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    • 4. 发明申请
    • HIGH VOLTAGE GENERATION SYSTEMS AND METHODS
    • 高压发电系统及方法
    • US20090213625A1
    • 2009-08-27
    • US12436018
    • 2009-05-05
    • Richard J. Adler
    • Richard J. Adler
    • H02M7/06
    • H02M7/10
    • Systems and methods presented herein generally provide for the controlled voltage of bipolar electrical energy through the selected operation of power stages. In one embodiment, a system that provides electrical energy includes a power supply and at least two power stages coupled to the power supply. The power stages are operable to selectively output electrical energy. By selecting the number of power stages which are turned on at a given time the total voltage of the electrical energy is controlled at that time. The system may further include one or more controllers coupled to the power stages to control selection of the power stages and thereby vary the output voltage.
    • 本文提出的系统和方法通常通过功率级的所选操作来提供双极电能的受控电压。 在一个实施例中,提供电能的系统包括电源和耦合到电源的至少两个功率级。 功率级可操作以选择性地输出电能。 通过选择在给定时间接通的功率级的数量,此时控制电能的总电压。 该系统还可以包括耦合到功率级的一个或多个控制器,以控制功率级的选择,从而改变输出电压。
    • 5. 发明授权
    • Electrical energy discharge control
    • US07465900B2
    • 2008-12-16
    • US11780245
    • 2007-07-19
    • Richard J. Adler
    • Richard J. Adler
    • B23H1/02
    • H02J50/00H02J5/005
    • Systems and methods presented herein provide for the control of electrical energy discharge from an electrode. In this regard, a sensor detects electrical energy discharged from the electrode and generates an electronic signal representative of a detected electrical energy discharge. Such a sensor may detect an electric field and/or light from the electrical energy discharge. The sensor may generate the electronic signal therefrom for subsequent processing. Accordingly, the system also includes a controller communicatively coupled to the sensor to determine a spurious discharge of the electrical energy discharge from the electrode. The controller processes the electronic signal to control at least one characteristic (e.g., voltage) of the electrical energy provided to the electrode. The controller may change a voltage of the electrical energy to the electrode in response to determining a spurious discharge of the electrical energy discharged from the electrode.
    • 7. 发明授权
    • Autogenerator of beams of charged particles
    • 带电粒子束的自动发电机
    • US4583025A
    • 1986-04-15
    • US547279
    • 1983-10-31
    • Richard J. AdlerMichael G. MazarakisRobert B. MillerSteven L. ShopeDavid L. Smith
    • Richard J. AdlerMichael G. MazarakisRobert B. MillerSteven L. ShopeDavid L. Smith
    • H01J25/02H05H7/18H01J25/00
    • H05H7/18H01J25/02
    • An autogenerating apparatus provides secondary intense relativistic current beam pulses in response to an injected beam pulse. One or more electromagnetic energy storage devices are provided in conjunction with gaps along a beam propagation path for the injected beam pulse. For injected beam pulses which are no longer than double the transit time of electromagnetic waves within the storage devices (which may be resonant cavities), distinct secondary beam pulses are generated by each of the energy storage devices. The beam propagation path, together with the one or more gaps provided therein, operates as a pulse forming transmission line cavity, in which the separate cavities associated with the gaps provide delays for electromagnetic waves generated at the gaps. After doubly traversing the cavity, the electromagnetic waves cause the gap to generate the secondary beam pulses, which are thus delayed by a time interval equal to the double transit time for the induced wave within the cavity.
