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    • 71. 发明授权
    • Orderly change between new and old passwords
    • 新旧密码之间有序变更
    • US08607330B2
    • 2013-12-10
    • US12875934
    • 2010-09-03
    • Rhonda L. ChildressItzhack GoldbergJulianne F. Haugh
    • Rhonda L. ChildressItzhack GoldbergJulianne F. Haugh
    • G06F21/00
    • G06F21/31
    • A processor stores a current password in a current password storage area, which results in committing the current password as a valid password. In turn, the processor initiates a password change interval that indicates a required point at which to change the current password. The processor also stores a future password in a future password storage area, which activates the future password. Activating the future password allows a user to login using the future password, but is independent of the password change interval (e.g., does not reset the password change interval). The processor subsequently receives a login request from a user that includes a login password, and determines that the login password matches the future password. As a result, the processor authorizes the user in response to determining that the login password matches the future password.
    • 处理器将当前密码存储在当前密码存储区域中,这导致将当前密码提交为有效密码。 反过来,处理器启动密码更改间隔,指示更改当前密码的必需点。 处理器还将来密码存储区域中存储未来密码,这将激活未来的密码。 激活未来密码允许用户使用未来密码进行登录,但与密码更改间隔无关(例如,不会重置密码更改间隔)。 处理器随后从包含登录密码的用户接收登录请求,并确定登录密码与未来密码相匹配。 因此,处理器授权用户响应于确定登录密码与未来密码相匹配。
    • 73. 发明授权
    • User policy manageable strength-based password aging
    • 用户策略可管理基于强度的密码老化
    • US08370925B2
    • 2013-02-05
    • US12181364
    • 2008-07-29
    • Rhonda L. ChildressItzhack GoldbergMoriel LechtmanYotam Medini
    • Rhonda L. ChildressItzhack GoldbergMoriel LechtmanYotam Medini
    • G06F7/04G06F12/00G06F12/14G06F13/00G06F17/30G11C7/00
    • G06F21/46
    • Password aging based on the strength of the password provides an incentive for users to generate and/or memorize more complex passwords. The strength of the password is computed from a formula that relates the length of the password and the types of characters contained in the password to a strength value, which can be performed using a lookup table having values for different characteristics of the password, determining partial strength values corresponding to the ranges in which the characteristics fall, and then adding the partial strength values. Alternatively, a separate password strength application may be used to provide the strength value, which is entered by the user or administrator generating a new password. Alternatively, the password may be generated based on a specified desired expiration period, with the strength computation performed to ensure that the strength is sufficient to merit the desired expiration period.
    • 基于密码强度的密码老化提供了激励用户生成和/或记住更复杂的密码。 密码的强度根据密码长度和密码中包含的字符类型与强度值相关联的公式计算,该强度值可以使用具有不同密码特征值的查找表来执行,确定部分 强度值对应于特征下降的范围,然后加上部分强度值。 或者,可以使用单独的密码强度应用来提供由用户或管理员输入的生成新密码的强度值。 或者,可以基于指定的期望到期期间来生成密码,其中执行强度计算以确保强度足以使所需期望的期满期满。
    • 74. 发明授权
    • Utilizing E-mail response time statistics for more efficient and effective user communication
    • 利用电子邮件响应时间统计数据进行更有效和更有效的用户沟通
    • US08296376B2
    • 2012-10-23
    • US12411880
    • 2009-03-26
    • Itzhack GoldbergBruce A. KahnBoaz MizrachiMichael R. O'Brien
    • Itzhack GoldbergBruce A. KahnBoaz MizrachiMichael R. O'Brien
    • G06F15/16
    • G06Q10/107H04L51/34
    • A method of increasing email correspondence responsiveness may include detecting a first set of email messages transmitted by a first correspondent to a second correspondent, creating a tracking record based on the responsiveness of the second correspondent to each email message of the first set of email messages, performing a first statistical analysis of the tracking record, generating a set of responsiveness metrics based on the first statistical analysis, detecting new outgoing email messages addressed to the second correspondent, and providing a user-configurable email message format for each detected outgoing message, the user-configurable email message format. According to the example embodiment, the user-configurable email message format is configured to increase effective email response time from the second correspondent and the user-configurable email message format is based on the set of responsiveness metrics.
