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    • 32. 发明申请
    • Component-based application constructing method
    • 基于组件的应用程序构建方法
    • US20060085664A1
    • 2006-04-20
    • US11070499
    • 2005-03-03
    • Tomohiro NakamuraHiroaki FujiiToshihiro EguchiChiaki KatoKazuya HisakiMasaru Takeuchi
    • Tomohiro NakamuraHiroaki FujiiToshihiro EguchiChiaki KatoKazuya HisakiMasaru Takeuchi
    • G06F11/00
    • G06F11/008G06F11/0727G06F11/0793
    • Reliability is evaluated in constructing a component based-on application and an application for realizing reliability required can be constructed efficiently. A run-time history such as an occurrence frequency of errors, a recovery time required at error occurrence, and a processing capacity at preventive maintenance is added per software component to a run-time history list having been recoded per execution environment such as an application ID, combined component IDs, and executed hardware ID. From these pieces of information, an interval of performing preventive maintenance recommended per software component during system construction is calculated. By comparing reliability per software component and reliability required for the system, advisability is determined and conformance is evaluated. An execution schedule for preventive maintenance and a processing capability are calculated about the entire component-based application created by combining the software components. By calculating the reliability and the processing capability in the entire system to be compared to those required for the entire system, advisability is determined and conformance is evaluated.
    • 在构建基于组件的应用程序中评估可靠性,并且可以有效地构建用于实现所需可靠性的应用。 每个软件组件将每个执行环境例如应用程序重新编码的运行时历史列表添加诸如错误发生频率,错误发生时所需的恢复时间和预防性维护处理能力的运行时历史 ID,组合组件ID和执行的硬件ID。 从这些信息中,计算在系统构造期间对每个软件组件推荐的间隔执行预防性维护。 通过比较每个软件组件的可靠性和系统所需的可靠性,确定可靠性并评估一致性。 计算关于通过组合软件组件创建的整个基于组件的应用程序的预防性维护执行计划和处理能力。 通过计算整个系统的可靠性和处理能力与整个系统所需的可靠性和处理能力进行比较,确定可靠性并评估一致性。
    • 33. 发明授权
    • Processor using a predicted result in executing a subsequent instruction regardless of whether a predicted value is true or false
    • 处理器使用预测结果执行后续指令,而不管预测值是真还是假
    • US06952765B2
    • 2005-10-04
    • US10046982
    • 2002-01-17
    • Tomohiro Nakamura
    • Tomohiro Nakamura
    • G06F12/08G06F9/38G06F9/44
    • G06F9/383G06F9/3832
    • A processor is arranged to make it possible to specify an instruction for which value prediction is thought to enhance program execution performance and execute the instruction and enhance the accuracy of prediction when carrying out value prediction. The processor is provided with an instruction cache to store instructions to which a value prediction field and a value prediction method field are attached. Prior to or in concurrence with fetching and executing an instruction by its execution unit, the execution result value predicted by a value predictor designated by the contents of the value prediction method field of the instruction is output. Only when the value prediction field contains ‘1,’ the predicted value is stored into the register and used in executing a subsequent instruction. The predicted value for an instruction with its value prediction field containing ‘0’ is nullified. For each instruction, the result of prediction made by the value predictor is compared with the result of executing the instruction by the execution unit. When the comparison is a mismatch, the result of prediction stored in the register is cleared and the data contents of the value prediction field or value prediction method field of the instruction in the cache memory are updated.
