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    • 2. 发明授权
    • Establishing secure mutual trust using an insecure password
    • 使用不安全的密码建立安全的互信
    • US08332643B2
    • 2012-12-11
    • US12907775
    • 2010-10-19
    • Harry S. PyleBruce Louis LiebermanDaniel R. SimonGuillaume SimonnetWilliam Dollar
    • Harry S. PyleBruce Louis LiebermanDaniel R. SimonGuillaume SimonnetWilliam Dollar
    • H04L29/06
    • H04L9/3228H04L9/3263H04L9/3273
    • A process for establishing secure mutual trust includes generating a one-time-password. The one-time-password is transferred between the devices in a communication occurring off of the network. Each device generates a set of authenticators by hashing a plurality of sub-strings of the password and the device's authentication certificate with a respective set of nonces. The devices exchange the respective sets of authenticators. Each device then alternates revealing its respective set of nonces and its authentication certificate in a multi-stage process. The devices re-calculate the authenticators based upon the respective set of nonces and authentication certificate revealed by the other device along with the one-time-password sub-strings that it posses. If each device determines that the authenticators re-calculated by the given device matches the authenticators previously received from the other device, secure mutual trust is established.
    • 建立安全互信的过程包括生成一次性密码。 一次性密码在网络中发生的通信中在设备之间传输。 每个设备通过用相应的一组随机数散列密码的多个子串和设备的认证证书来生成一组认证者。 设备交换相应的认证器组。 然后,每个设备在多阶段过程中交替显示其相应的一组随机数及其认证证书。 设备根据由其他设备显示的相应的一组密钥和认证证书及其拥有的一次性密码子字符串重新计算认证者。 如果每个设备确定由给定设备重新计算的认证者与先前从另一设备接收到的认证者匹配,则建立安全的相互信任。
    • 3. 发明申请
    • ESTABLISHING SECURE MUTUAL TRUST USING AN INSECURE PASSWORD
    • 使用隐私密码建立安全的信任信任
    • US20110035593A1
    • 2011-02-10
    • US12907775
    • 2010-10-19
    • Harry S. PyleBruce Louis LiebermanDaniel R. SimonGuillaume SimonnetWilliam Dollar
    • Harry S. PyleBruce Louis LiebermanDaniel R. SimonGuillaume SimonnetWilliam Dollar
    • H04L9/32
    • H04L9/3228H04L9/3263H04L9/3273
    • A process for establishing secure mutual trust includes generating a one-time-password. The one-time-password is transferred between the devices in a communication occurring off of the network. Each device generates a set of authenticators by hashing a plurality of sub-strings of the password and the device's authentication certificate with a respective set of nonces. The devices exchange the respective sets of authenticators. Each device then alternates revealing its respective set of nonces and its authentication certificate in a multi-stage process. The devices re-calculate the authenticators based upon the respective set of nonces and authentication certificate revealed by the other device along with the one-time-password sub-strings that it posses. If each device determines that the authenticators re-calculated by the given device matches the authenticators previously received from the other device, secure mutual trust is established.
    • 建立安全互信的过程包括生成一次性密码。 一次性密码在网络中发生的通信中在设备之间传输。 每个设备通过用相应的一组随机数散列密码的多个子串和设备的认证证书来生成一组认证者。 设备交换相应的认证器组。 然后,每个设备在多阶段过程中交替显示其相应的一组随机数及其认证证书。 设备根据由其他设备显示的相应的一组密钥和认证证书及其拥有的一次性密码子字符串重新计算认证者。 如果每个设备确定由给定设备重新计算的认证者与先前从另一设备接收到的认证者匹配,则建立安全的相互信任。
    • 4. 发明授权
    • Establishing secure mutual trust using an insecure password
    • 使用不安全的密码建立安全的互信
    • US07836306B2
    • 2010-11-16
    • US11170523
    • 2005-06-29
    • Harry S. PyleBruce Louis LiebermanDaniel R. SimonGuillaume SimonnetWilliam Dollar
    • Harry S. PyleBruce Louis LiebermanDaniel R. SimonGuillaume SimonnetWilliam Dollar
    • H04L9/32H04L29/06
    • H04L9/3228H04L9/3263H04L9/3273
    • A process for establishing secure mutual trust includes generating a one-time-password. The one-time-password is transferred between the devices in a communication occurring off of the network. Each device generates a set of authenticators by hashing a plurality of sub-strings of the password and the device's authentication certificate with a respective set of nonces. The devices exchange the respective sets of authenticators. Each device then alternates revealing its respective set of nonces and its authentication certificate in a multi-stage process. The devices re-calculate the authenticators based upon the respective set of nonces and authentication certificate revealed by the other device along with the one-time-password sub-strings that it posses. If each device determines that the authenticators re-calculated by the given device matches the authenticators previously received from the other device, secure mutual trust is established.
