192413
    • 2008-08-15
    • Michael MendikAnton Poeltl
    • Michael MendikAnton Poeltl
    • G06F15/00G06F13/00
    • G06F3/04847
    • A method and apparatus for communicating with an intelligent electronic device coupled to a switching device used in a power system, wherein a user-interface software program operates on a computing device which is operatively connected to the intelligent electronic device. The user-interface software program when executed by the processor of the computing device provides a plurality of wizards selectable by a user. Upon selecting a wizard to be executed, the user-interface software program causes the display on a monitor of a first window displaying wizard controls for guiding a user in the execution of one or more steps related to the selected wizard, and a second window separate from the first window displaying information related to the step under execution.
    • 一种与耦合到电力系统中使用的开关装置的智能电子设备进行通信的方法和装置,其中用户接口软件程序对可操作地连接到智能电子设备的计算设备进行操作。 当由计算设备的处理器执行时,用户界面软件程序提供由用户选择的多个向导。 在选择要执行的向导时,用户界面软件程序使显示器在第一窗口显示向导控件上引导用户执行与所选择的向导相关的一个或多个步骤,并且将第二窗口分开 从第一窗口显示与正在执行的步骤相关的信息。
    • 6. 发明申请
    • Method and Apparatus for Communicating with an Intelligent Electronic Device Associated to a Switching Device in Power Systems
    • 用于与电力系统中的开关装置相关联的智能电子装置通信的方法和装置
    • US20090055740A1
    • 2009-02-26
    • US12192413
    • 2008-08-15
    • Michael MendikAnton Poeltl
    • Michael MendikAnton Poeltl
    • G06F3/048
    • G06F3/04847
    • A method and apparatus for communicating with an intelligent electronic device coupled to a switching device used in a power system, wherein a user-interface software program operates on a computing device which is operatively connected to the intelligent electronic device. The user-interface software program when executed by the processor of the computing device provides a plurality of wizards selectable by a user. Upon selecting a wizard to be executed, the user-interface software program causes the display on a monitor of a first window displaying wizard controls for guiding a user in the execution of one or more steps related to the selected wizard, and a second window separate from the first window displaying information related to the step under execution.
    • 一种与耦合到电力系统中使用的开关装置的智能电子设备进行通信的方法和装置,其中用户接口软件程序对可操作地连接到智能电子设备的计算设备进行操作。 当由计算设备的处理器执行时,用户界面软件程序提供由用户选择的多个向导。 在选择要执行的向导时,用户界面软件程序使显示器在第一窗口显示向导控件上引导用户执行与所选择的向导相关的一个或多个步骤,并且将第二窗口分开 从第一窗口显示与正在执行的步骤相关的信息。
    • 8. 发明授权
    • Method and apparatus for calculating the separation time of arcing contacts of a high-volume switchgear
    • 用于计算大容量开关装置的电弧触点的分离时间的方法和装置
    • US07904266B2
    • 2011-03-08
    • US12122860
    • 2008-05-19
    • Michael MendikAnton Poeltl
    • Michael MendikAnton Poeltl
    • G01R29/02H02B11/00
    • H01H33/593
    • A method and an apparatus for calculating the separation time of the arcing contacts of a high-voltage switchgear which is operatively coupled to a synchronous switching device and to an auxiliary switch having auxiliary contacts operatively connected to the arcing contacts. During execution of a predefined test condition the separation time of the arcing contacts and of the auxiliary contacts is measured. The time delay between the measured separation time of the arcing contacts and of the auxiliary contacts is calculated. Upon separation of the arcing contacts under an operating condition other than the predefined test condition, the separation time of the auxiliary contacts is measured. Then, the separation time of the arcing contacts is calculated as the difference between the separation time of the auxiliary contacts measured during the operating condition other than the predefined test condition and the calculated time delay.