    • 自动生成装置响应于注入的束脉冲提供二次强相对论电流束脉冲。 一个或多个电磁能量存储装置与用于注入的束脉冲的光束传播路径的间隙一起提供。 对于不超过存储装置(其可以是谐振腔)内的电磁波的传播时间的两倍的注入光束脉冲,由每个能量存储装置产生不同的次光束脉冲。 光束传播路径与其中提供的一个或多个间隙一起作为脉冲形成传输线腔进行操作,其中与间隙相关联的分离的空腔为在间隙处产生的电磁波提供延迟。 在双向穿过腔体之后,电磁波使间隙产生次级束脉冲,因此延迟等于空腔内感应波的双通道时间的时间间隔。
    • 8. 发明申请
    • Systems and Methods for Dicharging Electrical Energy
    • 减少电能的系统和方法
    • US20140245916A1
    • 2014-09-04
    • US13065350
    • 2011-05-06
    • Richard J. AdlerVernon Michael WeeksMichael Knight WileyClinton Scott Caldwell
    • Richard J. AdlerVernon Michael WeeksMichael Knight WileyClinton Scott Caldwell
    • F42D1/045F41H11/16
    • F41H11/32
    • Systems and methods presented herein provide for igniting or disabling explosive devices through the generation of strong electrical fields and/or the discharge of electrical energy. In one embodiment, a remotely controlled vehicle is provided to remotely detonate or disable improvised explosive devices. The vehicle may contain a high-voltage power supply powering a Tesla coil. The secondary coil of the Tesla coil is attached to an electrode that is swept across an area where an explosive device may be present. The strong electric field around the electrode may induce current within an explosive device or wires connected thereto resulting in the explosive device being ignited or disabled. Discharges from the electrode may directly ignite explosive material or disable detonation control circuitry. The electrode may be located distal to the vehicle and the vehicle itself may be hardened to enhance survivability in the event of an explosion in proximity to the electrode.
    • 本文提出的系统和方法通过产生强电场和/或电能的释放来点燃或禁用爆炸装置。 在一个实施例中,提供遥控车辆以远程引爆或禁用简易爆炸装置。 车辆可以包含用于特斯拉线圈的高压电源。 特斯拉线圈的次级线圈连接到横跨可能存在爆炸装置的区域扫过的电极。 电极周围的强电场可能引起爆炸装置内的电流或连接在其上的电线,导致爆炸装置被点燃或禁用。 电极放电可能直接点燃爆炸物质或禁止爆震控制电路。 电极可以位于车辆的远侧,并且车辆本身可以被硬化以增强在电极附近发生爆炸的情况下的生存性。
    • 9. 发明申请
    • DISABLING A TARGET USING ELECTRICAL ENERGY
    • 使用电能消除目标
    • US20110299216A1
    • 2011-12-08
    • US13211819
    • 2011-08-17
    • Richard J. Adler
    • Richard J. Adler
    • H01T23/00
    • F41H13/0043F41H13/0012
    • One system described herein provides electrical energy by means of a Tesla coil that generates a strong electric field in the vicinity of an electrical target. An energy booster provides additional electrical energy to increase the probability of disabling and/or disrupting the electrical target. For example, an electrode may be configured with the Tesla coil to from the electric field of the electrical target. The electric field may cause a breakdown in the air about the Tesla coil that allows electric current to conduct to the electrical target. The Tesla coil may repetitively burst the electric field such that pulses of electric current are conducted to the electrical target.
    • 本文所述的一个系统通过在电对象附近产生强电场的特斯拉线圈来提供电能。 能量助力器提供额外的电能,以增加禁用和/或扰乱电气目标的可能性。 例如,电极可以配置有特斯拉线圈以从电目标的电场。 电场可能导致特斯拉线圈周围的空气破坏,允许电流传导到电气目标。 特斯拉线圈可以重复地突发电场,使得电流脉冲传导到电气目标。
    • 10. 发明授权
    • High voltage generation systems and methods
    • 高压发电系统及方法
    • US07394226B1
    • 2008-07-01
    • US11345857
    • 2006-02-01
    • Richard J. Adler
    • Richard J. Adler
    • H02H7/06
    • H02M7/25H02M2001/0077
    • Systems and methods presented herein generally provide for the controlled voltage of electrical energy through the selected operation of power stages. Generally, a system that provides electrical energy includes a power supply and up to 20 power stages coupled to the power supply such that the system may output up to 72 kV in 3.6 kV increments. By selecting the number of power stages which are turned on at a given time the total voltage of the electrical energy is controlled at that time. The use of air core magnetic flux coupling provides a unique, easily insulated method to provide power to the voltage stages at different potentials relative to each other. The system may further include one or more controllers coupled to the power stages to control selection of the power stages and thereby vary the output voltage.
    • 本文提出的系统和方法通常通过功率级的所选择的操作来提供电能的受控电压。 通常,提供电能的系统包括电源和与电源耦合的多达20个功率级,使得系统可以以3.6kV增量输出高达72kV。 通过选择在给定时间接通的功率级的数量,此时控制电能的总电压。 空芯磁通耦合的使用提供了一种独特的,易于绝缘的方法,以相对于彼此的不同电位向电压级提供电力。 该系统还可以包括耦合到功率级的一个或多个控制器,以控制功率级的选择,从而改变输出电压。