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    • 1. 发明申请
    • Waking a main computer system to pre-fetch data for an auxiliary computing device
    • 唤醒主计算机系统以预取辅助计算设备的数据
    • US20060129855A1
    • 2006-06-15
    • US10996558
    • 2004-11-23
    • Matthew RhotenAndrew FullerRoger WynnMichael BernsteinDaniel PolivyOtto Berkes
    • Matthew RhotenAndrew FullerRoger WynnMichael BernsteinDaniel PolivyOtto Berkes
    • G06F1/32
    • G06F1/3203
    • An auxiliary computing device wakes an associated main computer system to obtain data as needed, on-demand and/or in anticipation of demand. The wakeup operation is ordinarily temporary to fetch data, whereby only a small amount of power is consumed by the main computer system. In one implementation, a control channel between the auxiliary device and the main computer system is used to signal a wakeup. A main data channel is used to obtain the data, whereby the auxiliary device has access to a larger amount of data than it can cache. Moreover, the components of the main computer system may be leveraged, such as to use the main computer system's digital rights management mechanisms. Additional data may be intelligently requested by the auxiliary device while the main computer system is powered up, e.g., to buffer media, and/or request a synchronization of calendar data, email data, and so forth.
    • 辅助计算设备唤醒相关联的主计算机系统以根据需要按需和/或预期的需求获得数据。 唤醒操作通常是临时的,以获取数据,由此主计算机系统仅消耗少量的电力。 在一个实现中,辅助设备和主计算机系统之间的控制信道用于发出唤醒信号。 使用主数据信道来获取数据,由此辅助设备可以访问比它可以缓存的数据量更大的数据。 此外,可以利用主计算机系统的组件,例如使用主计算机系统的数字版权管理机制。 当主计算机系统通电时,辅助设备可以智能请求附加数据,例如缓冲介质,和/或请求日历数据,电子邮件数据等的同步。
    • 2. 发明申请
    • USER IDENTIFICATION WITH BIOKINEMATIC INPUT
    • 用生物信息输入进行用户识别
    • US20120174213A1
    • 2012-07-05
    • US12981097
    • 2010-12-29
    • Avi GeigerOtto Berkes
    • Avi GeigerOtto Berkes
    • H04L9/32
    • G06F21/32G06F3/04883G06F2203/04808G06K9/00885
    • Systems and methods for user identification based on biokinematic input are disclosed herein. The system may include a multi-touch sensitive display including a sensor configured to receive biokinematic input including data representing detected positions of digit touches made by digits of a user, in each of a series of successive time intervals during a defined identification gesture. The system may further include a user identification module executed by a processor of the computing device. The user identification module may be configured to receive the biokinematic input from the sensor, and to compare relative positions of the digit touches and/or relative rates of change in said positions of the digit touches to a stored user template of verified biokinematic data for the user. If a match is determined, an indication that the user has been successfully identified may be displayed.
    • 本文公开了基于生物动力学输入的用户识别的系统和方法。 该系统可以包括多感触摸显示器,其包括传感器,该传感器被配置为在定义的识别手势期间,在一系列连续的时间间隔中的每一个中接收包括代表检测到的用户的数字的数字触摸位置的数据的生物动力学输入。 系统还可以包括由计算设备的处理器执行的用户识别模块。 用户识别模块可以被配置为从传感器接收生物动力学输入,并且将数字触摸的所述位置中的数字触摸和/或相对变化率的相对位置与已验证的生物移动数据的存储的用户模板进行比较 用户。 如果确定了匹配,则可以显示用户已被成功识别的指示。
    • 3. 发明申请
    • Intermittent computing
    • 间歇计算
    • US20070011475A1
    • 2007-01-11
    • US11519260
    • 2006-09-12
    • Otto BerkesHok-Sum LukeDavid Williams
    • Otto BerkesHok-Sum LukeDavid Williams
    • G06F1/00
    • G06F1/329G06F1/3203Y02D10/24
    • An intermittent computing system state and intermittent computing module is described for a power-constrained personal computer. In the intermittent computing system state, the power-constrained personal computer may transition between sub-states of the intermittent computing system state according to an intermittent computing schedule. Each intermittent computing sub-state may be associated with hardware power sets and software power sets. Altering power supply to hardware components referenced by hardware power sets may alter power consumed in associated intermittent computing sub-states. A caching mechanism may be configured to make it likely that software components referenced by software power sets are loaded into powered storage types during associated intermittent computing sub-states. In the intermittent computing system state, periods of high functionality may be available over extended periods without the high power consumption associated with a continuous working system state. Average power consumption may be adjusted by varying the intermittent computing schedule.