    • 处理器被布置为使得可以指定在进行值预测时认为哪个值预测被提高以提高程序执行性能并执行指令并提高预测的精度。 处理器设置有指令高速缓存,用于存储连接有值预测字段和值预测方法字段的指令。 在由执行单元执行或执行指令之前或之后,输出由指令的值预测方法字段的内容指定的值预测器预测的执行结果值。 仅当值预测字段包含“1”时,预测值被存储到寄存器中并用于执行后续指令。 具有包含“0”的值预测字段的指令的预测值无效。 对于每个指令,将由值预测器进行的预测结果与由执行单元执行指令的结果进行比较。 当比较不匹配时,清除存储在寄存器中的预测结果,并更新高速缓冲存储器中的指令的值预测字段或值预测方法字段的数据内容。
    • 35. 发明申请
    • GLOW PLUG CONTROL DRIVE METHOD AND GLOW PLUG DRIVE CONTROL SYSTEM
    • GLOW插头控制驱动方法和GLOW PLUG驱动控制系统
    • US20130255615A1
    • 2013-10-03
    • US13993165
    • 2011-12-06
    • Yoshito HujishiroYutaka TanakaTomohiro Nakamura
    • Yoshito HujishiroYutaka TanakaTomohiro Nakamura
    • F02P23/00
    • F02P23/00F02D2041/2027F02P19/02F02P19/022F02P19/023F02P19/026F23Q7/001
    • To suppress current fluctuations upon commencement of driving and prolong lifespan by reducing electric stress caused by current fluctuations.A glow plug 1, a glow switch 2, and a stabilizing coil 3 are series-connected, and upon commencement of the driving of the glow plug 1, a repetition frequency of PWM signals that control the opening and closing of the glow switch 2 is made into a higher frequency than a repetition frequency in a normal drive state and the opening and closing of the glow switch 2 is controlled (S104), and when a predetermined drive shift condition has been met (S106), the repetition frequency of the PWM signals is returned to the frequency during normal driving and the opening and closing of the glow switch 2 is controlled (S108), whereby the current upon commencement of driving is smoothed and the occurrence of an instantaneous large current is suppressed.
    • 为了抑制驱动开始时的电流波动,通过减少由电流波动引起的电应力来延长寿命。 电热塞1,辉光开关2和稳定线圈3是串联的,并且在电热塞1的驱动开始时,控制辉光开关2的打开和关闭的PWM信号的重复频率是 在正常驱动状态下被制成比重复频率高的频率,并且控制辉光开关2的打开和关闭(S104),并且当满足预定的驱动移位条件(S106)时,PWM的重复频率 信号在正常驱动期间返回到频率,并且控制辉光开关2的打开和关闭(S108),从而驱动开始时的电流平滑,并且抑制了瞬时大电流的发生。
    • 36. 发明申请
    • OPERATION LOG STORAGE SYSTEM, DEVICE, AND PROGRAM
    • 操作日志存储系统,设备和程序
    • US20130198272A1
    • 2013-08-01
    • US13820227
    • 2011-02-10
    • Tomotaka ShionoyaHiromitsu NakagawaTomohiro NakamuraTatsuya Sato
    • Tomotaka ShionoyaHiromitsu NakagawaTomohiro NakamuraTatsuya Sato
    • H04L29/06
    • H04L67/42G06F11/302G06F11/3055G06F11/3096G06F11/3409G06F11/3452G06F11/3476G06F11/3495G06F11/3612G06F2201/865G06F2201/875
    • The objective of the present invention is to record the state of an application to be logged of a client at a server and to evaluate the code efficiency for each change of state so as to consistently achieve optimal code efficiency. The operational log record system (1) of the present invention is configured with a client apparatus (3) and a server apparatus (2) for storing the operational log thereof, wherein a memory device (14) of the server apparatus and a storage device (16), via a communication interface (10), store a code table generation program (104) for generating a code table on the basis of an operational log transmitted from the client apparatus (3), a code function group (500) for coding the operational log, and the program state upon the client apparatus which has been estimated on the basis of the operational log. The memory device (14) of the client apparatus (3) stores the code table which has been transmitted from the server apparatus (2), an application group to be logged (110), and an operational log acquisition program (108) for acquiring the operational log. The server apparatus (2) stores away the operational log which has been received from the client apparatus (3) in a sequential storage device (16) as the operational log.
