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    • 1. 发明申请
    • SYSTEM AND METHOD FOR CONFIGURING AND/OR PARAMETERIZING AN DIAGNOSTIC DEVICE
    • 系统和方法,用于配置和/或设置诊断装置
    • WO99054702A1
    • 1999-10-28
    • PCT/DE1999/001112
    • 1999-04-14
    • A61B5/00G01D21/00G01H1/00G01M7/02G01M15/00G06F19/00G07C3/14
    • G07C3/14Y10S706/911Y10S706/912Y10S706/914Y10S706/919
    • The invention relates to a system (8) and a method for configuring and/or parameterizing a diagnostic device (4) for objects (3) that are to be tested. The system consists of a first data object (1) with a set of technological test object parameters (PK1, PK2 à PKz) of the object to be tested (3) and the components (3a ... 3n) thereof, a second data object (2) with a set of technological parameters (HWType I, HWType II, à) of hardware components of the diagnostic device (4), a first program object (5) with data records (7) for allocating at least test object parameters (PK1, PK2 à PKz) and technological parameters (HWType I, HWType II, à) of hardware components and a second program object (6) for processing the data records (7) allocated in the first program object (5). A knowledge base is established on the basis of the data and program objects that enables automatic configuring and/or parameterization of the diagnostic device, test structure and evaluation included, substantially controlled by the knowledge of the system and that significantly reduces the complexity of such a construction.
    • 本发明涉及一种系统(8)和用于测试对象(3)的诊断装置(4)的配置和/或参数化的方法。 该系统包括一个第一数据对象(1)的与所述对象的技术试验对象参数(PK1,PK2 ... PKZ)的集合被(3)检查和其部件(3A ... 3N),第二数据对象(2) 与所述诊断装置(4)的硬件组件的技术参数的集合(HWType I,HWType II,...),从第一程序对象(5)记录(7),用于至少(的测试对象PK1,PK2 ... PKZ分配 与硬件部件和用于处理(在第一程序对象5)记录的第二程序对象(6)相关联)和工艺参数(HWType I,II HWType,......)(7)。 通过数据和程序对象被创建的知识库,导致总共的基本上自动地从系统配置和/或包括测试设置和评价结果以及用于这种制备的成本诊断装置的参数的知识来控制显着降低。
    • 2. 发明申请
    • AUTOMATED PROBLEM FORMULATOR AND SOLVER
    • 自动化问题解决方案
    • WO1995029448A1
    • 1995-11-02
    • PCT/US1995004902
    • 1995-04-21
    • IDEATION INTERNATIONAL, INC.
    • IDEATION INTERNATIONAL, INC.ZLOTIN, BorisBUSHUEV, DmitryHAIMOV, EugeneMALKIN, SergeyZUSMAN, AllaTIKHONOV, AlexeyPEVNEV, Vladimir
    • G06F15/18
    • G06N5/003Y10S706/911Y10S706/919
    • A computer implemented apparatus to identify problems that exist in a real-world system and to assist in finding a solution to such problems. The apparatus receives a description of the real-world system as input (14). A problem formulator (12) produces a graph (16) representing the description of the real-world system. The problem formulator also determines if the graph complies with a set of structural rules and parses the graph to produce an ordered list of problem statements (18). A memory stores a network of operators (26), each operator linked to at least one other operator in the network of operators. Each operator includes a recommendation for solving a problem, and can also include an example of the application of the recommendation. The links between the operators represent historical routes to solutions to problems. A problem solver (20) enables a user to traverse the network of operators to locate at least one operator (30) relevant to a problem to be solved (24).
    • 一种计算机实现的装置,用于识别存在于现实系统中的问题并帮助找到解决这些问题的方案。 该设备接收现实世界系统的描述作为输入(14)。 问题制定者(12)产生表示真实世界系统的描述的图形(16)。 问题制定者还可以确定图表是否符合一组结构规则,并解析图形以产生问题语句的有序列表(18)。 存储器存储运营商网络(26),每个运营商链接到运营商网络中的至少一个其他运营商。 每个运营商都包括一个解决问题的建议,并且还可以包括推荐应用的一个例子。 运营商之间的联系代表解决问题的历史路线。 问题求解器(20)使得用户能够遍历操作者的网络以找到与要解决的问题相关的至少一个操作者(30)(24)。
    • 6. 发明申请
    • COMPUTER SYSTEM INCLUDING MEANS FOR DECISION SUPPORT SCHEDULING
    • 包括决策支持调度手段的计算机系统
    • WO1996016365A2
    • 1996-05-30
    • PCT/IB1995001160
    • 1995-11-14
    • SUN OPTECH, LTD.KOSKI, Robert, E.BARLOW, ChristopherHenderson, Kenneth, R.
