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    • 1. 发明授权
    • System and method for electrically-coupled thermal cycle
    • 电耦合热循环的系统和方法
    • US08196402B2
    • 2012-06-12
    • US12692432
    • 2010-01-22
    • Jonathan R. Wood
    • Jonathan R. Wood
    • F01B29/10F02B71/00
    • F02G1/045F02G1/0435F02G2280/10H02K7/1884H02K7/1892Y02E20/14
    • In one embodiment according to the invention, there is provided a method for generating electrical energy using a thermal cycle of a working gas. The method comprises using the motion of a piston in a cylinder, containing the working gas performing the thermal cycle, to electromagnetically induce current in an electrical circuit coupled to the cylinder; using the electrical circuit to store the electrical energy, produced by the current induced in the electrical circuit, in an electrical storage device; and using the electrical energy stored in the electrical storage device to electromagnetically provide a motive force to the piston. Cyclically using the electrical circuit to store the electrical energy and using the stored energy to provide a motive force to the piston effect a net positive average power transfer into the electrical storage device over the course of the thermal cycle.
    • 在根据本发明的一个实施例中,提供了一种使用工作气体的热循环产生电能的方法。 该方法包括使用包含执行热循环的工作气体的气缸中的活塞的运动,以电磁感应耦合到气缸的电路中的电流; 使用电路将由电路中感应的电流产生的电能存储在电存储装置中; 并且使用存储在蓄电装置中的电能向活塞电磁地提供动力。 循环使用电路来存储电能并使用存储的能量来向活塞提供动力,在热循环过程中实现净平均功率传递到电存储装置中。
    • 2. 发明申请
    • SYSTEM AND METHOD FOR ELECTRICALLY-COUPLED HEAT ENGINE AND THERMAL CYCLE
    • 电连接热发动机和热循环的系统和方法
    • US20110174271A1
    • 2011-07-21
    • US13009252
    • 2011-01-19
    • Jonathan R. Wood
    • Jonathan R. Wood
    • H02K7/18F02B71/04
    • F02B71/04F02B63/04F02B63/041F02D29/06F02D39/10F02G1/0435F02G2280/10H02K7/18Y02T10/16
    • In accordance with an embodiment of the invention, there is provided a device for generating electrical energy using a thermal cycle of a working gas. The device comprises at least one piston movably mounted in a container to form a working chamber between the at least one piston and the container, the working chamber containing the working gas performing the thermal cycle. An electrical circuit is mounted stationary relative to the container, the electrical circuit being electromagnetically coupled to provide a motive force to the at least one piston. An electronic power converter is electrically connected to the electrical circuit and to an electrical bus, and an electrical storage device is electrically connected to the electrical bus. The at least one piston is movably mounted such that its motion electromagnetically induces current in the electrical circuit. An electronic controller is electronically connected to the electronic power converter to control motion of the at least one piston to perform, in the thermal cycle, at least one of: (i) expanding the working gas beyond the volume at which compression of the working gas is begun within the thermal cycle or (ii) exhausting the working gas to a remaining volume less than the smallest volume of compressed gas within the thermal cycle. The electronic controller further controls flow of electrical energy to and from the electrical bus to effect a net positive average power transfer from the working gas to the electrical bus over the course of the thermal cycle.
    • 根据本发明的实施例,提供了一种使用工作气体的热循环产生电能的装置。 该装置包括可活动地安装在容器中的至少一个活塞,以在至少一个活塞和容器之间形成工作室,该工作室包含执行热循环的工作气体。 电路相对于容器固定地安装,电路被电磁耦合以向至少一个活塞提供动力。 电子功率转换器电连接到电路和电气总线,并且电存储设备电连接到电气总线。 至少一个活塞可移动地安装成使得其运动电磁感应在电路中的电流。 电子控制器电连接到电子功率转换器以控制至少一个活塞的运动,以在热循环中执行下列至少之一中的至少一个:(i)将工作气体膨胀超过工作气体的压缩量 在热循环中开始,或(ii)将工作气体排出到小于热循环内的最小压缩气体体积的剩余体积。 电子控制器进一步控制往返于电气总线的电能的流动,以在热循环过程中实现从工作气体到电气总线的净正平均功率传递。
    • 4. 发明授权
    • System and method for electrically-coupled thermal cycle
    • 电耦合热循环的系统和方法
    • US07690199B2
    • 2010-04-06
    • US11338421
    • 2006-01-24
    • Jonathan R. Wood
    • Jonathan R. Wood
    • F01B29/10
    • F02G1/045F02G1/0435F02G2280/10H02K7/1884H02K7/1892Y02E20/14
    • In one embodiment according to the invention, there is provided a method for generating electrical energy using a thermal cycle of a working gas. The method comprises using the motion of a piston in a cylinder, containing the working gas performing the thermal cycle, to electromagnetically induce current in an electrical circuit coupled to the cylinder; using the electrical circuit to store the electrical energy, produced by the current induced in the electrical circuit, in an electrical storage device; and using the electrical energy stored in the electrical storage device to electromagnetically provide a motive force to the piston. Cyclically using the electrical circuit to store the electrical energy and using the stored energy to provide a motive force to the piston effect a net positive average power transfer into the electrical storage device over the course of the thermal cycle.
