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    • 4. 发明授权
    • Fiber optic splice
    • 光纤接头
    • US08096712B2
    • 2012-01-17
    • US11977022
    • 2007-10-23
    • Thomas SolomonDonald JohnsonSteven Mersch
    • Thomas SolomonDonald JohnsonSteven Mersch
    • G02B6/255
    • G02B6/3801G02B6/25G02B6/2558G02B6/3803
    • A splicing method and splicing kit are suitable for creating a multimode mechanical splice. The splice may be used, for example, in Aircraft Battle Damage Repair operations. The splice utilizes two cylindrical inner crimp sleeves and an outer crimping assembly. The inner crimp sleeves are placed over prepared fiber cable ends, and the fiber core is cleaved. The cable ends are then inserted into an outer cannula of the outer crimping assembly. The cannula guides the inner crimp sleeves, and the cleaved fiber ends enter a glass ferrule in the cannula. The glass ferrule has a triangular bore containing an index matching gel. A window in the cannula and a magnifying viewer are provided to visually confirm the splice quality. The fibers may be cleaved by forming a circumferential score on the fiber.
    • 拼接方法和拼接套件适用于创建多模机械接头。 接头可以用于例如飞机战斗伤害修复操作。 接头使用两个圆柱形内部压接套管和一个外部压接组件。 将内部压接套管放置在准备好的光缆端部上,并且光纤芯线被切割。 然后将电缆端部插入外部压接组件的外套管中。 套管引导内部压接套管,并且切割的纤维端部进入套管中的玻璃套圈。 玻璃套管具有含有折射率匹配凝胶的三角形孔。 插管中的窗口和放大观察器被提供以在视觉上确认拼接质量。 纤维可以通过在纤维上形成圆周分数而被切割。
    • 8. 发明申请
    • Masked digital signatures
    • 蒙面的数字签名
    • US20080005570A1
    • 2008-01-03
    • US11882560
    • 2007-08-02
    • Donald JohnsonScott VanstoneMinghua Ou
    • Donald JohnsonScott VanstoneMinghua Ou
    • H04L9/32
    • H04L9/3247G06Q20/341G06Q20/40975G07F7/1008H04L9/3066H04L9/3252H04L2209/04
    • The present invention relates to digital signature operations using public key schemes in a secure communications system and in particular for use with processors having limited computing power such as ‘smart cards’. This invention describes a method for creating and authenticating a digital signature comprising the steps of selecting a first session parameter k and generating a first short term public key derived from the session parameter k, computing a first signature component r derived from a mathematical function using the short term public key, selecting a second session parameter t and computing a second signature component s derived from a second mathematical function using the second session parameter t and without using an inverse operation, computing a third signature component using the first and second session parameters and sending the signature components (s, r, c) as a masked digital signature to a receiver computer system. In the receiver computer system computing a recovered second signature component s′ by combining a third signature component with the second signature component to derive signature components (s′, r) as an unmasked digital signature. Verifying these signature components as in a usual ElGamal or ECDSA type signature verification.
    • 本发明涉及在安全通信系统中使用公共密钥方案的数字签名操作,特别是与具有计算能力有限的处理器(例如“智能卡”)一起使用。 本发明描述了一种用于创建和认证数字签名的方法,包括以下步骤:选择第一会话参数k并生成从会话参数k导出的第一短期公共密钥,计算从数学函数导出的第一签名组件r, 短期公钥,选择第二会话参数t并且使用第二会话参数t计算从第二数学函数导出的第二签名组件,并且不使用反向操作,使用第一和第二会话参数来计算第三签名组件;以及 将签名组件(s,r,c)作为掩蔽的数字签名发送到接收机计算机系统。 在接收机计算机系统中,通过将第三签名组件与第二签名组件组合来计算恢复的第二签名组件s',以将签名组件(s',r)导出为未屏蔽的数字签名。 验证这些签名组件,如通常的ElGamal或ECDSA类型签名验证。
    • 9. 发明申请
    • Autogeneration of neurostimulation therapy program groups
    • 神经刺激治疗方案组的自动再生
    • US20070244519A1
    • 2007-10-18
    • US11402652
    • 2006-04-12
    • Jeffrey KeacherSteven GoetzAndrew HouchinsTheodore StoneDonald JohnsonShyam Gokaldas
    • Jeffrey KeacherSteven GoetzAndrew HouchinsTheodore StoneDonald JohnsonShyam Gokaldas
    • A61N1/18
    • G16H40/63A61N1/3605A61N1/37247A61N1/37264G06F19/00
    • The disclosure relates to techniques for automatically generating neurostimulation therapy program groups. The techniques may include receiving rating information and information describing actual therapy effects for a plurality of tested programs, and receiving target therapy data describing target therapy effects. The techniques may include automatically generating plurality of program groups based on the rating information and a comparison of actual effects to the target therapy effects. Actual effects and target therapy effects may be, for example, actual paresthesia areas and target paresthesia areas. The techniques may also include determining whether a sufficient number of programs have been tested to generate a desired number of programs groups and, if a sufficient number have not been tested, automatically generating additional programs based on the tested programs, and automatically generating program groups from the tested and automatically generated programs.
    • 本公开涉及用于自动产生神经刺激治疗程序组的技术。 技术可以包括接收评估信息和描述多个测试程序的实际治疗效果的信息,以及接收描述目标治疗效果的目标治疗数据。 这些技术可以包括基于评级信息自动生成多个节目组,并且将实际效果与目标治疗效果进行比较。 实际效果和目标治疗效果可能是例如实际的感觉异常区域和目标感觉异常区域。 这些技术还可以包括确定是否已经测试了足够数量的节目以产生期望数量的节目组,并且如果尚未测试足够的数量,则基于所测试的节目自动生成附加节目,并且自动地从 测试和自动生成的程序。