    • SUN OPTECH, LTD.
    • G06F00/00
    • G06Q10/06Y10S706/919
    • A demand driven pull-through computerized decision support scheduling system - The Cube System - employing a CUBEBOOKING Program operating in near real time to load Jobs (a sequence of predefined process) in Cube Cells at a Workspace in Time defined in a selected Cube World in response to demand place on the Cube World by a customer order, which program allocates the best available resources to produce products (Product Resources) composed of materials (Material Resources on a Positive Bill of Materials) having Features (contained in a Negative Bill of Materials). The Cube System operates to keep track of alternate probable process paths by scoring systems and retains resource usage production history patterns as Prime Data to resolve conflicts between capacity-limited resources (Resource Contentions). The CUBEVIEW Program provides three-dimensional representations of Demand and Supply of Resources (displayed on the z axis) at Workspaces (displayed on the y axis) in Time (displayed on the x axis) by a series of Cube Views, and displays Resource contentions, the presence of which requires user intervention to rotate the cube display to examine the z, y axis (Resources, z, on the horizontal axis; Workspaces y, again on the vertical axis, at time = 0, a given Time Cell) for contentions. Using the view the system recommends alternative reallocation of Resources to other Workspaces to eliminate Resource Contentions in the various Cube Cells.
    • 需求驱动的拉通计算机化决策支持调度系统 - 立方体系统 - 采用CUBEBOOKING程序,以实时的方式加载在选定的立方体世界中定义的时间工作区中的多维数据集单元中的作业(一系列预定义的过程) 通过客户订单对立方世界的需求响应,该计划分配最佳可用资源,以生产由材料(材料资源正面材料)组成的产品(产品资源),其具有特征(包含在负面的物料清单中) )。 多维数据集系统通过评分系统来跟踪备用可能的流程路径,并将资源使用生产历史模式保留为主数据,以解决容量受限资源(资源争用)之间的冲突。 CUBEVIEW程序通过一系列立方体视图在时间(显示在x轴上)的工作区(在y轴上显示)上显示资源的需求和供给(在z轴上显示)的三维表示,并显示资源争用 ,其存在需要用户干预来旋转立方体显示以检查z,y轴(在水平轴上的资源,z,在垂直轴上的工作空间y,时间= 0,给定时间单元),用于 争论。 使用该视图,系统建议将资源替代重新分配给其他工作区,以消除各种立方体单元中的资源争用。
    • 7. 发明申请
    • GEOMETRIC INFERENCE ENGINE
    • 几何推理发动机
    • WO1993007572A1
    • 1993-04-15
    • PCT/US1992008472
    • 1992-10-05
    • ASHLAR INCORPORATEDNEWELL, Martin, EdwardFITZPATRICK, Daniel, Thomas
    • ASHLAR INCORPORATED
    • G06F15/20
    • G06F3/04812G06F3/04842G06F3/04845G06T11/20G06T17/00Y10S706/919Y10S715/964
    • System and methods for the creation graphic images (1200) include automatic pull-off creation and maintenance of tangent and perpendicular lines, creation and maintenance of objects satisfying mutual geometric relationships, the identification and processing of visual intersections (1202), and alignment in 3D space. Other techniques of the present invention include the automatic recognition of interesting points (1310), the use of screen messages to identify points (1201), the use of a secondary cursor, the creation of temporary geometry, the examination of interesting points (1310) which arise from actual geometry, temporary geometry, and/or the interaction of actual and temporary geometry, an precise graphic operations (e.g., drawing and transformations) with the assistance of interesting points (1310).