    • 一种用于计算可操作地耦合到同步开关装置的高压开关装置的电弧触点的分离时间和具有可操作地连接到电弧触点的辅助触点的辅助开关的方法和装置。 在执行预定义的测试条件期间,测量电弧触点和辅助触点的分离时间。 计算电弧触点和辅助触点的测量分离时间之间的时间延迟。 在除了预定的测试条件之外的操作条件下分离电弧触点时,测量辅助触点的分离时间。 然后,将电弧触点的分离时间计算为在预定的测试条件之外的操作条件期间测量的辅助触点的分离时间与所计算的时间延迟之间的差。
    • 9. 发明申请
    • Method and Apparatus for Optimizing Synchronous Switching Operations in Power Systems
    • 用于优化电力系统中同步开关操作的方法和装置
    • US20090073627A1
    • 2009-03-19
    • US12209388
    • 2008-09-12
    • Anton PoeltlMichael Mendik
    • Anton PoeltlMichael Mendik
    • H01H47/32
    • H01H9/563H03K17/133Y10T307/826
    • A method and an apparatus for optimizing switching operations executed by a switching device coupled to an AC power line, wherein signals related to the waveform of the electrical phases of the power line are acquired. When a command for executing a switching operation on one of the electrical phases is issued, the signals acquired are stored. Based on the signals stored, data indicative of the severity of switching transients occurred during the executed switching operation and second data indicative of the time occurred for the executed switching operation are calculated and correlated to each other. Based on the data calculated, it is determined whether a parameter representative of a target point on the waveform for executing future switching operations substantially synchronous with the waveform has to be adjusted.
    • 一种用于优化由耦合到AC电力线的开关装置执行的开关操作的方法和装置,其中获取与电力线的电相的波形相关的信号。 当发出用于在其中一个电相上执行切换操作的命令时,存储获取的信号。 基于存储的信号,计算表示在执行的切换操作期间发生的切换瞬变的严重性的数据和指示执行的切换操作所发生的时间的第二数据并彼此相关。 基于所计算的数据,确定是否必须调整表示用于执行与波形基本同步的未来切换操作的波形上的目标点的参数。
    • 10. 发明授权
    • Pipeline section of a gas-insulated pipeline
    • 气体绝缘管道的管道段
    • US06198039B1
    • 2001-03-06
    • US09311645
    • 1999-05-14
    • Michael MendikBodo BruhlThomas Worzyk
    • Michael MendikBodo BruhlThomas Worzyk
    • H02G506
    • H02G5/066
    • The pipeline section of the gas-insulated pipeline has an insulating gas-filled encapsulation including a polymer pipe. A current conductor is arranged inside the capsule pipe and extends parallel to the latter's axis and is supplied with a high voltage. This current conductor is retained by insulators that rest on the inside surface of the capsule pipe. At least one of a plurality of post insulators has a support ring resting on the mantle surface of the current conductor. At least three evenly distributed and hollow support elements are molded peripherally in a star shape on the support ring, each of which has transversely to a longitudinal axis a profile that is constructed in the shape of an arch or trapezoid. The support elements each have a shell-shaped foot. Each shell-shaped foot has a thickness (d) which is smaller than a distance (a) between the current conductor and the inside surface of the capsule pipe and smaller than a length (l) in an axial direction of the capsule pipe. At least two of the feet rest on the inside surface of the capsule pipe. This keeps the electric field strength in the gaps between the post insulators and the inside surface of the polymer capsule pipe at a minimum and thus optimizes the di-electric stability of the pipeline section.
    • 气体绝缘管道的管道部分具有​​包括聚合物管的绝缘充气封装。 电流导体布置在胶囊管内并且平行于后者的轴线延伸并被提供高电压。 该电流导体由位于胶囊管内表面的绝缘体保持。 多个柱绝缘体中的至少一个具有搁置在电流导体的外罩表面上的支撑环。 至少三个均匀分布和中空的支撑元件在支撑环周围模制成星形,每个支撑元件横向于纵向轴线,其轮廓被构造成拱形或梯形的形状。 支撑元件各自具有壳形脚。 每个壳形脚的厚度(d)小于胶囊管的电流导体和内表面之间的距离(a),并且小于胶囊管的轴向长度(l)。 至少两个脚搁置在胶囊管的内表面上。 这使得后绝缘体与聚合物胶囊管的内表面之间的间隙的电场强度最小化,从而优化了管道部分的二电稳定性。