    • 本发明的目的是记录在服务器处记录客户端的应用的状态,并且评估每个状态改变的代码效率,以便始终如一地实现最佳代码效率。 本发明的操作日志记录系统(1)配置有用于存储其操作日志的客户端设备(3)和服务器设备(2),其中服务器设备的存储设备(14)和存储设备 (16)经由通信接口(10)存储用于基于从客户端装置(3)发送的操作日志生成代码表的代码表生成程序(104),代码功能组(500),用于 对操作日志进行编码,以及基于操作日志估计的客户端装置上的程序状态。 客户端装置(3)的存储装置(14)存储已经从服务器装置(2)发送的代码表,要记录的应用组(110)和用于获取的操作日志获取程序(108) 操作日志。 服务器装置(2)将从客户端装置(3)接收的操作日志存储在顺序存储装置(16)中作为操作日志。
    • 38. 发明授权
    • Sensor
    • 传感器
    • US08105470B2
    • 2012-01-31
    • US12397926
    • 2009-03-04
    • Noboru MatsuiTomohiro Nakamura
    • Noboru MatsuiTomohiro Nakamura
    • G01N27/407
    • G01N27/4062
    • A sensor (1) including a plate-shaped sensor element (21) extending in a front-rear direction and having at least 3 electrode terminals (25) provided on at least one side surface (24) of the sensor element at intervals in a lateral direction; a plurality of metallic terminal members (51a, 51b) connected to the electrode terminals (25) of the sensor element (21); and a separator (71) surrounding and insulating the plurality of metallic terminal members (51a, 51b). The metallic terminal members (51a, 51b) each has a crimp portion (57a, 57b) formed at a rear end thereof and a lead wire (61) is crimp-connected to the crimp portion (57a, 57b). The crimp portions (57a) located at opposite sides with respect to the lateral direction face the side surface (24) of the sensor element (21), whereas the crimp portion (57b) faces away from the side surface (24) of the sensor element (21).
    • 一种传感器(1),包括:板状传感器元件(21),其在前后方向上延伸并且具有设置在所述传感器元件的至少一个侧表面(24)上的至少3个电极端子(25) 横向; 连接到传感器元件(21)的电极端子(25)的多个金属端子构件(51a,51b)。 以及围绕并绝缘所述多个金属端子构件(51a,51b)的隔板(71)。 金属端子构件(51a,51b)的后端形成有压接部(57a,57b),并且引线(61)与压接部(57a,57b)压接。 位于相对于横向相对侧的卷曲部分(57a)面向传感器元件(21)的侧表面(24),而压接部分(57b)背离传感器的侧表面(24) 元件(21)。
    • 40. 发明授权
    • Sensor
    • 传感器
    • US07568378B2
    • 2009-08-04
    • US12013491
    • 2008-01-14
    • Kumiko YoshikawaMakoto KumeNoboru MatsuiTomohiro Nakamura
    • Kumiko YoshikawaMakoto KumeNoboru MatsuiTomohiro Nakamura
    • G01N9/00
    • G01N27/4071
    • A sensor including: a detecting element (4) as defined herein; a plurality of metallic terminal members (10, 211, 221, 231, 268) as defined herein; and an insulating separator (82) as defined herein, wherein the insulating separator includes: an outer separator (183) which surrounds the electrode terminal portions of the detecting element and the metallic terminal members; and an inner separator (185, 285) at least a portion of which is disposed radially inwardly of the outer separator and which has partition walls (187, 190, 191, 287, 290, 291) for positioning the plurality of metallic terminal members and insulating the plurality of metallic terminal members from one another.
    • 一种传感器,包括:如本文所定义的检测元件(4); 如本文所定义的多个金属端子构件(10,211,221,231,268); 和绝缘隔板(82),其中所述绝缘隔板包括:围绕所述检测元件的电极端子部分和所述金属端子构件的外隔板(183); 和内隔板(185,285),其至少一部分设置在所述外隔板的径向内侧,并且具有分隔壁(187,190,191,278,290,291),用于定位所述多个金属端子构件,以及 将多个金属端子构件彼此绝缘。