    • 增加电子邮件通信响应能力的方法可以包括:检测第一通信对方发送给第二通信对方的第一组电子邮件消息,基于第二通信对第一组电子邮件消息的每个电子邮件消息的响应性来创建跟踪记录, 执行跟踪记录的第一统计分析,基于第一统计分析生成一组响应度量,检测寻址到第二通信对方的新的传出电子邮件消息,以及为每个检测到的传出消息提供用户可配置的电子邮件消息格式, 用户可配置的电子邮件格式。 根据示例实施例,用户可配置电子邮件消息格式被配置为增加来自第二通信对方的有效电子邮件响应时间,并且用户可配置电子邮件消息格式基于响应度量集合。
    • 75. 发明申请
    • PREDICTING BATTERY POWER USAGE
    • 预测电池使用
    • US20120254634A1
    • 2012-10-04
    • US13078518
    • 2011-04-01
    • Al ChakraItzhack GoldbergLiam HarpurJohn Rice
    • Al ChakraItzhack GoldbergLiam HarpurJohn Rice
    • G06F1/26
    • G06F1/28
    • A method for predicting battery power usage includes, collecting information relating to battery power consumption due to tasks performed by the physical computing system powered by a battery, and notifying a user in response to a determination that tasks associated with an upcoming event stored in a calendar application of the physical computing system are projected to exhaust the battery. A computing system includes a processor, a memory communicatively coupled to the processor, and a battery to power the computing system. The processor is configured to collect information relating to battery power consumption due to tasks performed by the computing system, and notify a user in response to a determination that tasks associated with an upcoming event stored in a calendar application of the computing system are projected to exhaust the battery.
    • 一种用于预测电池电量使用的方法包括:收集与由电池供电的物理计算系统执行的任务相关的电池电力消耗的信息,并响应于确定与存储在日历中的即将到来的事件相关联的任务来通知用户 物理计算系统的应用预计将耗尽电池。 计算系统包括处理器,通信地耦合到处理器的存储器以及为计算系统供电的电池。 处理器被配置为收集由于由计算系统执行的任务而与电池功率消耗有关的信息,并且响应于与存储在计算系统的日历应用中的即将到来的事件相关联的任务被投影到排气的确定而通知用户 电池。
    • 77. 发明申请
    • APPARATUS, SYSTEM, AND METHOD FOR RETAINING EMAIL RESPONSE TIME TRENDS
    • 用于保留电子邮件响应时间趋势的设备,系统和方法
    • US20110087742A1
    • 2011-04-14
    • US12578453
    • 2009-10-13
    • Lisa Seacat DelucaItzhack GoldbergOhad GreenshpanBoaz Mizrachi
    • Lisa Seacat DelucaItzhack GoldbergOhad GreenshpanBoaz Mizrachi
    • G06F15/16
    • G06Q10/107
    • An apparatus, system, and method are disclosed for retaining email response time trends. A send module determines a send time, the time that a user sends an email message to a recipient. A receive module determines a receive time, the time that the user receives a response from the recipient. A response time module determines a response time that corresponds to the email message based on an elapsed time between the send time and the receive time. A content identifier module determines a content identifier for the email message. A trend module determines a response time trend that corresponds to the recipient and the content identifier based on the response time and on a plurality of previous response times of the recipient. The plurality of previous response times correspond to a plurality of previous email messages between the user and the recipient that match the content identifier.
    • 公开了一种用于保留电子邮件响应时间趋势的装置,系统和方法。 发送模块确定发送时间,用户向收件人发送电子邮件的时间。 接收模块确定接收时间,用户从接收者接收响应的时间。 响应时间模块基于发送时间和接收时间之间的经过时间确定对应于电子邮件消息的响应时间。 内容标识符模块确定电子邮件消息的内容标识符。 趋势模块基于接收者的响应时间和多个先前的响应时间来确定对应于接收者的响应时间趋势和内容标识符。 多个先前的响应时间对应于用户和接收者之间的与内容标识符匹配的多个先前的电子邮件消息。
    • 78. 发明授权
    • Code recovery system and method
    • 代码恢复系统和方法
    • US07783921B2
    • 2010-08-24
    • US11677538
    • 2007-02-21
    • Itzhack GoldbergYotam MediniKenneth NaginShmuel Vashdi
    • Itzhack GoldbergYotam MediniKenneth NaginShmuel Vashdi
    • G06F11/00
    • G06F11/1433G06F8/62G06F11/202
    • A system and method for restoring a computing system to a first operating state associated with a first system software code installed on the computing system is provided. The method comprises installing a second system software code on the computing system, while the system is operating in the first operating state. The second system software code is activated and the first system software code is deactivated to cause the computing system to operate in a second operating state. The first system software code is activated and the second system software code is deactivated to cause the system to return to the first operating state, if activation of the second system software code causes the system to operate in an undesirable manner.
    • 提供了一种用于将计算系统恢复到与安装在计算系统上的第一系统软件代码相关联的第一操作状态的系统和方法。 该方法包括在系统在第一操作状态下操作时在计算系统上安装第二系统软件代码。 第二系统软件代码被激活,并且第一系统软件代码被去激活以使计算系统在第二操作状态下操作。 激活第一系统软件代码并且停用第二系统软件代码以使系统返回到第一操作状态,如果第二系统软件代码的激活导致系统以不期望的方式操作。