    • 建立安全互信的过程包括生成一次性密码。 一次性密码在网络中发生的通信中在设备之间传输。 每个设备通过用相应的一组随机数散列密码的多个子串和设备的认证证书来生成一组认证者。 设备交换相应的认证器组。 然后,每个设备在多阶段过程中交替显示其相应的一组随机数及其认证证书。 设备根据由其他设备显示的相应的一组密钥和认证证书及其拥有的一次性密码子字符串重新计算认证者。 如果每个设备确定由给定设备重新计算的认证者与先前从另一设备接收到的认证者匹配,则建立安全的相互信任。
    • 5. 发明授权
    • Systems and methods for providing automatic network optimization with application variables
    • 用应用变量提供自动网络优化的系统和方法
    • US07453906B2
    • 2008-11-18
    • US10251457
    • 2002-09-19
    • Guillaume SimonnetHarry S. PyleRichard L. Hasha
    • Guillaume SimonnetHarry S. PyleRichard L. Hasha
    • H04J3/16H04L12/26
    • H04L29/06H04L12/2803H04L41/08H04L69/03
    • Systems and methods for automatic network optimization with application variables are provided. Operation of a protocol stack, such as an SCP stack, relies upon a number of persistent variables, which are remembered over power and reset cycles, used in connection with controlling protocol timing and behavior. These application variables are handled at the network layer of the protocol and may be assigned values by an address space arbitrator, which is an entity responsible for managing the logical network. Each node member of a logical network maintains a set of values for its application variables. This set can be handled by the protocol's network layer, and can be saved in persisted storage. Since the variable values may be modified asynchronously, they are treated as volatile and thus, when a variable is used, its value is obtained through an application interface exposed by a network layer, e.g., through polling. An exception to this procedure is a data link layer, which obtains some operating parameters on every call by the network layer. Optimization of application variables enables reliable operation of a logical network operating under low bandwidth network conditions, etc.
    • 提供了具有应用变量的自动网络优化的系统和方法。 诸如SCP堆栈的协议栈的操作依赖于与控制协议时序和行为有关的多个持久变量,这些持久变量被记录在功率和复位周期上。 这些应用变量在协议的网络层处理,并且可以由地址空间仲裁器分配值,地址空间仲裁器是负责管理逻辑网络的实体。 逻辑网络的每个节点成员为其应用程序变量维护一组值。 该组可以由协议的网络层进行处理,可以保存在持久存储中。 由于变量值可以被异步地修改,所以将它们视为易失性的,因此当使用变量时,其值通过例如通过轮询由网络层公开的应用接口获得。 该过程的例外是数据链路层,其在网络层的每次呼叫上获得一些操作参数。 应用变量的优化使得在低带宽网络条件下运行的逻辑网络的可靠运行等。
    • 10. 发明申请
    • Establishing secure mutual trust using an insecure password
    • 使用不安全的密码建立安全的互信
    • US20070005955A1
    • 2007-01-04
    • US11170523
    • 2005-06-29
    • Harry PyleBruce LiebermanDaniel SimonGuillaume SimonnetWilliam Dollar
    • Harry PyleBruce LiebermanDaniel SimonGuillaume SimonnetWilliam Dollar
    • H04L9/00
    • H04L9/3228H04L9/3263H04L9/3273
    • A process for establishing secure mutual trust includes generating a one-time-password. The one-time-password is transferred between the devices in a communication occurring off of the network. Each device generates a set of authenticators by hashing a plurality of sub-strings of the password and the device's authentication certificate with a respective set of nonces. The devices exchange the respective sets of authenticators. Each device then alternates revealing its respective set of nonces and its authentication certificate in a multi-stage process. The devices re-calculate the authenticators based upon the respective set of nonces and authentication certificate revealed by the other device along with the one-time-password sub-strings that it posses. If each device determines that the authenticators re-calculated by the given device matches the authenticators previously received from the other device, secure mutual trust is established.
    • 建立安全互信的过程包括生成一次性密码。 一次性密码在网络中发生的通信中在设备之间传输。 每个设备通过用相应的一组随机数散列密码的多个子串和设备的认证证书来生成一组认证者。 设备交换相应的认证器组。 然后,每个设备在多阶段过程中交替显示其相应的一组随机数及其认证证书。 设备根据由其他设备显示的相应的一组密钥和认证证书及其拥有的一次性密码子字符串重新计算认证者。 如果每个设备确定由给定设备重新计算的认证者与先前从另一设备接收到的认证者匹配,则建立安全的相互信任。