    • 对于功率受限的个人计算机描述了间歇计算系统状态和间歇计算模块。 在间歇计算系统状态下,功率受限的个人计算机可以根据间歇计算时间表在间歇计算系统状态的子状态之间转换。 每个间歇计算子状态可以与硬件功率组和软件功率组相关联。 改变由硬件功率组引用的硬件组件的电源可能会改变相关的间歇性计算子状态中消耗的功耗。 缓存机制可以被配置为使得软件功率集引用的软件组件可能在相关联的间歇计算子状态期间被加载到动力存储类型中。 在间歇计算系统状态下,高功能周期可能在长时间内可用,而不需要与连续工作系统状态相关联的高功耗。 可以通过改变间歇计算时间表来调整平均功耗。
    • 5. 发明申请
    • Systems and methods for the implementation of a peer-to-peer rule-based pull autonomous synchronization system
    • 用于实现基于对等规则的拉式自主同步系统的系统和方法
    • US20050262371A1
    • 2005-11-24
    • US10929303
    • 2004-08-30
    • Hok-Sum LukeDavid WilliamsOtto BerkesVictor Blanco
    • Hok-Sum LukeDavid WilliamsOtto BerkesVictor Blanco
    • G06F12/00G06F17/30H04L29/08G11B19/02
    • H04L67/1095G06F17/30174G06F17/30206H04L69/329
    • The present invention relates to a synchronization system that utilizes a synchronization wizard (“PullSync”) residing on a first computer device to request and receive (or “pull”) data from a second computer device. The first computer device (the “syncer”) copies files from shared folders on the second computer device (the “syncee”) in accordance with specific pull-synchronization rules (PSRs) established on the syncer that define the scope and extent of the synchronization. This copying occurs over a network connection using existing and well-defined protocols by which one computer system is able to view and copy files from the available shared folders of a second computer system, and the PullSync wizard software needs to exist only on the first computer system (the syncer) to utilize these existing networking protocols (including existing security/authentication protocols) to selectively copy files from the second computer system.
    • 本发明涉及利用驻留在第一计算机设备上的同步向导(“PullSync”)从第二计算机设备请求和接收(或“拉”)数据的同步系统。 根据在同步器上建立的特定的拉同步规则(PSR),第一计算机设备(“syncer”)从第二计算机设备上的共享文件夹(“syncee”)复制文件,该特定的拉同步规则(PSR)定义了同步的范围和范围 。 该复制通过网络连接使用现有的和明确定义的协议,一个计算机系统可以通过该协议从第二计算机系统的可用共享文件夹中查看和复制文件,并且PullSync向导软件仅需要存在于第一台计算机上 系统(同步器)利用这些现有网络协议(包括现有的安全/认证协议)来选择性地从第二计算机系统复制文件。
    • 6. 发明授权
    • User identification with biokinematic input
    • 用生物动力学输入识别
    • US08543833B2
    • 2013-09-24
    • US12981097
    • 2010-12-29
    • Avi GeigerOtto Berkes
    • Avi GeigerOtto Berkes
    • G06F21/00
    • G06F21/32G06F3/04883G06F2203/04808G06K9/00885
    • Systems and methods for user identification based on biokinematic input are disclosed herein. The system may include a multi-touch sensitive display including a sensor configured to receive biokinematic input including data representing detected positions of digit touches made by digits of a user, in each of a series of successive time intervals during a defined identification gesture. The system may further include a user identification module executed by a processor of the computing device. The user identification module may be configured to receive the biokinematic input from the sensor, and to compare relative positions of the digit touches and/or relative rates of change in said positions of the digit touches to a stored user template of verified biokinematic data for the user. If a match is determined, an indication that the user has been successfully identified may be displayed.
    • 本文公开了基于生物动力学输入的用户识别的系统和方法。 该系统可以包括多感触摸显示器,其包括传感器,该传感器被配置为在定义的识别手势期间,在一系列连续的时间间隔中的每一个中接收包括代表检测到的用户的数字的数字触摸位置的数据的生物动力学输入。 系统还可以包括由计算设备的处理器执行的用户识别模块。 用户识别模块可以被配置为从传感器接收生物动力学输入,并且将数字触摸的所述位置中的数字触摸和/或相对变化率的相对位置与已验证的生物移动数据的存储的用户模板进行比较 用户。 如果确定了匹配,则可以显示用户已被成功识别的指示。
    • 8. 发明申请
    • Intermittent computing
    • 间歇计算
    • US20050182976A1
    • 2005-08-18
    • US10777410
    • 2004-02-12
    • Otto BerkesHok-Sum LukeDavid Williams
    • Otto BerkesHok-Sum LukeDavid Williams
    • G06F1/26G06F1/32
    • G06F1/329G06F1/3203Y02D10/24
    • An intermittent computing system state and intermittent computing module is described for a power-constrained personal computer. In the intermittent computing system state, the power-constrained personal computer may transition between sub-states of the intermittent computing system state according to an intermittent computing schedule. Each intermittent computing sub-state may be associated with hardware power sets and software power sets. Altering power supply to hardware components referenced by hardware power sets may alter power consumed in associated intermittent computing sub-states. A caching mechanism may be configured to make it likely that software components referenced by software power sets are loaded into powered storage types during associated intermittent computing sub-states. In the intermittent computing system state, periods of high functionality may be available over extended periods without the high power consumption associated with a continuous working system state. Average power consumption may be adjusted by varying the intermittent computing schedule.
    • 对于功率受限的个人计算机描述了间歇计算系统状态和间歇计算模块。 在间歇计算系统状态下,功率受限的个人计算机可以根据间歇计算时间表在间歇计算系统状态的子状态之间转换。 每个间歇计算子状态可以与硬件功率组和软件功率组相关联。 改变由硬件功率组引用的硬件组件的电源可能会改变相关的间歇性计算子状态中消耗的功耗。 缓存机制可以被配置为使得软件功率集引用的软件组件可能在相关联的间歇计算子状态期间被加载到动力存储类型中。 在间歇计算系统状态下,高功能周期可能在长时间内可用,而不需要与连续工作系统状态相关联的高功耗。 可以通过改变间歇计算时间表来调整平均功耗。