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    • 121. 发明专利
    • System construction device
    • 系统结构设备
    • JP2003029973A
    • 2003-01-31
    • JP2002097981
    • 2002-03-29
    • Toshiba Corp株式会社東芝
    • IMAZAKI NAOKIAISU HIDEYUKISEKINE SATOSHIKANO MAKOTOMAKINO KYOKO
    • G06F17/30G06F9/44G06N3/02
    • PROBLEM TO BE SOLVED: To provide a system construction device capable of easily constructing a system.
      SOLUTION: A user activates the respective editors of a function editor part 2 by using the input device of a user interface part 21 and performs the arrangement of units constituting the system, the connection of the units by signal routes, the setting of the attributes of the units and the editing of design information, etc. The information is stored in a system design data storage part 28 by a data processing part 22. When the user inputs conditions on the construction of the system by a search condition input part 34 instead of activating the function editor part 24, the constitution of the system is decided within the range of satisfying the conditions by a system constitution search part 35.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供能够容易地构建系统的系统构造装置。 解决方案:用户通过使用用户接口部分21的输入设备来激活功能编辑器部分2的各个编辑器,并且执行构成系统的单元的布置,通过信号路由的单元的连接, 单元和设计信息的编辑等。数据处理部分22将信息存储在系统设计数据存储部分28中。当用户通过搜索条件输入部分34输入关于系统构造的条件,而不是 激活功能编辑器部分24,系统结构在系统结构搜索部分35满足条件的范围内被确定。
    • 123. 发明专利
    • Program and apparatus for selecting processing sort
    • 选择处理流程的程序和设备
    • JP2011086171A
    • 2011-04-28
    • JP2009239467
    • 2009-10-16
    • Toshiba CorpToshiba Solutions Corp東芝ソリューション株式会社株式会社東芝
    • KANO MAKOTO
    • G06F11/34
    • PROBLEM TO BE SOLVED: To reduce the number of monitoring data to be used for estimation operation of single resource using time.
      SOLUTION: In a processing sort selection apparatus 100, a throughput information input unit 101 receives monitoring data from a computer system 200, creates throughput information including the number of generated requests in each processing sort at each unit time based on the monitoring data and inputs the throughput information. A similarity calculation part 102 calculates similarity between processing sorts based on the input throughput information and creates similarity information indicating a similarity matrix in which the calculated similarities between processing sorts are arranged in a matrix form. A processing sort selection unit 103 classifies processing sorts in the similarity information into groups and selects any one processing sort for each group. A selection processing transmission unit 104 transmits the processing sort selected for each group to a performance arithmetic unit.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:减少用于单个资源使用时间的估计操作的监视数据的数量。 解决方案:处理排序选择装置100中,吞吐量信息输入单元101从计算机系统200接收监视数据,基于监视数据,在每个单位时间内创建包括每个处理类别中生成的请求数量的吞吐量信息 并输入吞吐量信息。 相似度计算部分102基于输入的吞吐量信息计算处理类别之间的相似度,并且创建表示以矩阵形式排列所计算的处理类别之间的相似度的相似度矩阵的相似度信息。 处理排序选择单元103将相似度信息中的处理分类为组,并且为每个组选择任何一种处理类别。 选择处理传送单元104将为每个组选择的处理类别发送到演奏运算单元。 版权所有(C)2011,JPO&INPIT
    • 125. 发明专利
    • Performance-computing device
    • 性能计算设备
    • JP2008165412A
    • 2008-07-17
    • JP2006352950
    • 2006-12-27
    • Toshiba CorpToshiba Solutions Corp東芝ソリューション株式会社株式会社東芝
    • KANO MAKOTOHIRAI JUN
    • G06F11/34
    • PROBLEM TO BE SOLVED: To adequately compute a performance value of a device even if the performance value varies due to a measurement error or a difference between processing parameters. SOLUTION: A sensitivity analysis part 2 determines totaling sections based on measurement data and generates totaling section data. An evaluation value computation part 4 computes evaluation function values based on performance parameters and the totaling section data. The sensitivity analysis part 2 computes the sensitivity of the evaluation function values to the performance parameters. The sensitivity analysis part 2 computes the vector length of each sensitivity vector. The sensitivity analysis part 2 determines that the parameters are to be corrected if the vector length S is a sensitivity threshold value or larger. A parameter updating part 5 updates the performance parameters. The sensitivity and the evaluation function values are re-computed according to the updated performance parameters. The sensitivity analysis part 2 determines that correcting the parameters is to be finished if the vector length is less than the sensitivity threshold value and outputs the performance parameters. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:即使性能值由于测量误差或处理参数之间的差异而变化,也可以充分地计算设备的性能值。 解决方案:灵敏度分析部分2基于测量数据确定总计部分,并产生总计部分数据。 评价值计算部4基于性能参数和合计部数据来计算评价函数值。 灵敏度分析部分2计算评估函数值对性能参数的灵敏度。 灵敏度分析部2计算各灵敏度矢量的矢量长度。 如果矢量长度S是灵敏度阈值或更大,灵敏度分析部分2确定要校正参数。 参数更新部5更新性能参数。 灵敏度和评估功能值根据更新的性能参数重新计算。 灵敏度分析部分2确定如果矢量长度小于灵敏度阈值则校正参数将被完成并且输出性能参数。 版权所有(C)2008,JPO&INPIT
