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    • 11. 发明授权
    • Scheduled synchronous data transmission for scheduled mobile platforms
    • 预定的移动平台的同步数据传输
    • US08437699B2
    • 2013-05-07
    • US11934501
    • 2007-11-02
    • Bruce K. PollockDavid L. Allen
    • Bruce K. PollockDavid L. Allen
    • H04B7/00
    • H04B7/18506
    • A system for automatically synchronizing and communicating data between a mobile platform and a remote system, where the remote system has a backoffice repository and a scheduler application controlled by an entity operating said platform, includes: a backoffice interface manager for interfacing with said repository and said application, to communicate scheduling information between said platform and said application; and a computer controlled support system located remote from said platform and in communication with said backoffice interface manager, and further including a common data store system for holding said data and synchronizing the communication of said data between at least one mobile subsystem on said application, to ensure communication of said data between said mobile subsystem and said remote system within a predetermined time of executing an operational procedure with said platform.
    • 一种用于在移动平台和远程系统之间自动同步和传送数据的系统,其中所述远程系统具有后台存储库以及由操作所述平台的实体控制的调度器应用程序,所述系统包括:后台接口管理器,用于与所述存储库和所述 应用程序,用于在所述平台和所述应用之间传送调度信息; 以及位于远离所述平台并与所述后台接口管理器通信的计算机控制的支持系统,并且还包括公共数据存储系统,用于保持所述数据并使所述数据在所述应用的至少一个移动子系统之间的通信同步到 确保在与所述平台执行操作过程的预定时间内在所述移动子系统和所述远程系统之间进行所述数据的通信。
    • 12. 发明授权
    • Method and system for directed area search using cognitive swarm vision and cognitive Bayesian reasoning
    • 使用认知群体视觉和认知贝叶斯推理的定向区域搜索的方法和系统
    • US08213709B1
    • 2012-07-03
    • US12590110
    • 2009-11-03
    • Swarup MedasaniYuri OwechkoTsai-Ching LuDeepak KhoslaDavid L. Allen
    • Swarup MedasaniYuri OwechkoTsai-Ching LuDeepak KhoslaDavid L. Allen
    • G06K9/62
    • G06K9/6278G06K9/00671G06K9/6263G06N7/005
    • A method and system for a directed area search using cognitive swarm vision and cognitive Bayesian reasoning is disclosed. The system comprises a domain knowledge database, a top-down reasoning module, and a bottom-up module. The domain knowledge database is configured to store Bayesian network models comprising visual features and observables associated with various sets of entities. The top-down module is configured to receive a search goal, generate a plan of action using Bayesian network models, and partition the plan into a set of tasks/observables to be located in the imagery. The bottom-up module is configured to select relevant feature/attention models for the observables, and search the visual imagery using a cognitive swarm for the at least one observable. The system further provides for operator feedback and updating of the domain knowledge database to perform better future searches.
    • 公开了一种使用认知群体视觉和认知贝叶斯推理的定向区域搜索的方法和系统。 该系统包括域知识数据库,自上而下推理模块和自下而上模块。 域知识数据库被配置为存储包括与各组实体相关联的视觉特征和可观察性的贝叶斯网络模型。 自顶向下模块被配置为接收搜索目标,使用贝叶斯网络模型生成行动计划,并将计划分成一组要在图像中的任务/可观察值。 自下而上模块被配置为选择可观察的相关特征/关注模型,并且使用用于至少一个可观察的认知群搜索视觉图像。 该系统进一步提供操作者反馈和更新领域知识数据库以执行更好的未来搜索。
    • 14. 发明授权
    • Method for balanced-delay clock tree insertion
    • 平衡延迟时钟树插入方法
    • US06698006B1
    • 2004-02-24
    • US10023329
    • 2001-12-14
    • Adi SrinivasanDavid L. Allen
    • Adi SrinivasanDavid L. Allen
    • G06F1750
    • G06F1/10G06F17/5068G06F2217/62
    • A clock tree insertion method for distributing a clock signal in an integrated circuit design includes providing a physical design representative of the integrated circuit design, specifying a location for a root node of the clock tree in the physical design, constructing an array of buffers as the clock tree where the array of buffers is constructed to minimize the maximum insertion delay from the root node to the clock signal endpoints and to meet a predefined maximum insertion delay constraint, identifying locations in the clock tree where clock skew violations occur and correcting the clock skew violations by introducing delay at buffer locations in the clock tree having the fastest clock signal arrival times, and identifying locations in the clock tree where minimum insertion delay violations occur and correcting the minimum insertion delay violations by slowing down the arrival times of clock signal endpoints of the clock tree.
