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    • 135. 发明授权
    • Method for determining functions applied to signals
    • 用于确定应用于信号的功能的方法
    • US08311213B2
    • 2012-11-13
    • US12631939
    • 2009-12-07
    • Shantanu RaneWei SunAnthony Vetro
    • Shantanu RaneWei SunAnthony Vetro
    • H04L29/00
    • H04L9/008
    • Embodiments of the invention discloses a system and a method for determining a result of applying a function to signals including a first signal and a second signal, wherein the function is a polynomial function of the signals such that a monomial in the function includes the first signal having a power less than or equal to a first maximum power, and wherein the first signal is partitioned into a first subsignal and a second subsignal, comprising a processor for performing steps of the method, comprising the steps of acquiring a second signal and a second subsignal; acquiring a set of encrypted powers of the first subsignal, wherein the set of encrypted powers of the first subsignal includes homomorphically encrypted powers of the first subsignal; and determining an encrypted result of the function based on a second subsignal, the set of encrypted powers of the first subsignal, and the second signal.
    • 本发明的实施例公开了一种用于确定对包括第一信号和第二信号的信号应用功能的结果的系统和方法,其中所述函数是所述信号的多项式函数,使得所述函数中的单项包括所述第一信号 具有小于或等于第一最大功率的功率,并且其中所述第一信号被划分为第一子信号和第二子信号,包括用于执行所述方法的步骤的处理器,包括以下步骤:获取第二信号和第二信号 次信号 获取所述第一子信号的一组加密功率,其中所述第一子信号的加密功率集合包括所述第一子信号的同态加密功率; 以及基于第二子信号确定所述函数的加密结果,所述第一子信号的加密功率集合和所述第二信号。
    • 137. 发明申请
    • Privacy-Preserving Probabilistic Inference Based on Hidden Markov Models
    • 基于隐马尔可夫模型的隐私保护概率推理
    • US20120254612A1
    • 2012-10-04
    • US13076410
    • 2011-03-30
    • Shantanu RaneWei SunManas A. PathakBhiksha Raj
    • Shantanu RaneWei SunManas A. PathakBhiksha Raj
    • G06N5/02H04L9/32
    • H04L9/008G06N7/005H04L2209/46
    • A probability of an observation sequence stored at a client is evaluated securely with respect to a hidden Markov model (HMM) stored at a server. The server determines, for each state of the HMM, an encryption of a log-probability of a current element of the observation sequence. Determines, for each state of the HMM, an encryption of a log-summation of a product of a likelihood of the observation sequence based on a previous element of the observation sequence and a transition probability to the state of the HMM. Determines an encryption of a log-likelihood of the observation sequence for each state as a product of the encryption of a log-summation and an encryption of a corresponding log-probability of the current element of the observation sequence; and determines an encryption of the log-probability of the observation sequence based on the log-likelihood of the observation sequence for each state.
    • 相对于存储在服务器中的隐马尔可夫模型(HMM),安全地评估存储在客户端的观察序列的概率。 对于HMM的每个状态,服务器确定观察序列的当前元素的对数概率的加密。 确定对于HMM的每个状态,基于观测序列的先前元素和HMM状态的转移概率,对观测序列的可能性的乘积的对数加和进行加密。 确定每个状态的观察序列的对数似然度的加密,作为对数求和的加密和观察序列的当前元素的相应对数概率的加密的乘积; 并且基于每个状态的观察序列的对数似然度来确定观察序列的对数概率的加密。
    • 139. 发明授权
    • Method and apparatus for locating and transforming data
    • 用于定位和转换数据的方法和装置
    • US08271874B2
    • 2012-09-18
    • US10689186
    • 2003-10-20
    • Sheng YeWei SunZhong Tian
    • Sheng YeWei SunZhong Tian
    • G06F17/00
    • G06F17/30569
    • The invention provides method and apparatus for locating data in a data file and for transforming the data. The method comprises the steps: determining the data unit to be located in the data file; determining a type for the data unit, the type including “Text”, “SingleLine”, “MultiLine”, “Block” and “Iterator”; when the type of the data unit is not “Text”, selecting a different data unit as the location reference for the data unit; generating the location description for the data unit, based on the type of the data unit and the position relationship between the data unit and the different data unit, the description including the type of the data unit, one or more location elements for locating the data unit and including “Top”, “Bottom”, “Left” and “Right”, each of the location elements including a combination of attributes so as to determine the position of the location element. The invention may locate the data position by two dimensional area.
    • 本发明提供了用于在数据文件中定位数据和用于变换数据的方法和装置。 该方法包括以下步骤:确定位于数据文件中的数据单元; 确定数据单元的类型,包括“Text”,“SingleLine”,“MultiLine”,“Block”和“Iterator”的类型; 当数据单元的类型不是“文本”时,选择不同的数据单元作为数据单元的位置参考; 基于数据单元的类型和数据单元与不同数据单元之间的位置关系生成数据单元的位置描述,包括数据单元的类型的描述,用于定位数据的一个或多个位置元素 单元,并且包括“顶部”,“底部”,“左”和“右”,每个位置元素包括属性的组合,以便确定位置元素的位置。 本发明可以通过二维区域来定位数据位置。
    • 140. 发明申请
    • Method and Inquiring Device for Implementing Switching in Network Fault
    • 网络故障切换实现方法与查询装置
    • US20120170446A1
    • 2012-07-05
    • US13395224
    • 2010-05-24
    • Bo YuanLiang FanWei Sun
    • Bo YuanLiang FanWei Sun
    • H04L12/26
    • H04L41/0663H04L12/185H04L12/1863H04L45/28H04L45/586H04L69/40
    • A method for implementing switching when the network is faulted is disclosed, and the method includes: establishing a quick detection mechanism between non-querier and querier; the non-querier using the detection mechanism for performing a real-time detection on the querier and downlink of the querier; switching the non-querier to be the querier when the non-querier detects that the querier or the downlink of the querier is faulted. A querier is further disclosed. With the method, it can complete a quick switching of the querier and a quick transmission of a multicast flow when the querier or the downlink thereof is faulted, thereby reducing the interrupt time of users receiving the multicast flow, implementing a quick protection of a multicast service, and improving the service experience for the user.
    • 公开了一种在网络故障时实现切换的方法,该方法包括:在非查询器和查询器之间建立快速检测机制; 非查询器使用检测机制对查询器的查询器和下行链路进行实时检测; 当非查询器检测到查询器的查询器或下行链路发生故障时,将非查询器切换为查询器。 进一步公开查询器。 通过该方法,当查询器或其下行链路发生故障时,可以快速切换查询器和快速传输组播流,从而减少接收组播流的用户的中断时间,实现组播的快速保护 服务,并改善用户的服务体验。