    • 用于创建图形图像的系统和方法(1200)包括自动切断创建和维护切线和垂直线,创建和维护满足相互几何关系的对象,识别和处理视觉交点(1202)以及3D中的对齐 空间。 本发明的其他技术包括自动识别感兴趣点(1310),使用屏幕消息来识别点(1201),使用次光标,创建临时几何,检查有趣点(1310) 这是由实际的几何形状,临时几何形状和/或实际和临时几何的相互作用产生的,精确的图形操作(例如绘图和变换)在有趣的点的帮助下(1310)。
    • 8. 发明申请
    • COMPUTERIZED SYSTEM FOR MARKET-BASED CONSTRAINT OPTIMIZATION
    • 基于市场约束优化的计算机系统
    • WO99005579A1
    • 1999-02-04
    • PCT/US1998/015279
    • 1998-07-23
    • G05B13/02
    • G05B13/024G06Q10/0635Y10S706/919
    • An apparatus for determining assignments to attributes (e.g., electrical power or overall dimensional size) of components (40) within a system. A computerized constraint network (98) is constructed which uses constraint agents (124), variable agents (128), and task agents (132) in order to make assignments to the attributes of the components based upon market-based constraint optimization techniques. The attributes have variables (28) indicative of the assignments to the attributes. Constraint data structures (150) assist the agents in determining permissible assignments for the variables (28). The constraint data structures (150) use preferential rules (152) for determining the assignments to the variables (28). The preferential rules (152) indicate which assignments for the variables (28) of the agents produce higher utility and lower cost.
    • 一种用于确定系统内的组件(40)的属性(例如,电功率或整体尺寸大小)的分配的装置。 构建计算机化约束网络(98),其使用约束代理(124),可变代理(128)和任务代理(132),以便基于基于市场的约束优化技术来对组件的属性进行分配。 这些属性具有指示属性分配的变量(28)。 约束数据结构(150)协助代理人确定变量(28)的允许分配。 约束数据结构(150)使用优先规则(152)来确定对变量(28)的分配。 优惠规则(152)表明代理商的变量(28)的哪些分配产生更高的效用和更低的成本。
    • 9. 发明申请
    • PROCESS FOR THE AUTOMATIC MACHINE PRODUCTION OF ENGINEERING DATA
    • 程序用于制造单据的自动机器生产
    • WO1998008173A1
    • 1998-02-26
    • PCT/EP1997004441
    • 1997-08-14
    • DAIMLER-BENZ AKTIENGESELLSCHAFTJÜNGST, Ernst-Werner
    • DAIMLER-BENZ AKTIENGESELLSCHAFT
    • G06F17/60
    • G06Q10/06G06F17/30958Y10S706/919Y10S715/964
    • A process is disclosed for the machine production of engineering data of products made of components assembled according to individual specifications. The original schematic drawing, which acts as a generaic representation of the product variation spectrum, and in which all possible components of the product are represented by at least one symbol, is coded and stored in the memory of the information processing equipment. The conditions for the presence of components or operation means of components in a specific design of the product are stored in the memory in such a way that they are associated with the symbols of the original schematic drawing which correspond to the components or to the operating means of the components. According to this process, a target schematic drawing is generated by checking on the basis of the specification values if the conditions associated with each symbol of the original schematic drawing are fulfilled, and by deciding depending on the check results (and possibly on other criteria) if and how the symbol in question will be integrated into the target schematic drawing. The target schematic drawing serves as engineering data.
    • 对于那些根据组分的单独规格组装产品的自动生成制造文件,公开了一种方法,其中原始示意图,其用作该产品的变化的频谱的通用表示,和对应于产品的至少一个符号的每一个可能的组分 在信息处理系统的存储器编码被存储。 为组分的或在该产品的满足规范表达式成分的资源的存在的条件被存储在存储器中,使得它们被分配给原始示意图的符号,其对应于该部件的组件或资源。 根据该方法,可通过相关的条件是否被满足,用于与说明书的值的帮助下,原始示意图的所有符号检查,并且根据测试结果生成的目标示意图(或从这个和其他观点),则判断是否( 或是否和如果是,如何)被采用所述目标示意图中的符号。 目标示意图用作生产基地。