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    • 2. 发明授权
    • Method for generating a plurality of optimized wavefronts for a multiple exposure lithographic process
    • 用于产生用于多次曝光光刻工艺的多个优化波前的方法
    • US08495528B2
    • 2013-07-23
    • US12890854
    • 2010-09-27
    • Saeed BagheriKafai LaiDavid O. MelvilleAlan E. RosenbluthKehan TianJaione Tirapu Azpiroz
    • Saeed BagheriKafai LaiDavid O. MelvilleAlan E. RosenbluthKehan TianJaione Tirapu Azpiroz
    • G06F17/50
    • G03F7/70466G03F1/70
    • A simplified version of a multiexpose mask optimization problem is solved in order to find a compressed space in which to search for the solution to the full problem formulation. The simplification is to reduce the full problem to an unconstrained formulation. The full problem of minimizing dark region intensity while maintaining intensity above threshold at each bright point can be converted to the unconstrained problem of minimizing average dark region intensity per unit of average intensity in the bright regions. The extrema solutions to the simplified problem can be obtained for each source. This set of extrema solutions is then assessed to determine which features are predominantly printed by which source. A minimal set of extrema solutions serves as a space of reduced dimensionality within which to maximize the primary objective under constraints. The space typically has reduced dimensionality through selection of highest quality extrema solutions.
    • 解决了一个简化版本的多功能面罩优化问题,以便找到一个压缩空间,在该空间中搜索解决问题的全部问题。 简化是将完整的问题减少到无约束的公式。 将每个亮点处的强度保持在阈值以上的暗区强度最小化的问题可以转化为明亮区域每单位平均强度平均暗区强度最小化的无约束问题。 可以为每个源获得简化问题的极值解。 然后评估这组极值解决方案,以确定哪些特征主要由哪个来源打印。 最小的一组极值解决方案作为减小维数的空间,在这个空间内可以在约束条件下最大化主要目标。 该空间通常通过选择最高质量的极值解决方案降低维度。
    • 3. 发明授权
    • Scheduling resources from a multi-skill multi-level human resource pool
    • 从多技能多级人力资源池调度资源
    • US08407073B2
    • 2013-03-26
    • US12868027
    • 2010-08-25
    • Saeed BagheriJarir K. ChaarYi-Min CheeDaniel V. OppenheimKrishna C. RatakondaNianjun Zhou
    • Saeed BagheriJarir K. ChaarYi-Min CheeDaniel V. OppenheimKrishna C. RatakondaNianjun Zhou
    • G06Q10/00
    • G06Q10/063112
    • Each work item from a group of work items is categorized as either complex or intense, and a unique work requirement statement is derived for each work item based on whether it is complex or intense. A unique resource value statement is assigned to different human resources. Past performances of the human resources are analyzed against completed work items in order to adjust the unique resource value statement, thus creating updated human resource value statements. An optimized work requirement statement is created by recalculating the unique work requirement statement for each work item based on the updated human resource value statements. A schedule for automated allocation of human resources to functional areas of an enterprise activity environment and scheduling of work items to the functional areas is formulated based on the optimized requirement statement for each work item in the group of work items.
    • 来自一组工作项目的每个工作项目被分类为复杂的或激烈的,并且基于其是复杂的还是强烈的,为每个工作项目导出独特的工作需求语句。 独特的资源价值声明被分配给不同的人力资源。 对完成的工作项目对人力资源的过往表现进行分析,以调整独特的资源价值声明,从而创建更新的人力资源价值报表。 通过基于更新的人力资源价值语句重新计算每个工作项的唯一工作需求语句来创建优化的工作需求语句。 基于对工作项目组中每个工作项目的优化需求声明,制定了将人力资源自动分配给企业活动环境功能区域和对功能区域的工作项目进行调度的时间表。
    • 5. 发明申请
    • Delivery Management Effort Allocation
    • 交付管理努力分配
    • US20120136690A1
    • 2012-05-31
    • US12956412
    • 2010-11-30
    • Saeed BagheriKrishna RatakondaRose Williams
    • Saeed BagheriKrishna RatakondaRose Williams
    • G06Q10/00
    • G06Q10/06312G06Q10/0635
    • Techniques for estimating future health of a project are provided. The techniques include defining a set of financial health metrics that represent a proximity of a current state of a project to that of a goal project, defining a parametric evolution model comprising parameters, wherein the parametric evolution model governs a relationship between current data of the set of financial health metrics and current project health in relation to past data of the set of financial health metrics, determining a value of each of the parameters of the parametric evolution model using an optimization problem, and using the value of each of the parameters of the parametric evolution model and the current data of the set of financial health metrics and current project health in relation to past data of the set of financial health metrics to estimate the future health of the project.
    • 提供了估算项目未来健康的技术。 这些技术包括定义一组财务健康度量,其代表项目的当前状态与目标项目的状态接近,定义包括参数的参数演化模型,其中参数演化模型控制该组的当前数据之间的关系 与财务健康度量集合的过去数据相关的财务健康指标和当前项目健康状况,使用优化问题确定参数演化模型的每个参数的值,并使用每个参数的值 参数演化模型以及财务健康指标集和当前项目健康状况与当前财务健康指标集过去数据的当前数据,以估计项目的未来健康状况。
    • 8. 发明授权
    • Management of template versions
    • 管理模板版本
    • US08689176B2
    • 2014-04-01
    • US13105084
    • 2011-05-11
    • Saeed BagheriJarir K. ChaarYi-Min CheeFeng LiuDaniel V. OppenheimKrishna C. Ratakonda
    • Saeed BagheriJarir K. ChaarYi-Min CheeFeng LiuDaniel V. OppenheimKrishna C. Ratakonda
    • G06F9/44
    • G06F17/248G06F17/2288G06Q10/10
    • A computer implemented method, system, and/or computer program product modifies a master template for an executable document. A version architecture comprises a master template for a master document, a new variation document that describes what changes are to be made to the master template for a specific context, and a resulting modified template based on the master template and rule-based instructions found in the new variation document. A processor defines an executable master document from the master template that, when executed, produces a final product. Specific rules set out conditions for modifying the master template for the specific context. These specific rules are used to define a new variation document, which is applied against the master template to generate a context-specific modified template. The context-specific modified template is then used to generate a context-specific executable document that, when executed, generates a final context-specific product.
    • 计算机实现的方法,系统和/或计算机程序产品修改可执行文档的主模板。 版本架构包括主文档的主模板,描述对特定上下文对主模板进行什么更改的新变体文档,以及基于主模板和基于规则的指令的结果修改模板 新的变化文件。 处理器从主模板定义可执行主文档,当执行时,它生成最终产品。 具体规则规定了修改特定上下文的主模板的条件。 这些特定规则用于定义新的变体文档,该文档适用于主模板以生成上下文特定的修改模板。 然后使用上下文特定的修改的模板来生成上下文特定的可执行文档,该文件在执行时生成最终上下文特定的产品。