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    • 32. 发明授权
    • Liquid-fuel storage vessel and vapor jet system using the same
    • 液体燃料储存容器和使用其的蒸气喷射系统
    • US08769923B2
    • 2014-07-08
    • US12401496
    • 2009-03-10
    • Takayuki YamamotoOsamu MoriJunichiro Kawaguchi
    • Takayuki YamamotoOsamu MoriJunichiro Kawaguchi
    • B64G1/40
    • F02K9/42B64G1/401B64G1/402
    • Disclosed is a liquid-fuel storage vessel for use in a vapor jet system to store liquid fuel, wherein the vapor jet system is adapted to jet the fuel in a state after being vaporized inside the liquid-fuel storage vessel, outside the liquid-fuel storage vessel, to obtain a thrust. The liquid-fuel storage vessel comprises: a hollow tank for storing the liquid fuel, wherein the tank has an ejection port for ejecting the vaporized fuel, outside the liquid-fuel storage vessel therethrough; a heating device for heating the tank; and a porous metal formed to have a plurality of interconnected cells and provided inside the tank, wherein at least a part of the liquid fuel is held in the cells of the porous metal, and heat energy given from the heating device to the tank is transferred to the liquid fuel through the porous metal to cause vaporization of at least a part of the liquid fuel. The liquid-fuel storage vessel of the present invention can obtain a stable thrust level and ensure spacecraft attitude control.
    • 公开了一种用于蒸汽喷射系统中储存液体燃料的液体燃料储存容器,其中蒸气喷射系统适于在液体 - 燃料储存容器内蒸发之前的状态下喷射燃料,在液体燃料外 储存容器,以获得推力。 液体燃料储存容器包括:用于储存液体燃料的中空罐,其中罐具有用于喷射蒸发燃料的喷射口,在液体燃料储存容器的外面; 用于加热罐的加热装置; 以及形成为具有多个相互连接的电池并设置在所述槽内的多孔金属,其中所述液体燃料的至少一部分保持在所述多孔金属的电池中,并且从所述加热装置向所述罐传递的热能被转移 通过多孔金属使液体燃料通过至少一部分液体燃料蒸发。 本发明的液体燃料储存容器可获得稳定的推力水平并确保航天器的姿态控制。
    • 34. 发明申请
    • CONTACT LENS CASE
    • 联系我们
    • US20130277242A1
    • 2013-10-24
    • US13978647
    • 2011-02-14
    • Osamu Mori
    • Osamu Mori
    • A45C11/00
    • A45C11/005A61L12/086B65D2585/545
    • Provided is a contact lens case of a novel structure that will effectively supplement the sterilization effect which was insufficient in the past with non-heating type disinfectant methods such as the MPS method and hydrogen peroxide method, making it possible to realize an effective sterilization process on soft contact lenses. In a storage solution with a sterilizing action, a slanted loading member is provided, wherein a convex spherical lens loading surface is formed from an antimicrobial material and a contact lens is held in a slanted state such that a geometric center of the contact lens loaded on the lens loading surface is located at a position separated from a top of the lens loading surface.
    • 提供了一种新型结构的隐形眼镜盒,其将有效地补充过去使用非加热型消毒剂方法如MPS法和过氧化氢法的不足的灭菌效果,使得可以实现有效的灭菌过程 软性隐形眼镜 在具有消毒作用的储存溶液中,提供倾斜的装载构件,其中由抗微生物材料形成凸球面透镜装载表面,并且隐形眼镜被保持在倾斜状态,使得隐形眼镜的几何中心被装载在 透镜装载表面位于与透镜装载表面的顶部分离的位置。
    • 35. 发明授权
    • Autonomous distributed control involving constraint on resources
    • 自主分布式控制涉及资源约束
    • US08347298B2
    • 2013-01-01
    • US11866366
    • 2007-10-02
    • Junichiro KawaguchiOsamu MoriYuichi TsudaKoji Nakaya
    • Junichiro KawaguchiOsamu MoriYuichi TsudaKoji Nakaya
    • G06F9/46
    • H04L47/70
    • Disclosed is a distributed control method of cooperatively allowing a control strategy for satisfying a constraint on an aggregated resource and simultaneously achieving or maintaining a performance of a system to be determined in a real-time manner by any one of a plurality of entities which have the highest need for the resource at any given time, without providing a specified management entity. The proposed method or “card game scheme” of the present invention is designed to dynamically carry out a function of satisfying a constraint on an aggregate resource and simultaneously achieving or maintaining a performance of the entire system, based on a distributed control with high flexibility, wherein an “agent”, i.e., a software having a function of performing autonomous determination and control, is set in each of the entities, to allow the entities to dynamically take turns to perform a processing of determining a strategy for resource allocation.
