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    • 6. 发明授权
    • Optimizing software change processes using real-time analysis and rule-based hinting
    • 使用实时分析和基于规则的提示优化软件更改过程
    • US09354860B2
    • 2016-05-31
    • US14331794
    • 2014-07-15
    • Peter EberleinVolker Driesen
    • Peter EberleinVolker Driesen
    • G06F9/44G06F9/445G06N5/04
    • G06F8/656G06F8/65G06F8/70G06N5/047H04L67/26H04L67/34
    • In one aspect, the present disclosure relates to a method which comprises obtaining a set of software change process parameters characterizing the particular process, based on the obtained set of software change process parameters, selecting hot spot information corresponding to the obtained set of software change process parameters, the hot spot information being based on a statistical analysis of previous software change processes and wherein the hot spot information identifies one or more steps of the multiple steps of the process during which problems have occurred in the previous processes, providing the hot spot information to the host computer system for use in the software change process and obtaining status information relating to the software change process at multiple times during the execution of the software change process, a level of detail of the status information being increased for steps of the process identified in the hot spot information.
    • 一方面,本公开涉及一种方法,其包括基于所获得的软件更改过程参数集合来获取表征特定过程的一组软件改变过程参数,选择与所获得的软件更改过程集合相对应的热点信息 参数,所述热点信息基于对先前软件改变过程的统计分析,并且其中所述热点信息标识所述处理中的多个步骤的一个或多个步骤,在所述过程中,在先前处理中已经发生问题,提供热点信息 到主机计算机系统以用于软件改变过程,并且在执行软件改变过程期间多次获得与软件改变过程相关的状态信息,状态信息的细节级别被增加以识别过程的步骤 在热点信息。
    • 10. 发明授权
    • Risk assessment of changing computer system within a landscape
    • 景观中改变电脑系统的风险评估
    • US09223985B2
    • 2015-12-29
    • US14049817
    • 2013-10-09
    • Peter EberleinVolker Driesen
    • Peter EberleinVolker Driesen
    • G06F21/00G06F21/57
    • G06F21/577
    • Embodiments assess risk posed by changing a computer system present within a landscape of other computer systems. Agents provide a central assessment engine with data relevant to considerations such as system criticality, correlation between related systems, and dependence between different systems. The criticality parameter reflects an importance of a system and a corresponding change risk impact. System correlation is measured to allow comparison between systems, and a risk of failure of a change to the systems. Dependencies between systems are measured to define a set of systems to be changed in a coordinated manner. Change statistics collected in a database, may allow correlating systems across various customers, improving accuracy of risk prediction. Embodiments may facilitate iterative planning, where a different dependency permits the definition of smaller sets of systems offering lower risk of failure upon change implementation. Embodiments may allow correlation measurement between systems and a copy created for testing.
    • 实施例评估通过改变存在于其他计算机系统的景观内的计算机系统所造成的风险。 代理提供了一个中心评估引擎,其中包括与系统关键性,相关系统之间的相关性以及不同系统之间的相关性等考虑因素相关的数据 关键性参数反映了系统的重要性和相应的变更风险影响。 测量系统相关性以允许系统之间的比较,以及系统发生故障的风险。 测量系统之间的相关性以定义要以协调的方式改变的一组系统。 更改在数据库中收集的统计信息,可能允许各种客户之间的关联系统,提高风险预测的准确性。 实施例可以促进迭代规划,其中不同的依赖性允许定义较小的系统集合,在更改实施时提供较低的故障风险。 实施例可以允许系统之间的相关测量和为测试创建的副本。