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    • 11. 发明授权
    • Common modeling of data access and provisioning for search, query, reporting and/or analytics
    • 用于搜索,查询,报告和/或分析的数据访问和配置的通用建模
    • US08719224B2
    • 2014-05-06
    • US12847409
    • 2010-07-30
    • Wolfgang PfeiferGerrit Simon KazmaierBaré SaidJan Teichmann
    • Wolfgang PfeiferGerrit Simon KazmaierBaré SaidJan Teichmann
    • G06F17/30
    • G06F17/30554G06F17/30592G06Q10/067
    • A system includes first metadata defining a business object object model, and second metadata defining a first object model to define a query on the business object object model. The first object model is an instance of a business object view metadata model, and the business object object model is an instance of a business object metadata model. In some aspects, a request is received to retrieve a result element associated with a query on a business object, the business object comprising an instance of a business object object model, and the business object is instantiated based on first metadata defining the business object object model. An instance of a business object view object model is instantiated based on second metadata defining the business object view object model, the instance of the business object view object model defining the query on the business object.
    • 系统包括定义业务对象对象模型的第一元数据和定义第一对象模型以定义业务对象对象模型上的查询的第二元数据。 第一个对象模型是业务对象视图元数据模型的实例,业务对象对象模型是业务对象元数据模型的实例。 在一些方面,接收到请求以检索与业务对象上的查询相关联的结果元素,所述业务对象包括业务对象对象模型的实例,并且业务对象基于定义业务对象对象的第一元数据被实例化 模型。 业务对象视图对象模型的实例基于定义业务对象视图对象模型的第二元数据实例化,业务对象视图对象模型的实例定义业务对象上的查询。
    • 12. 发明申请
    • SYSTEMS AND METHODS FOR METAMODEL TRANSFORMATION
    • METAMODEL转换的系统和方法
    • US20130174116A1
    • 2013-07-04
    • US13339618
    • 2011-12-29
    • Wolfgang Pfeifer
    • Wolfgang Pfeifer
    • G06F9/44
    • G06F8/10G06F8/35
    • Some aspects relate to systems to determine a first metamodel conforming to a first meta-metamodel supporting metamodel class inheritance at the first metamodel level, identify one or more segments of an aggregation-free tree of nodes of the first metamodel, identify a lowest-level node of one of the one or more segments, identify all higher-level nodes of the one of the one or more segments, and consolidate attributes of each of the identified nodes of the one of the one or more segments into a node of a second metamodel conforming to a second meta-metamodel.
    • 一些方面涉及确定符合第一元模型的第一元模型的第一元模型在第一元模型级上支持元模型类继承的系统,识别第一元模型的节点的无聚集树的一个或多个段,识别最低级别 所述一个或多个片段之一的节点识别所述一个或多个片段中的一个节点的所有较高级节点,并且将所述一个或多个片段中的一个节点的每个已标识节点的属性合并到第二节点的节点中 元模型符合第二个元模型。
    • 13. 发明申请
    • Common Modeling of Data Access and Provisioning for Search, Query, Reporting and/or Analytics
    • 用于搜索,查询,报告和/或分析的数据访问和配置的通用建模
    • US20120030256A1
    • 2012-02-02
    • US12847409
    • 2010-07-30
    • Wolfgang PfeiferGerrit Simon KazmaierBaré SaidJan Telchmann
    • Wolfgang PfeiferGerrit Simon KazmaierBaré SaidJan Telchmann
    • G06F17/30
    • G06F17/30554G06F17/30592G06Q10/067
    • A system includes first metadata defining a business object object model, and second metadata defining a first object model to define a query on the business object object model. The first object model is an instance of a business object view metadata model, and the business object object model is an instance of a business object metadata model.In some aspects, a request is received to retrieve a result element associated with a query on a business object, the business object comprising an instance of a business object object model, and the business object is instantiated based on first metadata defining the business object object model.An instance of a business object view object model is instantiated based on second metadata defining the business object view object model, the instance of the business object view object model defining the query on the business object; and the result element is retrieved from a persistent storage based on the instantiated business object and the instance of the business object view object model.