    • 126. 发明专利
    • Method and program for developing computer system
    • 发展计算机系统的方法与程序
    • JP2007316769A
    • 2007-12-06
    • JP2006143252
    • 2006-05-23
    • Toshiba CorpToshiba Solutions Corp東芝ソリューション株式会社株式会社東芝
    • KANO MAKOTO
    • G06F9/44G06F11/34G06F11/36
    • PROBLEM TO BE SOLVED: To efficiently improve the performance of a system to be developed by selectively supporting or determining a program module largely affecting system performance. SOLUTION: In this method, the first information relating to the quantity of each business responsible for a computer system to be developed, the second information relating to relevance between each business and each process to be executed in the computer system, the third information relating to relevance between each processing and each module configuring the computer system and the fourth information relating to the processing time of each module relating to each processing are inputted to predict the performance of the computer system by using those information thereby acquiring the first prediction result, the performance of the computer system is evaluated by using the prediction result based on predetermined evaluation functions thereby acquiring a first evaluation function value, then the fourth information is finely changed in the combination of one of the respective processing and one of each module thereby obtaining sensitivity to the first evaluation function value, and then the plurality of combinations are rearranged in the order of the scale of this sensitivity. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:通过选择性地支持或确定严重影响系统性能的程序模块来有效提高要开发的系统的性能。 解决方案:在该方法中,涉及要开发的计算机系统的每个业务的数量的第一信息,与计算机系统中要执行的每个业务和每个进程之间的相关性的第二信息,第三信息 输入与每个处理和配置计算机系统的每个模块之间的相关性的信息以及与每个处理相关的每个模块的处理时间有关的第四信息,以通过使用那些信息来预测计算机系统的性能,从而获得第一预测结果 通过使用基于预定评估函数的预测结果来评估计算机系统的性能,从而获取第一评估函数值,然后在各个处理和每个模块之一的组合中精细地改变第四信息,从而获得 对第一个评估函数值的敏感度,以及 那么多个组合按照该灵敏度的尺度的顺序重新排列。 版权所有(C)2008,JPO&INPIT
    • 128. 发明专利
    • Performance arithmetic device and performance arithmetic processing program
    • 性能算术设备和性能算术处理程序
    • JP2009140358A
    • 2009-06-25
    • JP2007317578
    • 2007-12-07
    • Toshiba CorpToshiba Solutions Corp東芝ソリューション株式会社株式会社東芝
    • KANO MAKOTO
    • G06F11/34G06F11/30
    • PROBLEM TO BE SOLVED: To generate many tabulation section data for parameter identification of a performance model of an object device in a fixed time while maintaining the accuracy of the tabulation section data constant.
      SOLUTION: A tabulation section calculation part 5 sets start time of a tabulation section i, and acquires usage rate information in a fixed time from the start time in measurement data. A processing time calculation part 4 estimates resource processing time information using the resource usage rate information and a no-load time processing time. The tabulation section calculation part 5 calculates time for the tabulation section i using processing time information R and an allowable error rate, and calculates end time of the tabulation section i. The calculation part 5 transmits the start time and end time of the tabulation section i and measurement data in between to a data generation part 6. The data generation part 6 generates tabulation section data based on the start time and end time of the tabulation section i and the measurement data in between by tabulating resource use time between the start time and end time of the tabulation section i and a generation quantity of each type of processing.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了在固定时间内产生许多用于对象设备的性能模型的参数识别的制表部分数据,同时保持制表部分数据的准确性恒定。

      解决方案:列表部分计算部分5设置制表部分i的开始时间,并从测量数据中的开始时间获取固定时间的使用率信息。 处理时间计算部4使用资源使用率信息和空载时间处理时间来估计资源处理时间信息。 制表部计算部5使用处理时间信息R和容许误差率计算制表部i的时间,并计算制表部i的结束时刻。 计算部分5将制表部分i的开始时间和结束时间以及其间的测量数据发送到数据生成部分6.数据生成部分6基于制表部分i的开始时间和结束时间生成制表部分数据 以及其间的测量数据之间的列表,其中列出制表部分i的开始时间和结束时间之间的资源使用时间以及每种处理类型的生成量。 版权所有(C)2009,JPO&INPIT