    • 用于在集成电路设计中分配时钟信号的时钟树插入方法包括提供代表集成电路设计的物理设计,在物理设计中指定时钟树的根节点的位置,构建缓冲器阵列作为 时钟树,其中缓冲器阵列被构造为最小化从根节点到时钟信号端点的最大插入延迟,并且满足预定义的最大插入延迟约束,识别时钟树中发生时钟偏斜违规的位置并校正时钟偏差 通过在具有最快时钟信号到达时间的时钟树中的缓冲器位置处引入延迟,以及识别发生最小插入延迟违规的时钟树中的位置并通过减慢最小插入延迟违规来校正最小插入延迟违反,从而延迟时钟信号端点的到达时间 时钟树。
    • 18. 发明授权
    • Electronic signature validation systems and methods for asynchronous environments
    • 用于异步环境的电子签名验证系统和方法
    • US08479003B2
    • 2013-07-02
    • US11507144
    • 2006-08-21
    • Steven J. YukawaRajit JainTimothy W. AnsteyDavid L. Allen
    • Steven J. YukawaRajit JainTimothy W. AnsteyDavid L. Allen
    • H04L9/32
    • H04L63/08H04L63/083H04L63/12H04W4/12
    • A system and method for non-real-time validation of an electronically signed message transmitted via an asynchronous communications link is provided. The method includes creating an electronic message comprising an electronically signed data entry created by executing a secure data application first portion (SDA1) module hosted by a mobile system. The method additionally includes passing the message to a communications management function first portion (CMF1) module via a synchronous interface. The CMF1 module is hosted by the mobile system. The method further includes transmitting the message from the CMF1 module to a communications management function second portion (CMF2) module in a temporally delayed manner using an asynchronous communications link. The CMF2 module is hosted by a central computer system (CCS) located remotely from the mobile system. The method further yet includes validating the electronically signed entry in a temporally delayed manner utilizing a user database. The user database is hosted by the CCS and has stored thereon user account information for all users authorized to electronically sign entries transmitted from the mobile system to the CCS. The user account information includes user information and/or user personal identification numbers (PINs) for each authorized user.
    • 提供了一种用于非实时验证通过异步通信链路发送的电子签名消息的系统和方法。 该方法包括创建电子消息,其包括通过执行由移动系统托管的安全数据应用第一部分(SDA1)模块而创建的电子签名的数据条目。 该方法还包括经由同步接口将消息传递到通信管理功能第一部分(CMF1)模块。 CMF1模块由移动系统托管。 该方法还包括使用异步通信链路以时间延迟的方式将消息从CMF1模块发送到通信管理功能第二部分(CMF2)模块。 CMF2模块由位于远离移动系统的中央计算机系统(CCS)托管。 该方法还包括利用用户数据库以时间延迟的方式来验证电子签名的条目。 用户数据库由CCS托管,并存储有用户电子信息,用于授权电子签名从移动系统发送到CCS的条目的所有用户。 用户帐户信息包括用于每个授权用户的用户信息和/或用户个人识别号码(PIN)。
    • 20. 发明授权
    • Methods and systems for managing computer system configuration data
    • 管理计算机系统配置数据的方法和系统
    • US07840770B2
    • 2010-11-23
    • US11550668
    • 2006-10-18
    • Craig A. LarsonDavid L. AllenLinda A. HapgoodTimothy M. Mitchell
    • Craig A. LarsonDavid L. AllenLinda A. HapgoodTimothy M. Mitchell
    • G06F12/00G01C22/00G06F9/44H04M3/00
    • G08G5/00
    • Methods and systems for managing computer system configuration data are provided. The method includes staging the configuration data in a staging memory accessible to a first application, selecting a path for a transfer of the configuration data from the staging memory to a target memory, emulating a hardware data loader using a second software application adapted to control a transfer of the configuration data from the staging memory to the target memory, and transferring the configuration data from the staging memory to the target memory using the emulator. The method further effectively expands a memory capacity of a Flight Management Computer by providing swappable memory capacity such that a re-certification to Federal Aviation Administration standards of the Flight Management Computer is not triggered.
    • 提供了管理计算机系统配置数据的方法和系统。 该方法包括在第一应用可访问的分段存储器中分配配置数据,选择用于将配置数据从分段存储器传送到目标存储器的路径,使用适于控制第一应用的第二软件应用仿真硬件数据加载器 将配置数据从暂存存储器传送到目标存储器,以及使用仿真器将配置数据从暂存存储器传送到目标存储器。 该方法通过提供可交换的存储器容量来进一步有效地扩展飞行管理计算机的存储器容量,使得不触发飞行管理计算机的联邦航空管理局标准的重新认证。