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    • 3. 发明申请
    • TIME SLACK APPLICATION PIPELINE BALANCING FOR MULTI/MANY-CORE PLCS
    • 用于多/多核PLCS的时间拖延应用管道平衡
    • WO2013158968A1
    • 2013-10-24
    • PCT/US2013/037327
    • 2013-04-19
    • SIEMENS CORPORATIONMARTINEZ CANEDO, ArquimedesFEICHTINGER, ThomasAL FARUQUE, Mohammad Abdullah
    • MARTINEZ CANEDO, ArquimedesFEICHTINGER, ThomasAL FARUQUE, Mohammad Abdullah
    • G06F9/45
    • G06F9/5083G06F8/4452G06F9/4881
    • A method for performing time-slack pipeline balancing for multi/many-core programmable logic controllers includes performing (411) a runtime analysis of a plurality of pipeline stages of a program for a multi/many-core programmable logic controller (PLC) while the program is being executed, and of a plurality of system services, to compile a profile of performance statistics of the PLC program and the system services, (413) calculating a time slack for each of the plurality of pipeline stages of the PLC program using the profile of performance statistics, and for all pipeline stages except a longest stage, donating (414) the time slack of each pipeline stage to an operating system of the PLC. Donating the time slack of each pipeline stage includes generating donor code that includes a set of instructions that free a processor core for a given pipeline stage for a time period identified as the time slack period.
    • 用于对多/多核可编程逻辑控制器进行时间间隔流水线平衡的方法包括对多/多核可编程逻辑控制器(PLC)的程序的多个流水线级进行(411)运行时分析,同时 正在执行程序和多个系统服务的程序,以编译PLC程序和系统服务的性能统计的简档,(413)使用该程序的多个流水线级中的每一个计算时间松弛 性能统计资料简介,除最长阶段以外的所有流水线阶段,向PLC的操作系统捐赠(414)每个流水线阶段的时间松弛。 捐赠每个流水线阶段的时间松弛包括产生捐赠者代码,该捐赠者代码包括一组在给定流水线阶段释放处理器核心的指令,该时间段被标识为时间松弛周期。
    • 4. 发明申请
    • FUNCTIONAL TOP-DOWN CYBER-PHYSICAL SYSTEMS CO-DESIGN
    • 功能顶下的体育系统设计
    • WO2014078848A1
    • 2014-05-22
    • PCT/US2013/070774
    • 2013-11-19
    • SIEMENS CORPORATIONMARTINEZ CANEDO, Arquimedes
    • MARTINEZ CANEDO, Arquimedes
    • G06F17/50
    • G06F17/5022
    • A method for top-down cyber-physical co-design of a system includes formalizing (2) product requirements of a system in a functional model, building (3) a list of candidate architectures by matching architectural components to the functional model, selecting (4) a candidate architecture from the list of candidate architectures, providing (5) an engineering view of the system, parsing (5) a library of system level simulation components into a queryable abstract syntax tree for each component in the library that, given a set of functions and flows Q⊂G j , returns a list of library components K that map to Q according to function-structure relations, synthesizing (5) a minimal simulation model from the engineering view that uses a subset of the functions and flows from the selected candidate architecture G j , mapping (5) the remaining functions in the selected candidate architecture G j to components in the library of system level simulation components, and adding (5) the components to the minimal simulation model.
    • 一种用于系统的自顶向下的网络物理共同设计的方法包括在功能模型中形成(2)系统的产品需求,通过将建筑组件与功能模型相匹配来构建(3)候选架构的列表,选择( 4)候选架构列表中的候选架构,提供(5)系统的工程视图,解析(5)系统级仿真组件库到库中的每个组件的可查询抽象语法树,给定 一组函数和流程Q⊂Gj返回一个根据函数结构关系映射到Q的库组件K的列表,从工程视图合成(5)一个最小的模拟模型,该模型使用一个子集的函数和流程 选择候选架构Gj,将所选择的候选架构Gj中的剩余功能映射(5)到系统级仿真组件库中的组件,并将组件添加到 最小仿真模型。
    • 10. 发明申请
    • MODEL-BASED HUMAN MACHINE INTERFACE (HMI)
    • 基于模型的人机界面(HMI)
    • WO2017082899A1
    • 2017-05-18
    • PCT/US2015/060250
    • 2015-11-12
    • SIEMENS AKTIENGESELLSCHAFTSIEMENS CORPORATION
    • MARTINEZ CANEDO, ArquimedesWANG, Lingyun
    • G06F9/50
    • G06F9/5044
    • A model-based human machine interface (HMI) system is provided. The HMI system includes a plurality of output devices each having output capabilities that include at least one unique output capability level and a semantics library that is configured to receive SUC component models each having an output format and data. The semantics library is configured to analyze the data relative to the SUC component models and to transmit each of the SUC component models to one or more of the plurality of output devices. The one or more of the plurality of output devices are selected based on a correlation between the output capabilities of the plurality of output devices and the output format of the SUC component models.
    • 提供基于模型的人机界面(HMI)系统。 HMI系统包括多个输出设备,每个输出设备具有包括至少一个唯一输出能力等级的输出能力和被配置为接收每个具有输出格式和数据的SUC组件模型的语义库。 语义库被配置为分析与SUC组件模型相关的数据并且将SUC组件模型中的每一个传输到多个输出设备中的一个或多个。 基于多个输出设备的输出能力与SUC组件模型的输出格式之间的相关性来选择多个输出设备中的一个或多个输出设备。