    • 系统包括定义业务对象对象模型的第一元数据和定义第一对象模型以定义业务对象对象模型上的查询的第二元数据。 第一个对象模型是业务对象视图元数据模型的实例,业务对象对象模型是业务对象元数据模型的实例。 在一些方面,接收到请求以检索与业务对象上的查询相关联的结果元素,所述业务对象包括业务对象对象模型的实例,并且业务对象基于定义业务对象对象的第一元数据被实例化 模型。 基于定义业务对象视图对象模型的第二元数据,业务对象视图对象模型的实例来定义商业对象视图对象模型的实例。 并且基于实例化的业务对象和业务对象视图对象模型的实例从持久存储器检索结果元素。
    • 15. 发明授权
    • Turret device
    • 转塔装置
    • US6016729A
    • 2000-01-25
    • US945392
    • 1997-10-27
    • Wolfgang PfeiferKenji SugimotoHiroshi Shinohara
    • Wolfgang PfeiferKenji SugimotoHiroshi Shinohara
    • B23B3/16B23B29/24B23B29/32B23Q16/06
    • B23B3/168B23B29/242B23Q16/065Y10S82/905Y10T29/5155Y10T408/37Y10T82/2508Y10T82/2539Y10T82/2587
    • Positioning engaging members (27) are provided between a base table (10) and a turret (11) which is indexed relative to the base table (10) by a driving force of an indexing/tool turning motor (32) so as to be engageable with or disengageable from each other. The positioning engaging members (27) engage with each other to prevent the turret (11) from turning. Further, the driving force of the indexing/tool turning motor (32) is transmitted or not transmitted to the turret (11) by clutch pieces (31). The driving force of the indexing/tool turning motor (32) is transmitted to a turning tool (14) mounted on tool mounting portions (12) of the turret (11) via a power transmission member. The positioning engaging members (27) engage with or disengage from each other by an engaging unit. Further, the engaging means interlocks with the disengagement between the positioning engaging members (27) to permit the clutch pieces (31) to engage with each other while the engaging unit interlocks with the engagement between the positioning engaging members (27) to permit the clutch pieces (31) to disengage from each other.
    • PCT No.PCT / JP96 / 03660 Sec。 371日期1997年10月27日第 102(e)日期1997年10月27日PCT 1996年12月13日PCT公布。 第WO98 / 25722号公报 日期1998年6月18日定位接合构件(27)设置在基台(10)和转台(11)之间,转塔(11)通过分度/工具转动电机(32)的驱动力相对于基台 ),以便彼此接合或可分离。 定位接合构件(27)彼此接合以防止转台(11)转动。 此外,转位/转动电动机(32)的驱动力通过离合器片(31)传递或不传递到转台(11)。 转位/转向马达(32)的驱动力经由动力传递部件传递到安装在转台(11)的工具安装部(12)上的转动工具(14)。 定位接合构件(27)通过接合单元彼此接合或分离。 此外,接合装置与定位接合构件(27)之间的分离互锁,以允许离合器片(31)彼此接合,同时接合单元与定位接合构件(27)之间的接合互锁,以允许离合器 (31)彼此脱离。
    • 16. 发明授权
    • Indexing device and method of driving the same
    • 分度装置及其驱动方法
    • US5842392A
    • 1998-12-01
    • US945393
    • 1997-10-27
    • Wolfgang PfeiferKenji SugimotoHiroshi Shinohara
    • Wolfgang PfeiferKenji SugimotoHiroshi Shinohara
    • B23B3/16B23Q16/06B23B9/00B23B39/20
    • B23B3/168B23Q16/06Y10T408/37Y10T82/10Y10T82/2506Y10T82/2508
    • There are provided a pair of positioning engaging members (27) which are engageable with or disengageable from each other between a base table (10) and a turret (11), and the turret (11) is prevented from rotating when the positioning engaging members (27) engage with each other. The turning of a ball screw (21) or a nut (25) is changed to a linear motion of the turret (11) by a screw feed mechanism comprising the ball screw (21) and nut (25) for performing engagement and disengagement between the positioning engaging members (27). The screw feed mechanism is driven by a first motor (24), and the turret (11) is indexing by a second motor (32). When the second motor (32) is driven to index the turret (11), the first motor (24) rotates in a given rotating direction with a given ratio of rotating speed relative to the rotation of the second motor (32) so as to make the relative turning between the ball screw (21) and nut (25) of the screw feed mechanism zero, thereby preventing the linear motion of the positioning engaging members (27).
    • PCT No.PCT / JP96 / 03656 Sec。 371日期1997年10月27日第 102(e)日期1997年10月27日PCT 1996年12月13日PCT公布。 公开号WO98 / 25729 日期1998年6月18日设置有一对在基台(10)和转台(11)之间可彼此接合或可分离的定位接合构件(27),并且防止转台(11)旋转 当定位接合构件(27)彼此接合时。 滚珠丝杠(21)或螺母(25)的转动通过包括滚珠丝杠(21)和螺母(25)的螺旋进给机构改变为转台(11)的直线运动,用于执行啮合和分离 定位接合构件(27)。 螺钉进给机构由第一马达(24)驱动,转台(11)由第二马达(32)分度。 当驱动第二马达(32)以对转塔(11)进行分度时,第一马达(24)以相对于第二马达(32)的旋转的给定旋转速度的给定旋转方向旋转,从而 使螺杆进给机构的滚珠丝杠(21)和螺母(25)之间的相对转动为零,从而防止定位卡合部件(27)的直线运动。
    • 17. 发明申请
    • METADATA MODEL REPOSITORY
    • 元数据模型报告
    • US20150081744A1
    • 2015-03-19
    • US14552270
    • 2014-11-24
    • Wolfgang PfeiferBaré SaidGerrit Simon Kazmaier
    • Wolfgang PfeiferBaré SaidGerrit Simon Kazmaier
    • G06F17/30G06Q10/10
    • G06F16/21G06F9/4488G06Q10/10
    • A system includes a data structure comprising a business object metadata model describing a generic business object model, executable program code of a transactional service to create a second data structure comprising a specific business object model based on the business object metadata model, and a persistent storage to store the second data structure comprising the specific business object model. Some aspects include creation of an electronic data structure comprising a business object metadata model describing a generic business object model, execution, using a processor, of program code of a transactional service to create a second electronic data structure comprising a specific business object model based on the business object metadata model, and storage of the second electronic data structure comprising the specific business object model in a persistent storage.
