Online fault detection and avoidance framework for distributed factory control systems
    1.
    发明授权
    Online fault detection and avoidance framework for distributed factory control systems 有权
    分布式工厂控制系统的在线故障检测和回避框架

    公开(公告)号:US08010475B2

    公开(公告)日:2011-08-30

    申请号:US12101294

    申请日:2008-04-11

    Applicant: Peng Zhao Yan Lu

    Inventor: Peng Zhao Yan Lu

    Abstract: An on-line fault detection and avoidance method is provided for industrial control systems that include multiple interacting process controllers. The method addresses the problem that not all faults can be determined and removed at the time of system design and testing. When a fault translates into a time-out condition in one or more controllers, symptoms are identified, persistence is measured, other involved controllers are identified, the fault condition is identified and control laws are reconfigured to avoid the fault condition in the future.

    Abstract translation: 为包括多个交互过程控制器的工业控制系统提供在线故障检测和回避方法。 该方法解决了在系统设计和测试时不能确定和删除所有故障的问题。 当故障转变为一个或多个控制器中的超时状态时,会识别症状,测量持续时间,识别其他相关控制器,识别故障状况,重新配置控制规则以避免未来的故障。

    Online Fault Detection and Avoidance Framework for Distributed Factory Control Systems
    2.
    发明申请
    Online Fault Detection and Avoidance Framework for Distributed Factory Control Systems 有权
    分布式工厂控制系统的在线故障检测和避免框架

    公开(公告)号:US20080255682A1

    公开(公告)日:2008-10-16

    申请号:US12101294

    申请日:2008-04-11

    Applicant: Peng Zhao Yan Lu

    Inventor: Peng Zhao Yan Lu

    Abstract: An on-line fault detection and avoidance method is provided for industrial control systems that include multiple interacting process controllers. The method addresses the problem that not all faults can be determined and removed at the time of system design and testing. When a fault translates into a time-out condition in one or more controllers, symptoms are identified, persistence is measured, other involved controllers are identified, the fault condition is identified and control laws are reconfigured to avoid the fault condition in the future.

    Abstract translation: 为包括多个交互过程控制器的工业控制系统提供在线故障检测和回避方法。 该方法解决了在系统设计和测试时不能确定和删除所有故障的问题。 当故障转变为一个或多个控制器中的超时状态时,会识别症状,测量持续时间,识别其他相关控制器,识别故障状况,重新配置控制规则以避免未来的故障。

    METHOD AND SYSTEM FOR PARKING-SITE ARRANGEMENT AND RESERVATION

    公开(公告)号:US20180218290A1

    公开(公告)日:2018-08-02

    申请号:US15423424

    申请日:2017-02-02

    Applicant: Peng Zhao

    Inventor: Peng Zhao

    Abstract: A method for reserving a parking space may include steps of a user sending out a parking space reservation request to a remote control center through a communication network; the remote control center receiving and processing the parking space reservation request; the remote control center sending at least one graphical user interface (GUI) associated with at least one parking facility for the user to reserve a parking space; the user selecting a parking space from the GUI; and the remote control center reserving the parking space for the user by lifting a parking barrier thereon. The method for reserving a parking space may further include a step of the remote control center sending out a password to the user to restore the lifted parking barrier to the ground, so the user can park his/her vehicle into the reserved parking space.

    Generating three-dimensional façade models from images
    4.
    发明授权
    Generating three-dimensional façade models from images 有权
    从图像生成三维立面模型

    公开(公告)号:US09098926B2

    公开(公告)日:2015-08-04

    申请号:US12692155

    申请日:2010-01-22

    CPC classification number: G06T17/00 G06K9/00704 G06T15/04

    Abstract: The subject disclosure relates to generating three-dimensional façade models from images. In one aspect, a systematic decomposition schema is disclosed for a façade structured into a Direct Acyclic Graph and implemented as a top-down recursive subdivision and bottom-up merging. In a further aspect, optimization of façade depth operating in a façade surface and in the super-pixel level of a whole subdivision region is described.

