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    • 4. 发明申请
    • ALL-ION ACCELERATOR AND CONTROL METHOD OF THE SAME
    • 全能加速器及其控制方法
    • US20090195194A1
    • 2009-08-06
    • US11912986
    • 2006-04-18
    • Ken TakayamaYoshito ShimosakiKota TorikaiYoshio Arakida
    • Ken TakayamaYoshito ShimosakiKota TorikaiYoshio Arakida
    • H05H13/04
    • H05H13/04H05H15/00
    • It is an object of the present invention to provide an accelerator that can accelerate by itself all ions up to any energy level allowed by the magnetic fields for beam guiding, and provides an all-ion accelerator in which with trigger timing and a charging time of an induced voltage applied to an ion beam injected from a preinjector by induction cells for confinement and acceleration used in an induction synchrotron, digital signal processors for confinement and acceleration and pattern generators for confinement and acceleration generate gate signal patterns for confinement and acceleration on the basis of a passage signal of the ion beam and an induced voltage signal for indicating the value of the induced voltage applied to the ion beam, and intelligent control devices for confinement and acceleration perform feedback control of on/off of the induction cells for confinement and acceleration.
    • 本发明的一个目的是提供一种加速器,其可以自行加速所有离子,直到由磁场允许的任何能量水平用于光束引导,并提供一种全离子加速器,其中触发时间和充电时间 通过用于感应同步加速器中使用的用于限制和加速的感应电池从预注射器注入的离子束的感应电压,用于限制和加速的数字信号处理器以及用于限制和加速的图案发生器在基础上产生用于限制和加速的门信号模式 的离子束的通过信号和用于指示施加到离子束的感应电压的值的感应电压信号,以及用于限制和加速的智能控制装置执行用于限制和加速的感应电池的开/关的反馈控制 。
    • 5. 发明授权
    • Charged particle beam extraction method using pulse voltage
    • 带脉冲电压的带电粒子束提取方法
    • US08525449B2
    • 2013-09-03
    • US13390002
    • 2010-08-10
    • Kota TorikaiSatoru Yamada
    • Kota TorikaiSatoru Yamada
    • H05H13/04
    • H05H7/10H05H13/04
    • A charged particle beam extraction method according to the present invention is featured in that, in a circular accelerator which accelerates a charged particle beam, a pulse voltage is applied to a part of the accelerated charged particle beam to generate a momentum deviation only in the part of the charged particle beam, in that the charged particles of a part of the charged particle beam, the charged particles having a large momentum deviation, are located in a non-stable region and in an extraction region in a horizontal phase space with respect to the traveling direction of the charged particle beam, and in that a group of the charged particles located in the non-stable region and in the extraction region are largely deviated in the horizontal direction so as to be extracted.
    • 根据本发明的带电粒子束提取方法的特征在于,在加速带电粒子束的环形加速器中,脉冲电压被施加到加速带电粒子束的一部分以仅在部分中产生动量偏差 带电粒子束的一部分的带电粒子,具有大的动量偏差的带电粒子的一部分的带电粒子位于非稳定区域和相对于水平相位空间的水平相位空间的提取区域中 带电粒子束的行进方向,并且位于非稳定区域和提取区域中的一组带电粒子在水平方向上大大偏离以被提取。
    • 6. 发明申请
    • BEAM IRRADIATION APPARATUS AND BEAM IRRADIATION CONTROL METHOD
    • 光束辐射装置和光束辐照控制方法
    • US20120316378A1
    • 2012-12-13
    • US13519811
    • 2010-08-05
    • Kota TorikaiSatoru Yamada
    • Kota TorikaiSatoru Yamada
    • H01J3/22A61N5/10H01J3/20
    • G21K1/093A61N5/1043A61N5/1077A61N2005/1087A61N2005/1095
    • The beam irradiation apparatus is featured by including a transport pipe which is vacuum-evacuated to be used as a transport channel of a beam taken out from an accelerator, a quadrupole magnet which modulates the beam diameter of the beam so that the beam is incident on an irradiation target existing in the atmosphere while maintaining the focusing angle of the beam, and one or more longitudinally movable range shifters which are provided to be capable of changing the distance to the irradiation target of the beam, and which modulate the beam range by reducing the energy of the beam by allowing the beam to pass through the movable range shifter, and is featured in that the beam is irradiated onto the irradiation target by modulating the beam diameter and the beam range.
