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    • 41. 发明授权
    • Optimizing placement of circuit resources using a globally accessible placement memory
    • 使用全局可访问的放置内存优化电路资源的布局
    • US09418188B1
    • 2016-08-16
    • US15010214
    • 2016-01-29
    • International Business Machines Corporation
    • David J. HathawayNathaniel D. HieterShyam RamjiAlexander J. Suess
    • G06F17/50
    • G06F17/505G06F17/5022G06F17/5072G06F2217/04
    • A method, executed by one or more processors, for optimizing placement of a logic network, includes partitioning a logic network into a set of logic partitions, launching a set of placement optimization threads that correspond to the logic partitions, and allocating memory that is accessible to the placement optimization threads to provide a globally accessible placement memory for reserving placement locations on the integrated circuit. Each placement optimization thread may be configured to conduct the operations of determining a desired location for a logic element, reserving a set of potential locations for the logic element, determining a best location from the set of potential locations, and placing the logic element to the best location. Each placement optimization thread may also be configured to release each of the potential locations that are not the best location. A corresponding computer program product and computer system are also disclosed herein.
    • 由一个或多个处理器执行的用于优化逻辑网络的布置的方法包括将逻辑网络划分成一组逻辑分区,启动与逻辑分区对应的一组放置优化线程,以及分配可访问的存储器 到放置优化线程以提供用于在集成电路上保留放置位置的全局可访问的放置存储器。 每个布置优化线程可以被配置为执行确定逻辑元件的期望位置的操作,为逻辑元件保留一组潜在位置,从该潜在位置集合确定最佳位置,以及将逻辑元件放置到 最好的位置。 每个放置优化线程也可以被配置为释放不是最佳位置的每个潜在位置。 本文还公开了相应的计算机程序产品和计算机系统。
    • 48. 发明申请
    • SYSTEM AND METHOD FOR ENGINEERING AND DETAILING STEEL JOINTS IN A STEEL STRUCTURE
    • 钢结构中钢结构工程与制造的系统与方法
    • US20150317415A1
    • 2015-11-05
    • US14704813
    • 2015-05-05
    • QNECT LLC
    • Henry LedermanJeffrey Alan HausthorIlya PonomarevDaniel George Grubbs
    • G06F17/50
    • G06F17/5004G06F2217/04
    • A system for engineering and detailing joints in a steel structure includes a compute device that is electronically linked with a web-enabled server. In use, the system engages in an automated process of connecting the various joints in the steel structure by first collecting basic connection preferences via the compute device. Additionally, raw data is extracted from a computer model of the steel structure on the compute device. Using the connection preferences and raw data, the server analyzes framing interrelationships and engineers the connection details for each joint based upon connection preferences and load requirements. Taking into account the connection details of other local joints in the steel structure, the server utilizes an iterative engineering process to ensure that the connection details satisfy structural loads in a cost-effective fashion. Upon completion, the engineered connection details are uploaded back into the computer model of the steel structure on the compute device.
    • 用于在钢结构中工程和详细描述接头的系统包括与启用Web的服务器电子连接的计算设备。 在使用中,系统通过首先通过计算设备收集基本的连接偏好来参与连接钢结构中的各种关节的自动化过程。 另外,从计算设备上的钢结构的计算机模型中提取原始数据。 使用连接首选项和原始数据,服务器根据连接首选项和负载要求分析每个关节的框架相互关系和工程师的连接细节。 考虑到钢结构中其他局部接头的连接细节,服务器利用迭代工程过程,确保连接细节以成本效益的方式满足结构载荷。 完成后,工程连接细节将被上传回计算设备上钢结构的计算机模型。
    • 49. 发明申请
    • FLEXIBLE CAD FORMAT
    • 灵活的CAD格式
    • US20150317413A1
    • 2015-11-05
    • US14494954
    • 2014-09-24
    • FUJITSU LIMITED
    • Serban GEORGESCUPeter CHOWTetsuyuki KUBOTAKouji DEMIZU
    • G06F17/50
    • G06F17/50G06F17/5018G06F2217/04G06T17/20
    • A method of translating a Computer Aided Design CAD model of a product constructed for Computer Aided Engineering CAE analysis into a flexible form, the method comprising: converting the original CAD model into a different format to provide a new-format CAD model; providing visualization data including: an assembly tree extracted from the original CAD model, the assembly tree including each component of the assembly forming the product; and visualization information from the original CAD model for each assembly face in the assembly tree; and providing geometry information including matching information unambiguously identifying each assembly face; wherein the geometry information allows the assembly faces to be matched with the CAD faces in the new-format CAD model.
    • 将计算机辅助工程CAE分析构建的产品的计算机辅助设计CAD模型转换为灵活形式的方法,所述方法包括:将原始CAD模型转换成不同格式以提供新格式的CAD模型; 提供可视化数据,包括:从原始CAD模型提取的装配树,所述装配树包括形成产品的组件的每个部件; 以及来自装配树中每个装配面的原始CAD模型的可视化信息; 以及提供包括匹配信息的几何信息,以明确地标识每个装配面; 其中几何信息允许组装面与新格式CAD模型中的CAD面相匹配。