    Abstract translation: 本公开涉及从图像生成三维立面模型。 在一个方面,公开了一种系统分解模式,用于构造为直接非循环图的外观,并实现为自上而下的递归细分和自下而上的合并。 在另一方面,描述了在整个细分区域的外观表面和超像素级中操作的外墙深度的优化。

    Method, apparatus and system for transmitting user equipment information in a multimedia subsystem
    6.
    发明授权
    Method, apparatus and system for transmitting user equipment information in a multimedia subsystem 有权
    用于在多媒体子系统中发送用户设备信息的方法,装置和系统

    公开(公告)号:US08311037B2

    公开(公告)日:2012-11-13

    申请号:US12475856

    申请日:2009-06-01

    CPC classification number: H04L65/1016 H04L65/1006 H04L65/1073 H04L67/303

    Abstract: The present disclosure discloses a method, apparatus and system for transmitting UE information in a multimedia subsystem. The method includes: a call session control function entity obtains capability information of UE, and transmits the capability information of the UE to an AS; the AS obtaining the capability information of the UE sent from the call session control function entity. The solution of the present disclosure ensures that the AS in the IMS can obtain the capability information of the UE. Therefore, services based on the capability information of the UE can be implemented on the AS successfully.

    Abstract translation: 本公开公开了一种用于在多媒体子系统中发送UE信息的方法,装置和系统。 该方法包括:呼叫会话控制功能实体获取UE的能力信息,并将UE的能力信息发送给AS; AS获取从呼叫会话控制功能实体发送的UE的能力信息。 本公开的解决方案确保了IMS中的AS可以获得UE的能力信息。 因此,可以在AS上成功实现基于UE的能力信息的业务。

    Implementing shadow versioning to improve data dependence analysis for instruction scheduling
    7.
    发明授权
    Implementing shadow versioning to improve data dependence analysis for instruction scheduling 失效
    实施影子版本化,提高指令调度的数据依赖性分析

    公开(公告)号:US08091079B2

    公开(公告)日:2012-01-03

    申请号:US11846910

    申请日:2007-08-29

    CPC classification number: G06F8/443

    Abstract: A method for implementing shadow versioning to improve data dependence analysis for instruction scheduling in compiling code, and to identify loops within the code to be compiled, for each loop initializing a dependence a matrix, for each loop shadow identifying symbols that are accessed by the loop, examining dependencies, storing, comparing and classifying the dependence vectors, generating new shadow symbols, replacing the old shadow symbols with the new shadow symbols, generating alias relationships between the newly created shadow symbols, scheduling instructions and compiling the code.

    Abstract translation: 一种用于实现阴影版本化的方法,用于改进编译代码中的指令调度的数据依赖性分析,以及识别要编译的代码内的循环,为每个循环初始化依赖矩阵,每个循环阴影标识由循环访问的符号 ,检查依赖性,存储,比较和分类依赖向量,生成新的阴影符号,用新的阴影符号替换旧的阴影符号,生成新创建的阴影符号之间的别名关系,调度指令和编译代码。

    Efficient generation of SIMD code in presence of multi-threading and other false sharing conditions and in machines having memory protection support
    8.
    发明授权
    Efficient generation of SIMD code in presence of multi-threading and other false sharing conditions and in machines having memory protection support 有权
    在存在多线程和其他虚假共享条件的情况下以及具有存储器保护支持的机器中有效地生成SIMD代码

    公开(公告)号:US07730463B2

    公开(公告)日:2010-06-01

    申请号:US11358372

    申请日:2006-02-21

    CPC classification number: G06F9/3851 G06F8/44

    Abstract: A computer implemented method, system and computer program product for automatically generating SIMD code. The method begins by analyzing data to be accessed by a targeted loop including at least one statement, where each statement has at least one memory reference, to determine if memory accesses are safe. If memory accesses are safe, the targeted loop is simdized. If not safe, it is determined if a scheme can be applied in which safety need not be guaranteed. If such a scheme can be applied, the targeted loop is simdized according to the scheme. If such a scheme cannot be applied, it is determined if padding is appropriate. If padding is appropriate, the data is padded and the targeted loop is simdized. If padding is not appropriate, non-simdized code is generated based on the targeted loop for handling boundary conditions, the targeted loop is simdized and combined with the non-simdized code.

    Abstract translation: 一种用于自动生成SIMD代码的计算机实现的方法,系统和计算机程序产品。 该方法开始于分析要由目标循环访问的数据,包括至少一个语句,其中每个语句具有至少一个存储器引用,以确定存储器访问是否安全。 如果存储器访问是安全的,则对象循环被简化。 如果不安全,则确定是否可以应用不需要保证安全性的方案。 如果可以应用这种方案,则根据该方案对目标循环进行模拟。 如果不能应用这种方案,则确定填充是否合适。 如果填充是合适的,则填充数据并对目标循环进行模拟。 如果填充不合适,则基于用于处理边界条件的目标循环生成非模拟代码,目标循环被简化并与非模拟代码组合。

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