    • 光束照射装置的特征在于包括真空抽真空的输送管,用作从加速器取出的光束的输送通道,四极磁体,其调制光束的光束直径以使光束入射到 存在于大气中的照射目标,同时保持光束的聚焦角度;以及一个或多个纵向移动范围移动器,其被设置为能够改变到光束的照射目标的距离,并且通过减小来调制光束范围 通过允许光束通过可移动范围移位器的光束的能量,其特征在于通过调制光束直径和光束范围将光束照射到照射目标上。
    • 7. 发明申请
    • INDUCED VOLTAGE CONTROL DEVICE, ITS CONTROL METHOD, CHARGED PARTICLE BEAM ORBIT CONTROL DEVICE, AND ITS CONTROL METHOD
    • 感应电压控制装置及其控制方法,充电粒子束轨控制装置及其控制方法
    • US20100176753A1
    • 2010-07-15
    • US11994915
    • 2006-06-30
    • Ken TakayamaKota TorikaiYoshio ArakidaYoshito ShimosakiJunichi KishiroReiko Kishiro
    • Ken TakayamaKota TorikaiYoshio ArakidaYoshito ShimosakiJunichi KishiroReiko Kishiro
    • H05H13/04
    • H05H15/00H05H7/02H05H13/04
    • [PROBLEMS] To provide an induction voltage control device (8) capable of accelerating arbitrary charged particles to an arbitrary energy level in synchronization with any magnetic excitation pattern even for an acceleration voltage (9a) of constant voltage by an induction acceleration cell (6) for acceleration and its control method. [MEANS FOR SOLVING PROBLEMS] An induction voltage control device (8) includes: a digital signal processing device (8d) for controlling a variable delay time according to a necessary variable delay time pattern obtained based on a magnetic excitation pattern, an equivalent acceleration voltage value pattern, and a passing signal (7a) of a bunch (3) from a bunch monitor (7); and a pattern generator (8b) for conversion to a gate signal pattern (8a) of a switching power source (5b). The induction voltage control device (8) controls a pulse density of the induction voltage (9) for acceleration per control unit. A control method of the induction voltage control device is also disclosed.
    • 提供一种感应电压控制装置(8),其能够通过感应加速电池(6)对任意的磁激励图案同步加速任意的带电粒子至任意的能级,即使对于恒定电压的加速电压(9a) 用于加速及其控制方法。 感应电压控制装置(8)包括:数字信号处理装置(8d),用于根据基于磁激励模式获得的必要的可变延迟时间图案来控制可变延迟时间,等效加速电压 值图案和来自束监视器(7)的束(3)的通过信号(7a); 以及用于转换为开关电源(5b)的栅极信号图案(8a)的图案生成器(8b)。 感应电压控制装置(8)控制用于每个控制单元的加速度的感应电压(9)的脉冲密度。 还公开了感应电压控制装置的控制方法。
    • 8. 发明申请
    • CHARGED PARTICLE BEAM EXTRACTION METHOD USING PULSE VOLTAGE
    • 使用脉冲电压的充电颗粒光束提取方法
    • US20120200237A1
    • 2012-08-09
    • US13390002
    • 2010-08-10
    • Kota TorikaiSatoru Yamada
    • Kota TorikaiSatoru Yamada
    • H05H13/04
    • H05H7/10H05H13/04
    • A charged particle beam extraction method according to the present invention is featured in that, in a circular accelerator which accelerates a charged particle beam, a pulse voltage is applied to a part of the accelerated charged particle beam to generate a momentum deviation only in the part of the charged particle beam, in that the charged particles of a part of the charged particle beam, the charged particles having a large momentum deviation, are located in a non-stable region and in an extraction region in a horizontal phase space with respect to the traveling direction of the charged particle beam, and in that a group of the charged particles located in the non-stable region and in the extraction region are largely deviated in the horizontal direction so as to be extracted.