    • 公开了一种分散控制方法,其协作地允许控制策略以满足对聚​​合资源的约束,并且同时实现或维持由多个实体中的任何一个实时地确定的系统的性能,所述多个实体具有 在任何给定时间对资源的最高需求,而不提供指定的管理实体。 本发明提出的方法或卡片游戏方案被设计为基于具有高灵活性的分布式控制,动态地执行满足聚合资源的约束并同时实现或维持整个系统的性能的功能,其中 代理,即具有执行自主确定和控制的功能的软件被设置在每个实体中,以允许实体动态轮流执行确定资源分配策略的处理。
    • 38. 发明申请
    • METHOD OF PILOT INJECTION CONTROL AND SYSTEM THEREOF
    • 引航控制方法及其系统
    • US20100139614A1
    • 2010-06-10
    • US12514403
    • 2007-11-06
    • Osamu MoriKazuhiko Hoshino
    • Osamu MoriKazuhiko Hoshino
    • F02B3/00F02M51/00
    • F02D41/403F02D41/1497F02D2200/0614F02D2250/21F02M45/02Y02T10/44
    • Change in number of pilot injection is avoided in a transient response of an engine, so that driving feeling and travelling feeling are improved.When pilot injection is performed, whether fuel injection amount Q immediately before the pilot injection is more than a maximum value Qmax is determined (S100), and in the case that the fuel injection amount is determined to be more than the maximum value Qmax, number of pilot injection is fixed to a predetermined value (S102), and on the other hand, in the case that the fuel injection amount Q is determined to be not more than the maximum value Qmax, whether the fuel injection amount Q is lower than a minimum value Qmin is determined (S104), and when the fuel injection amount Q is determined to be lower than the minimum value Qmin, number-fixed control of pilot injection is released, and map control where pilot injection number is determined based on a map is started (S106).
    • 在发动机的瞬态响应中避免了引燃喷射次数的变化,从而提高了驾驶感和行驶感。 当执行先导喷射时,确定紧接在先导喷射之前的燃料喷射量Q大于最大值Qmax(S100),并且在确定燃料喷射量大于最大值Qmax的情况下,数量 引导喷射量固定为规定值(S102),另一方面,在将燃料喷射量Q确定为不大于最大值Qmax的情况下,燃料喷射量Q是否低于 确定最小值Qmin(S104),并且当燃料喷射量Q被确定为低于最小值Qmin时,导频喷射的数量固定控制被解除,并且基于地图确定导频喷射数的地图控制 开始(S106)。
    • 40. 发明授权
    • Power converting apparatus
    • 电力转换装置
    • US07577007B2
    • 2009-08-18
    • US11564456
    • 2006-11-29
    • Osamu MoriMasaki YamadaAkihiko Iwata
    • Osamu MoriMasaki YamadaAkihiko Iwata
    • H02M7/49
    • H02J3/1857H02J3/01H02M7/49Y02E40/26Y02E40/40
    • A power converting apparatus used as an active filter includes single-phase multiplex inverter unit for converting DC power into AC power and a control unit for controlling the single-phase multiplex inverter unit. The single-phase multiplex inverter unit includes a first single-phase inverter and a second single-phase inverter. The first single-phase inverter to which a maximum DC voltage is supplied outputs voltage pulses at a rate of one pulse per half the period of an AC voltage fed from an AC source. The control unit includes a pair of hysteresis comparator circuits for driving the second single-phase inverter such that an AC source current follows a sinusoidal target current.
    • 用作有源滤波器的电力转换装置包括用于将DC电力转换为AC电力的单相多路反相器单元和用于控制单相多路反相器单元的控制单元。 单相多路反相器单元包括第一单相逆变器和第二单相逆变器。 提供最大直流电压的第一单相逆变器以从AC电源馈送的AC电压的周期的每半个周期以一个脉冲的速率输出电压脉冲。 控制单元包括一对用于驱动第二单相逆变器的滞后比较器电路,使得AC源电流遵循正弦目标电流。