    • 系统包括数据结构,其包括描述通用业务对象模型的业务对象元数据模型,事务服务的可执行程序代码,以创建包括基于业务对象元数据模型的特定业务对象模型的第二数据结构,以及持久存储 以存储包括特定业务对象模型的第二数据结构。 一些方面包括创建电子数据结构,该电子数据结构包括描述一般业务对象模型的业务对象元数据模型,使用处理器执行事务性服务的程序代码,以创建第二电子数据结构,该第二电子数据结构包括基于 业务对象元数据模型,以及将包含特定业务对象模型的第二电子数据结构存储在持久存储器中。
    • 18. 发明申请
    • LIFECYCLE MANAGEMENT AND CONSISTENCY CHECKING OF OBJECT MODELS USING APPLICATION PLATFORM TOOLS
    • 使用应用平台工具进行对象模型的生命周期管理和一致性检查
    • US20100161676A1
    • 2010-06-24
    • US12339368
    • 2008-12-19
    • Gerrit Simon KazmaierBare SaidWolfgang Pfeifer
    • Gerrit Simon KazmaierBare SaidWolfgang Pfeifer
    • G06F17/30G06F7/00
    • G06F9/4488
    • A method includes a data structure comprising a status and action management schema associated with an object model development lifecycle. A status and action management service operates to determine a lifecycle state of a first object model based on the status and action management schema, receive a request to perform a lifecycle action on the first object model, determine, based on the lifecycle state and the status and action management schema, whether the lifecycle action is allowed to be performed, and, if so, allow the lifecycle action to be performed.A business object processing framework may detect a trigger event associated with an object model, execute validation code associated with the trigger event and the object model to evaluate a constraint of the object model, and return a result of the evaluation.
    • 一种方法包括包括与对象模型开发生命周期相关联的状态和动作管理模式的数据结构。 状态和动作管理服务用于基于状态和动作管理模式来确定第一对象模型的生命周期状态,接收对第一对象模型执行生命周期动作的请求,基于生命周期状态和状态 和行动管理架构,是否允许执行生命周期操作,如果是,则允许执行生命周期操作。 业务对象处理框架可以检测与对象模型相关联的触发事件,执行与触发事件相关联的验证码和对象模型以评估对象模型的约束,并返回评估结果。
    • 20. 发明授权
    • Communication between computers operating in different object-oriented run-time environments
    • 在不同的面向对象的运行时环境中运行的计算机之间的通信
    • US07493629B2
    • 2009-02-17
    • US10788901
    • 2004-02-27
    • Wolfgang Pfeifer
    • Wolfgang Pfeifer
    • G06F3/00G06F9/44G06F9/46G06F13/00
    • G06F9/548G06F9/541
    • First and second computers (901, 902) operate in first and second object-oriented run-time environments with first and second applications (201, 202) and corresponding objects (A1/A2, B1/B2, C1/C2). Initiated by a communicator (101) and supported by a network (990), the first computer (901) sends a message (GET 111, SET 121, INSTRUCT 131) with object and action identification to the second computer (902). The second computer (902) uses an interpreter (102) to identify an object (A2, 152) in the second run-time environment according to the object identification. The interpreter (102) further verifies the existence of the identified action for the object (A2, 152) in the second run-time environment and determines (403) a representation of the action in the second run-time environment for the identified object (A2, 156). The interpreter (102) then executes the action by using the representation. Thereby, the interpreter (102) calls properties and methods of the identified object (A2, 156).
    • 第一和第二计算机(901,902)在具有第一和第二应用(201,202)和对应对象(A1 / A2,B1 / B2,C1 / C2)的第一和第二面向对象运行时环境中操作。 由第一计算机(901)由通信器(101)发起并由网络(990)支持,向第二计算机(902)发送具有对象和动作标识的消息(GET 111,SET 121,INSTRUCT 131)。 第二计算机(902)使用解释器(102)根据对象标识识别第二运行时环境中的对象(A2,152)。 解释器(102)进一步验证在第二运行时环境中对于对象(A2,152)所识别的动作的存在,并且确定(403)针对所识别的对象的第二运行时环境中的动作的表示( A2,156)。 解释器(102)然后通过使用表示来执行动作。 因此,解释器(102)调用所识别的对象(A2,156)的属性和方法。