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    • 2. 发明申请
    • Nuclear Reactor System and Nuclear Reactor Control Method
    • 核反应堆系统和核反应堆控制方法
    • US20110200155A1
    • 2011-08-18
    • US13005928
    • 2011-01-13
    • Atsushi FushimiSetsuo AritaYoshihiko IshiiTomohiko IkegawaShin HasegawaKazuhiko Ishii
    • Atsushi FushimiSetsuo AritaYoshihiko IshiiTomohiko IkegawaShin HasegawaKazuhiko Ishii
    • G21C7/08G21C7/36
    • G21C7/36G21D3/08Y02E30/39
    • In order to stably control a nuclear reactor in a short time, so as not to enter an unstable region that is determined by the relationship between the reactor pressure, the reactor power and the subcooling of the core inlet coolant at start-up time, the nuclear reactor system comprises: an power control apparatus for generating a control rod operation signal for operating a control rod, based on the reactor water temperature change rate; a feed water control apparatus for generating a feed water flow rate signal and a discharge water flow rate signals based on the reactor water level signal; and a process computer for performing overall control of the power control apparatus and the feed water control apparatus, wherein the feed water control apparatus has the reactor water temperature change rate setting section for adjusting the reactor water temperature change rate set value based on the variation of the reactor water level signal.
    • 为了在短时间内稳定地控制核反应堆,为了不进入由反应堆压力,反应堆功率和启动时的核心入口冷却剂的过冷度之间的关系确定的不稳定区域, 核反应堆系统包括:功率控制装置,用于基于反应堆水温度变化率产生用于操作控制棒的控制棒操作信号; 用于产生基于反应堆水位信号的给水流量信号和排放水流量信号的给水控制装置; 以及用于执行动力控制装置和给水控制装置的整体控制的处理计算机,其中,给水控制装置具有反应堆水温变化率设定部,其用于基于变化而调整反应堆水温变化率设定值 反应堆水位信号。
    • 3. 发明申请
    • Nuclear reactor system and nuclear reactor control method
    • 核反应堆系统和核反应堆控制方法
    • US20100272223A1
    • 2010-10-28
    • US11657456
    • 2007-01-25
    • Atsushi FushimiSetsuo AritaYoshihiko IshiiTomohiko IkegawaShin HasegawaKazuhiko Ishii
    • Atsushi FushimiSetsuo AritaYoshihiko IshiiTomohiko IkegawaShin HasegawaKazuhiko Ishii
    • G21C7/36G21C1/08
    • G21C7/36G21D3/08Y02E30/39
    • In order to stably control a nuclear reactor in a short time, so as not to enter an unstable region that is determined by the relationship between the reactor pressure, the reactor power and the subcooling of the core inlet coolant at start-up time, the nuclear reactor system comprises: an power control apparatus for generating a control rod operation signal for operating a control rod, based on the reactor water temperature change rate; a feed water control apparatus for generating a feed water flow rate signal and a discharge water flow rate signals based on the reactor water level signal; and a process computer for performing overall control of the power control apparatus and the feed water control apparatus, wherein the feed water control apparatus has the reactor water temperature change rate setting section for adjusting the reactor water temperature change rate set value based on the variation of the reactor water level signal.
    • 为了在短时间内稳定地控制核反应堆,为了不进入由反应堆压力,反应堆功率和启动时的核心入口冷却剂的过冷度之间的关系确定的不稳定区域, 核反应堆系统包括:功率控制装置,用于基于反应堆水温度变化率产生用于操作控制棒的控制棒操作信号; 用于产生基于反应堆水位信号的给水流量信号和排放水流量信号的给水控制装置; 以及用于执行动力控制装置和给水控制装置的整体控制的处理计算机,其中,给水控制装置具有反应堆水温变化率设定部,其用于基于变化而调整反应堆水温变化率设定值 反应堆水位信号。
    • 7. 发明申请
    • IC CARD AND AUTHENTICATION METHOD IN ELECTRONIC TICKET DISTRIBUTION SYSTEM
    • 电子门票分发系统中的IC卡和认证方法
    • US20080109371A1
    • 2008-05-08
    • US11957558
    • 2007-12-17
    • Ken SakamuraNoboru KoshizukaHiroshi AonoKazuhiko IshiiKensaku MoriSadayuki Hongo
    • Ken SakamuraNoboru KoshizukaHiroshi AonoKazuhiko IshiiKensaku MoriSadayuki Hongo
    • G06Q20/00H04L9/32G06K19/00
    • G07F7/1008G06Q10/02G06Q20/105G06Q20/341G06Q20/367G06Q20/3674G06Q20/3678G06Q20/382G06Q20/4097G07B15/00G07C9/00007
    • Between an IC card (1) and a electronic ticket server (2), upon purchasing an electronic ticket a public key cryptosystem is employed for a mutual authentication to keep a strict security, and a shared secret between the electronic ticket and a ticket collecting machine is sent on a secure channel as well as the electronic ticket. Upon usage of the electronic ticket, the IC card (1) and the ticket collecting machine (6) mutually judge whether they carry out the mutual authentication by using a public key cryptosystem or a symmetric key cryptosystem. When they determine to use the symmetric key cryptosystem, they carry out the mutual authentication by using the shared secret exchanged beforehand. When they determine to use the public key cryptosystem, they carry out the mutual authentication by using the same method as that used upon purchasing the electronic ticket. This method of mutual authentication can dynamically switch cryptosystems for cryptographic communication between the IC cards or between the IC card and a tamper resistant device having an equivalent function to an IC card installed in related servers or the ticket collecting machine, based on their judgment of the types of bearers, the required degree of security and the required processing speed.
