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    • 4. 发明申请
    • ELECTRO-HYDRODYNAMIC SYSTEM
    • 电动水力发电系统
    • US20130313942A1
    • 2013-11-28
    • US13948501
    • 2013-07-23
    • Accio Energy, Inc.
    • Dawn WhiteRandy Stevenson
    • H02N3/00
    • H02N3/00H02N1/00
    • An electro-hydrodynamic system including an energy harvester and an adjustable member, wherein the energy harvester includes a charge source including: an injector configured to emit particles into a wind stream and an electrode configured to charge the particles to a first polarity and to generate a first electric field. The adjustable member supports the energy harvester, and is configured to control a distance between electrical ground and at least one component of the energy harvester. A method for controlling the electric field magnitude of an electro-hydrodynamic system including placing an energy harvester comprising a charge source at a distance away from electrical ground, the distance being an equilibrium distance; receiving a first measurement of a parameter indicative of electric field magnitude near the charge source; and in response to the first measurement surpassing a threshold, increasing the distance between the energy harvester and electrical ground.
    • 一种包括能量收集器和可调节构件的电动液压系统,其中所述能量收集器包括电荷源,所述电荷源包括:配置成将颗粒发射到风流中的喷射器和被配置为将所述颗粒充电到第一极性并且产生 第一电场。 可调节构件支撑能量收集器,并且被配置为控制电接地与能量收集器的至少一个部件之间的距离。 一种用于控制电动液压系统的电场强度的方法,包括放置一个能量收集器,所述能量收集器包括距离电接地一定距离的电荷源,所述距离为平衡距离; 接收指示电荷源附近的电场强度的参数的第一测量值; 并且响应于超过阈值的第一测量,增加能量收集器和电气接地之间的距离。
    • 5. 发明授权
    • Electro-hydrodynamic system
    • 电液动力系统
    • US08502507B1
    • 2013-08-06
    • US13632974
    • 2012-10-01
    • Accio Energy, Inc.
    • Dawn WhiteRandy Stevenson
    • H02N3/00H02N1/00
    • H02N3/00H02N1/00
    • An electro-hydrodynamic system including an energy harvester and an adjustable member, wherein the energy harvester includes a charge source including: an injector configured to emit particles into a wind stream and an electrode configured to charge the particles to a first polarity and to generate a first electric field. The adjustable member supports the energy harvester, and is configured to control a distance between electrical ground and at least one component of the energy harvester. A method for controlling the electric field magnitude of an electro-hydrodynamic system including placing an energy harvester comprising a charge source at a distance away from electrical ground, the distance being an equilibrium distance; receiving a first measurement of a parameter indicative of electric field magnitude near the charge source; and in response to the first measurement surpassing a threshold, increasing the distance between the energy harvester and electrical ground.
    • 一种包括能量收集器和可调节构件的电动液压系统,其中所述能量收集器包括电荷源,所述电荷源包括:配置成将颗粒发射到风流中的喷射器和被配置为将所述颗粒充电到第一极性并且产生 第一电场。 可调节构件支撑能量收集器,并且被配置为控制电接地与能量收集器的至少一个部件之间的距离。 一种用于控制电动液压系统的电场强度的方法,包括放置一个能量收集器,所述能量收集器包括距离电接地一定距离的电荷源,所述距离为平衡距离; 接收指示电荷源附近的电场强度的参数的第一测量值; 并且响应于超过阈值的第一测量,增加能量收集器和电气接地之间的距离。