    • 根据本发明的带电粒子束提取方法的特征在于,在加速带电粒子束的环形加速器中,脉冲电压被施加到加速带电粒子束的一部分以仅在部分中产生动量偏差 带电粒子束的一部分的带电粒子,具有大的动量偏差的带电粒子的一部分的带电粒子位于非稳定区域和相对于水平相位空间的水平相位空间的提取区域中 带电粒子束的行进方向,并且位于非稳定区域和提取区域中的一组带电粒子在水平方向上大大偏离以被提取。
    • 9. 发明申请
    • INDUCTION ACCELERATING DEVICE AND ACCELERATION METHOD OF CHARGED PARTICLE BEAM
    • 感应加速装置和加载粒子束的加速方法
    • US20110156617A1
    • 2011-06-30
    • US12097657
    • 2006-12-11
    • Ken TakayamaKota TorikaiYoshio ArakidaYoshito Shimosaki
    • Ken TakayamaKota TorikaiYoshio ArakidaYoshito Shimosaki
    • H05H15/00
    • H05H13/04
    • The present invention provides a set of induction accelerating cell for controlling acceleration of a charged particle beam and an induction accelerating device for controlling generation timing of an induced voltage applied by the induction accelerating cell in a synchrotron. The induction accelerating device in a synchrotron includes: an induction accelerating cell that applies an induced voltage; a switching power supply that supplies a pulse voltage to the induction accelerating cell via a transmission line and drives said induction accelerating cell; a DC power supply that supplies electric power to the switching power supply; and an intelligent control device including a pattern generator that generates a gate signal pattern for controlling on/off the switching power supply, and a digital signal processing device that controls on/off a gate master signal that becomes the basis of the gate signal pattern.
    • 本发明提供一种用于控制带电粒子束的加速度的感应加速电池和用于控制由同步加速器中的感应加速电池施加的感应电压的产生定时的感应加速装置。 同步加速器中的感应加速装置包括:施加感应电压的感应加速电池; 开关电源,其经由传输线向所述感应加速单元提供脉冲电压,并驱动所述感应加速单元; 向开关电源供给电力的直流电源; 以及智能控制装置,包括产生用于控制开关电源的导通/截止的栅极信号模式的模式发生器,以及控制开关门控信号的数字信号处理装置,该门控信号处理装置成为门信号模式的基础。
    • 10. 发明授权
    • Beam irradiation apparatus and beam irradiation control method
    • 光束照射装置和光束照射控制方法
    • US08716679B2
    • 2014-05-06
    • US13519811
    • 2010-08-05
    • Kota TorikaiSatoru Yamada
    • Kota TorikaiSatoru Yamada
    • G21K5/04
    • G21K1/093A61N5/1043A61N5/1077A61N2005/1087A61N2005/1095
    • The beam irradiation apparatus is featured by including a transport pipe which is vacuum-evacuated to be used as a transport channel of a beam taken out from an accelerator, a quadrupole magnet which modulates the beam diameter of the beam so that the beam is incident on an irradiation target existing in the atmosphere while maintaining the focusing angle of the beam, and one or more longitudinally movable range shifters which are provided to be capable of changing the distance to the irradiation target of the beam, and which modulate the beam range by reducing the energy of the beam by allowing the beam to pass through the movable range shifter, and is featured in that the beam is irradiated onto the irradiation target by modulating the beam diameter and the beam range.
    • 光束照射装置的特征在于包括真空抽真空的输送管,用作从加速器取出的光束的输送通道,四极磁体,其调制光束的光束直径以使光束入射到 存在于大气中的照射目标,同时保持光束的聚焦角度;以及一个或多个纵向移动范围移动器,其被设置为能够改变到光束的照射目标的距离,并且通过减小来调制光束范围 通过允许光束通过可移动范围移位器的光束的能量,其特征在于通过调制光束直径和光束范围将光束照射到照射目标上。