    • 在根据本发明的一个实施例中,提供了一种使用工作气体的热循环产生电能的方法。 该方法包括使用包含执行热循环的工作气体的气缸中的活塞的运动,以电磁感应耦合到气缸的电路中的电流; 使用电路将由电路中感应的电流产生的电能存储在电存储装置中; 并且使用存储在蓄电装置中的电能向活塞电磁地提供动力。 循环使用电路来存储电能并使用存储的能量来向活塞提供动力,在热循环过程中实现净平均功率传递到电存储装置中。
    • 5. 发明授权
    • Circuit for use in a DC-DC converter having a booster module
    • 用于具有升压模块的DC-DC转换器的电路
    • US5838557A
    • 1998-11-17
    • US901191
    • 1997-07-28
    • Jonathan R. Wood
    • Jonathan R. Wood
    • H02M3/156H02M3/16
    • H02M3/156
    • The present invention includes a circuit for use with a booster module of a DC-DC converter that typically includes both a driver module and one or more booster modules. The present invention includes associated feedback control circuitry that allows the booster module to operate in the manner of a driver module. In a preferred embodiment, the feedback control circuitry contains a voltage reference device, a differential amplifier, and an optocoupler. In this preferred embodiment, the photodiode portion of the optocoupler electrically connects to an output circuit for the booster module, and the phototransistor portion of the optocoupler connects to an input circuit for the booster module.
    • 本发明包括与DC-DC转换器的升压模块一起使用的电路,其典型地包括驱动器模块和一个或多个升压模块。 本发明包括相关联的反馈控制电路,其允许升压模块以驱动器模块的方式工作。 在优选实施例中,反馈控制电路包含电压参考装置,差分放大器和光耦合器。 在该优选实施例中,光耦合器的光电二极管部分电连接到用于升压模块的输出电路,光耦合器的光电晶体管部分连接到用于升压模块的输入电路。
    • 6. 发明授权
    • System and method for electrically-coupled thermal cycle
    • 电耦合热循环的系统和方法
    • US08720198B2
    • 2014-05-13
    • US12692440
    • 2010-01-22
    • Jonathan R. Wood
    • Jonathan R. Wood
    • F01B29/10F25B13/00
    • F02G1/045F02G1/0435F02G2280/10H02K7/1884H02K7/1892Y02E20/14
    • In one embodiment according to the invention, there is provided a method for generating electrical energy using a thermal cycle of a working gas. The method comprises using the motion of a piston in a cylinder, containing the working gas performing the thermal cycle, to electromagnetically induce current in an electrical circuit coupled to the cylinder; using the electrical circuit to store the electrical energy, produced by the current induced in the electrical circuit, in an electrical storage device; and using the electrical energy stored in the electrical storage device to electromagnetically provide a motive force to the piston. Cyclically using the electrical circuit to store the electrical energy and using the stored energy to provide a motive force to the piston effect a net positive average power transfer into the electrical storage device over the course of the thermal cycle.
    • 在根据本发明的一个实施例中,提供了一种使用工作气体的热循环产生电能的方法。 该方法包括使用包含执行热循环的工作气体的气缸中的活塞的运动,以电磁感应耦合到气缸的电路中的电流; 使用电路将由电路中感应的电流产生的电能存储在电存储装置中; 并且使用存储在蓄电装置中的电能向活塞电磁地提供动力。 循环使用电路来存储电能并使用存储的能量来向活塞提供动力,在热循环过程中实现净平均功率传递到电存储装置中。
    • 10. 发明申请
    • System and Method for Electrically-Coupled Thermal Cycle
    • 电耦合热循环的系统和方法
    • US20100115941A1
    • 2010-05-13
    • US12692432
    • 2010-01-22
    • Jonathan R. Wood
    • Jonathan R. Wood
    • F02G1/04H02K7/18
    • F02G1/045F02G1/0435F02G2280/10H02K7/1884H02K7/1892Y02E20/14
    • In one embodiment according to the invention, there is provided a method for generating electrical energy using a thermal cycle of a working gas. The method comprises using the motion of a piston in a cylinder, containing the working gas performing the thermal cycle, to electromagnetically induce current in an electrical circuit coupled to the cylinder; using the electrical circuit to store the electrical energy, produced by the current induced in the electrical circuit, in an electrical storage device; and using the electrical energy stored in the electrical storage device to electromagnetically provide a motive force to the piston. Cyclically using the electrical circuit to store the electrical energy and using the stored energy to provide a motive force to the piston effect a net positive average power transfer into the electrical storage device over the course of the thermal cycle.
    • 在根据本发明的一个实施例中,提供了一种使用工作气体的热循环产生电能的方法。 该方法包括使用包含执行热循环的工作气体的气缸中的活塞的运动,以电磁感应耦合到气缸的电路中的电流; 使用电路将由电路中感应的电流产生的电能存储在电存储装置中; 并且使用存储在蓄电装置中的电能向活塞电磁地提供动力。 循环使用电路来存储电能并使用存储的能量来向活塞提供动力,在热循环过程中实现净平均功率传递到电存储装置中。