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    • 2. 发明授权
    • Apparatus and method for controlling interaction between a multi-media messaging system and an instant messaging system
    • 用于控制多媒体消息系统和即时消息系统之间的交互的装置和方法
    • US07573987B1
    • 2009-08-11
    • US11051921
    • 2005-02-05
    • Frederick Peter BlockGordon Richards BrunsonJeffrey Forest McElroy
    • Frederick Peter BlockGordon Richards BrunsonJeffrey Forest McElroy
    • H04M11/00
    • H04M7/0045H04M3/42374
    • A method and apparatus provide access to a plurality of instant messaging systems via a multi-media messaging system by receiving an incoming communication by the multi-media messaging system for a user of the multi-media messaging system; determining a presence of the user on one of the plurality of instant messaging systems; and establishing instant messaging communication between an originator of the incoming communication and the user. The method and apparatus also provide communication for the user via a multi-media messaging system with a plurality of instant messaging systems by broadcasting a presence of the user on the multi-media messaging system to the plurality of instant messaging systems; and establishing instant messaging communication between a person using one of the plurality of instant messaging systems and the user via the multi-media messaging system.
    • 一种方法和装置通过多媒体消息收发系统通过多媒体消息收发系统接收多媒体消息传送系统的用户进入的通信来提供对多个即时消息收发系统的访问; 确定所述多个即时消息传递系统中的一个上的用户的存在; 以及在传入通信的发起者和用户之间建立即时消息通信。 该方法和装置还通过具有多个即时消息收发系统的多媒体消息收发系统为用户提供通信,通过在多媒体消息收发系统上向多个即时消息系统广播用户的存在; 以及在使用所述多个即时消息收发系统之一和通过所述多媒体消息收发系统的用户之间建立即时消息通信。
    • 4. 发明授权
    • Assignment of full enterprise identity to audio conference bridges for improved conference scheduling and call-in experience
    • 将完整的企业标识分配给音频会议网桥,以改善会议安排和呼入体验
    • US08855284B2
    • 2014-10-07
    • US12570925
    • 2009-09-30
    • Frederick Peter Block
    • Frederick Peter Block
    • H04M3/42H04M7/00H04M3/56
    • H04M7/0054H04M3/565
    • Systems and methods can provide an identity to a conference bridge; the identity including an email address for the conference bridge. When two or more people desire to conduct a conference, a person creates an invitation to the conference. The invitation can be an email invitation from a calendar program that can be sent to the invitees. The invitation can be sent to the conference bridge using the email address for the conference bridge. The conference bridge may then receive a call from a caller for a conference. The conference bridge can extract a caller identifier from the call and determine an email associated with the caller. The conference bridge may then retrieve the invitation having the email. Then, the conference bridge can attach the caller to the conference associated with the invitation.
    • 系统和方法可以向会议桥提供身份; 该身份包括会议桥的电子邮件地址。 当两个以上的人希望举行会议时,有人向会议发出邀请。 邀请可以是可以发送给受邀者的日历程序的电子邮件邀请。 可以使用会议桥的电子邮件地址将邀请发送到会议桥。 然后,会议桥可以接收来自呼叫者的用于会议的呼叫。 会议桥可以从呼叫中提取呼叫者标识符并确定与呼叫者相关联的电子邮件。 然后,会议桥可以检索具有该电子邮件的邀请。 然后,会议桥可以将呼叫者附加到与邀请相关联的会议。
    • 6. 发明申请
    • Self-Operating Security Platform
    • 自主安全平台
    • US20080127343A1
    • 2008-05-29
    • US11564210
    • 2006-11-28
    • Albert J. BakerFrederick Peter BlockLincy ScariaScott Allan Schell
    • Albert J. BakerFrederick Peter BlockLincy ScariaScott Allan Schell
    • G06F21/22
    • H04L63/1425G06F21/55G06Q10/06H04L63/1441
    • A platform is disclosed that enables security monitoring and protection across a plurality of related telecommunications devices. The self-operating security platform of the present invention is based on a collection of security adapters that are tied together and are coupled with an orchestration engine that loads and executes workflow scripts. Workflow scripts have been used for business applications, but their usage in real-time telecommunications devices is relatively new. Each security adapter monitors a different aspect of the system for intrusions or other security threats. The specific security protection rules are taught to the security platform in a basic profile; as the security platform runs, it builds up the actual profile of how the telecommunications device performs in a normal state. In other words, the security platform “composes” new workflow scripts from basic workflow scripts. The self-expanding nature of the workflow enables the telecommunications device to learn the behavioral patterns of its users.
    • 公开了一种能够跨多个相关电信设备进行安全监控和保护的平台。 本发明的自主操作的安全平台基于连接在一起的安全适配器的集合,并且与加载和执行工作流脚本的业务流程引擎耦合。 工作流脚本已被用于业务应用程序,但它们在实时电信设备中的使用相对较新。 每个安全适配器监视系统的不同方面的入侵或其他安全威胁。 具体的安全保护规则在基本配置文件中向安全平台讲授; 随着安全平台的运行,它构建了电信设备在正常状态下执行的实际配置文件。 换句话说,安全平台从基本工作流脚本“组成”新的工作流脚本。 工作流的自我扩展性使电信设备能够了解其用户的行为模式。
    • 9. 发明授权
    • Method and apparatus for echo transit time determination
    • 用于回波通过时间确定的方法和装置
    • US4809241A
    • 1989-02-28
    • US58932
    • 1987-06-05
    • Peter Block
    • Peter Block
    • G01S7/526G01S15/18G01S15/89G01S9/66
    • G01S15/18G01S15/8902G01S7/526
    • A method and an apparatus for determining the transit time of echoes triggered by exposure of the bottom of a body of water to sonic pulses, in order to improve the echo detection in a received signal intercepted via at least one receiving lobe, particularly for mapping the surface profile of a sea bed. A temporal echo expectation window is opened up on either side of an echo expectation time, the temporal length of the window being dimensioned greater than a maximum echo length to be expected on the basis of an assumed maximum slope of the sea bed and/or a reception angle of the receiving lobe deviating from the vertical. The center of gravity integral is formed from the received signal defined by the echo expectation window, and the time component of the center of gravity is defined as the echo transit time. The echo expectation time is derived from the echo propagation at a known sounding depth. To this end, an edge descriminator is provided, and the echo transit time ascertained by edge discrimination is used as the echo expectation time.
    • 一种用于确定通过将水体底部暴露于声波脉冲而触发的回波的传播时间的方法和装置,以便改善通过至少一个接收波瓣截取的接收信号中的回波检测,特别是用于映射 海床的表面轮廓。 在回波预期时间的任一侧上开放时间回波预期窗口,窗口的时间长度的尺寸大于基于假定的海床的最大斜率和/或一个或多个的预期的最大回波长度 接收波瓣的接收角度偏离垂直方向。 重心积分由回波预期窗口定义的接收信号形成,重心的时间分量定义为回波通过时间。 回波预期时间来自已知探测深度的回波传播。 为此,提供了一个边缘描述符,并且通过边缘鉴别确定的回波传播时间被用作回波预期时间。