    • 在IC卡(1)和电子票务服务器(2)之间,购买电子票时,使用公共密钥密码系统进行相互认证,以保证严格的安全性,并且在电子票和收票机之间共享秘密 发送在安全的频道以及电子票。 在使用电子票时,IC卡(1)和票收集机(6)相互判断是否通过使用公钥密码系统或对称密钥密码系统进行相互认证。 当他们确定使用对称密钥密码系统时,它们通过使用事先交换的共享密钥来执行相互认证。 当他们确定使用公共密钥密码系统时,它们使用与购买电子机票时相同的方法进行相互认证。 这种相互认证方法可以动态地切换用于IC卡之间或IC卡与具有与安装在相关服务器或收票机中的IC卡具有相同功能的防篡改设备之间的加密通信的密码系统, 承载类型,所需的安全程度和所需的处理速度。
    • 8. 发明申请
    • Authentication device, mobile terminal, and authentication method
    • 认证设备,移动终端和认证方法
    • US20060212397A1
    • 2006-09-21
    • US11372130
    • 2006-03-10
    • Masayuki TeradaKensaku MoriKazuhiko IshiiSadayuki Hongo
    • Masayuki TeradaKensaku MoriKazuhiko IshiiSadayuki Hongo
    • G06Q99/00
    • G07F7/1008G06Q20/341G06Q20/40975
    • The security of an IC card is improved by managing success and failure in authentication individually for each terminal program. An IC card includes a random number generation section, a source authentication section, and a process execution section. Upon receipt of a message of type “1”, the random number generation section generates a random number n, and stores it in a random number storage section by associating the random number n with a source included in the message. Upon receipt of a message of type “2” from the source and in a case where the random number n corresponding to the source is stored, the source authentication section collates a value m calculated from an authentication key held by the IC card and the random number n with a value m included in the message of type “2”. When both values agree, upon receipt of a message of type “3” from the source, the process execution section executes a process in accordance with a type of the message.
    • 通过管理每个终端程序的认证成功和失败来提高IC卡的安全性。 IC卡包括随机数生成部,源认证部和处理执行部。 在接收到类型“1”的消息时,随机数生成部分生成随机数n,并通过将随机数n与消息中包含的源相关联将其存储在随机数存储部中。 在从源接收到类型“2”的消息时,并且在存储与源相对应的随机数n的情况下,源认证部分将从由IC卡保存的认证密钥计算出的值m和随机数 数字n具有包含在类型“2”的消息中的值m。 当两个值同意时,在从源接收到类型“3”的消息时,处理执行部分根据消息的类型执行处理。
    • 10. 发明授权
    • Flame-retardant polycarbonate resin composition
    • 阻燃聚碳酸酯树脂组合物
    • US06369141B1
    • 2002-04-09
    • US09440641
    • 1999-11-16
    • Kazuhiko IshiiKen ShimomaiMichio Nakata
    • Kazuhiko IshiiKen ShimomaiMichio Nakata
    • C08K5523
    • C08K5/42C08K5/523C08L27/18C08L69/00
    • The present invention provides a flame-retardant polycarbonate resin composition which comprises (a) 100 parts by weight of an aromatic polycarbonate resin, (b) 0.5-40 parts by weight of a phosphorus-containing flame retardant, (c) 0.01-5 parts by weight of polyfluoroethylene, (d) 0-5 parts by weight of sulfonic acid metal salt, and (e) 0.5-30 parts by weight of a multi-layered polymer having a core made of an elastic polymer having a glass-transition temperature (Tg) lower than a room temperature, and an outer layer made of a thermoplastic resin having an adhesiveness or miscibility to polycarbonate, provided that the composition comprises 3-40 parts by weight of a phosphorus-containing flame retardant when said composition comprises substantially no sulfonic acid metal salt.
    • 本发明提供一种阻燃聚碳酸酯树脂组合物,其包含(a)100重量份的芳族聚碳酸酯树脂,(b)0.5-40重量份的含磷阻燃剂,(c)0.01-5重量份 的(d)0-5重量份的磺酸金属盐,和(e)0.5-30重量份的具有由具有玻璃化转变温度的弹性聚合物制成的芯的多层聚合物 (Tg)低于室温的外层和与聚碳酸酯具有粘合性或混溶性的热塑性树脂制成的外层,只要该组合物包含3-40重量份的含磷阻燃剂,当所述组合物基本上不含 磺酸金属盐。