会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Scratch segment subsystem for a parallel processing database system
    • 用于并行处理数据库系统的划痕子系统
    • US06505285B1
    • 2003-01-07
    • US09603787
    • 2000-06-26
    • Sorana RabinoviciDaniel H. Miller
    • Sorana RabinoviciDaniel H. Miller
    • G06F1200
    • G06F12/0284Y10T156/1013Y10T156/1021
    • One or more embodiments of the invention provide for a SEG (segment) subsystem of a parallel database extension (PDE) that provides services for creating, manipulating, and destroying access to data segments in address space. The SEG subsystem works with transient segments (also referred to as scratch segments) that are created as offsets in a “well-known” file created during initialization of the PDE. The offsets are stored in objects/elements in a queue in the virtual address space of the SEG subsystem. Upon partitioning addressable memory into one or more scratch segments, obtaining the offsets for the scratch segments, and mapping the offsets into the SEG system's virtual address space, the physical memory is locked. When the scratch segments are needed, an element/object from the queue containing the appropriate size scratch segment is mapped into the requestor's address space. Once mapped to the requestor's address space, the element is unmapped from the SEG's virtual address space. Thereafter, the requestor can utilize the scratch segment as desired (in accordance with the access granted by the SEG subsystem).
    • 本发明的一个或多个实施例提供并行数据库扩展(PDE)的SEG(段)子系统,其提供用于创建,操纵和销毁对地址空间中的数据段的访问的服务。 SEG子系统与在PDE初始化期间创建的“知名”文件中的偏移创建的瞬态段(也称为scratch段)配合使用。 偏移量存储在SEG子系统的虚拟地址空间中的队列中的对象/元素中。 在将可寻址存储器划分成一个或多个暂存段时,获得暂存段的偏移量,并将偏移映射到SEG系统的虚拟地址空间中,物理存储器被锁定。 当需要scratch段时,包含适当大小scratch段的队列中的元素/对象被映射到请求者的地址空间中。 一旦映射到请求者的地址空间,该元素将从SEG的虚拟地址空间中取消映射。 此后,请求者可以根据需要(根据SEG子系统授予的访问)利用划痕段。
    • 2. 发明申请
    • METHODS AND APPARATUS TO MONITOR SYSTEM HEALTH
    • 监测系统健康的方法和装置
    • US20080147361A1
    • 2008-06-19
    • US11611645
    • 2006-12-15
    • Daniel H. Miller
    • Daniel H. Miller
    • G06F17/10
    • G05B23/0251G05B17/02
    • A method of monitoring a system includes identifying a plurality of subsystems associated with the system. Each of the plurality of subsystems is configured to receive at least one input signal and at least one output signal and has at least one predetermined limit. The method also includes generating a plurality of subsystem models by generating at least one subsystem model of each of the plurality of subsystems. Each of the subsystem models are at least partially formed from the first input signals and the first output signals. The method further includes generating at least one system model having at least one predetermined limit by integrating the plurality of subsystem models. At least one of the subsystem models is bounded by at least one predetermined limit of at least one other subsystem model, and/or at least one predetermined limit of the system model.
    • 监视系统的方法包括识别与系统相关联的多个子系统。 多个子系统中的每一个被配置为接收至少一个输入信号和至少一个输出信号并且具有至少一个预定极限。 该方法还包括通过生成多个子系统中的每一个的至少一个子系统模型来生成多个子系统模型。 每个子系统模型至少部分地由第一输入信号和第一输出信号形成。 该方法还包括通过集成多个子系统模型来生成具有至少一个预定极限的至少一个系统模型。 子系统模型中的至少一个由至少一个其他子系统模型的至少一个预定极限和/或系统模型的至少一个预定极限界定。
    • 4. 发明授权
    • System and method for path planning
    • 路径规划的系统和方法
    • US08024069B2
    • 2011-09-20
    • US12361170
    • 2009-01-28
    • Daniel H. MillerWilliam Lindsay Morrison
    • Daniel H. MillerWilliam Lindsay Morrison
    • G05B19/04G05B19/18G01C22/00G01C21/00G01C21/30G01C21/32G01C9/00G01C17/00G01C19/00G05D1/02G06F17/10G06G7/78
    • G05B19/18B65C9/40G05B2219/25473G05B2219/42186G05B2219/42188
    • A method for mapping a motion of a first object within a first motion path defined by a path planner based on a second motion path of a second object. The method includes creating the first motion path for the first object using the path planner, initializing a start position of the first object within the first motion path, determining a value for an initial condition for each segment of a plurality of segments in the first motion path created by the path planner, and calculating an elapsed time between a current sample call time to the path planner and a last sample call time to the path planner. If the calculated elapsed time is one of greater than and less than a sample period, a current location of the second object in the second motion path is determined utilizing the calculated elapsed time, an expired time within a first segment of the plurality if segments between a start time of the first segment and the current sample call time is calculated, and an output command is generated from the path planner. Execution of the generated output command alters the first motion path.
    • 一种用于基于由第二对象的第二运动路径由路径规划器定义的第一运动路径中的第一对象的运动进行映射的方法。 该方法包括使用路径规划器创建用于第一对象的第一运动路径,初始化第一运动路径内的第一对象的起始位置,确定第一运动中的多个段的每个段的初始条件的值 由路径规划器创建的路径,以及计算路径规划器的当前采样呼叫时间与路径规划器的最后采样呼叫时间之间的经过时间。 如果计算出的经过时间是大于和小于采样周期之一,则使用所计算的经过时间来确定第二运动路径中的第二对象的当前位置,在多个if之间的第一段内的到期时间 计算第一段的开始时间和当前采样呼叫时间,并且从路径规划器生成输出命令。 执行生成的输出命令改变第一个运动路径。
    • 7. 发明授权
    • Method and an apparatus for electronically compressing a transaction
with a human signature
    • 用于电子压缩与人体签名的交易的方法和装置
    • US5091975A
    • 1992-02-25
    • US460755
    • 1990-01-04
    • Toby BergerDaniel H. Miller
    • Toby BergerDaniel H. Miller
    • G06K9/00G06Q20/20G06Q20/40G07C9/00
    • G06Q20/20G06K9/00154G06Q20/40G06Q20/4014G07C9/00063
    • In the present invention a method of compressing a signature signal is disclosed. The signature signal is divided into a plurality of signature segment signals where each segment is encoded by using a modified ring-encoding method, such that the total number of grid points along the perimeter of all the rings can be stored in an 8-bit byte. In one embodiment of the method of the present invention, a Fibonacci series is used to determine the relative spacing of the rings. The present invention also discloses a method and apparatus for electronically processing a POS transaction with a human signature for verification of the transaction, as well as for request of extension of credit by a credit company. The signature is electronically captured, compressed and combined with a transaction signal which is representative of the transaction. The record signal is then processed by the credit company for verification of the transaction or for requesting extension of credit.
    • 在本发明中公开了一种压缩签名信号的方法。 签名信号被分成多个签名段信号,其中通过使用修改的环编码方法对每个段进行编码,使得沿着所有环的周边的网格点的总数可以存储在8位字节 。 在本发明方法的一个实施例中,使用斐波纳契系列来确定环的相对间距。 本发明还公开了一种用于电子处理具有用于验证交易的人签名的POS交易以及由信用公司扩展信用的请求的方法和装置。 签名被电子捕获,压缩并与表示交易的交易信号组合。 记录信号然后由信用公司处理以验证交易或请求延长信用。