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    • 82. 发明申请
    • ADAPTIVE RATE CONTROL BASED ON OVERLOAD SIGNALS
    • 基于过载信号的自适应速率控制
    • US20100271947A1
    • 2010-10-28
    • US12430708
    • 2009-04-27
    • Ahmed AbdelalWassim MatragiNui ChanShuan Jaikarran Bharrat
    • Ahmed AbdelalWassim MatragiNui ChanShuan Jaikarran Bharrat
    • G08C15/00
    • H04L65/4092H04L47/263H04L47/28H04L67/1002Y02D50/10
    • Described are methods and apparatuses, including computer program products, for limiting server overload via client control. A first set of a plurality of requests are transmitted to a server at a first transmission rate during a first period of time. The first transmission rate is limited to be less than or equal to a first transmission limit rate. An overload value is determined based on whether at least two or more requests of the first set of requests for service satisfy an overload criterion. A second transmission limit rate is determined based on the overload value and the first transmission limit rate. A second set of a plurality of requests is transmitted to the server at a second transmission rate during a second period of time. The second transmission rate is limited to be less than or equal to the second transmission limit rate.
    • 描述了通过客户端控制来限制服务器过载的方法和装置,包括计算机程序产品。 第一组多个请求在第一时间段期间以第一传输速率被发送到服务器。 第一传输速率被限制为小于或等于第一传输限制速率。 基于第一组服务请求的至少两个以上的请求是否满足过载标准来确定过载值。 基于过载值和第一传输限制速率确定第二传输限制速率。 第二组多个请求在第二时间段期间以第二传输速率被发送到服务器。 第二传输速率被限制为小于或等于第二传输限制速率。
    • 84. 发明授权
    • Intelligence engine
    • 情报引擎
    • US06961334B1
    • 2005-11-01
    • US09821507
    • 2001-03-29
    • Casimer M. Kaczmarczyk
    • Casimer M. Kaczmarczyk
    • H04L12/66H04M3/38H04M3/42H04M3/436H04M7/00
    • H04M7/006H04M3/38H04M3/42059H04M3/42102H04M3/436
    • One aspect of the invention is an intelligence engine. The intelligence engine includes a distributor layer operable to communicate with at least one call agent in a telecommunications network. The call agent may receive state-driven information associated with a call between an originator and a termination point. The intelligence engine also includes a telephony management layer. The telephony management layer is operable to receive a plurality of stateless requests from the distributor layer, access a database entry associated with the requests, spawn at least one request to obtain information associated with the originator and the termination point if necessary to route the call, and send the information to the call agent to route the call. In a particular embodiment, the intelligence engine further includes a facility management command and control layer. The facility management command and control layer is operable to receive an indicator signal associated with the call from the network. The call is controlled by the call agent. The facility management command and control layer is also operable to access a database entry associated with the call agent in response to the indicator signal and to reassign control of the call from the call agent to a second call agent.
    • 本发明的一个方面是智能引擎。 智能引擎包括可操作用于与电信网络中的至少一个呼叫代理进行通信的分发器层。 呼叫代理可以接收与发起者和终止点之间的呼叫相关联的状态驱动信息。 智能引擎还包括电话管理层。 电话管理层可操作以从分配器层接收多个无状态请求,访问与请求相关联的数据库条目,产生至少一个请求以获得与发起者相关联的信息和终止点,如果需要路由该呼叫, 并将信息发送到呼叫代理以路由呼叫。 在特定实施例中,智能引擎还包括设备管理命令和控制层。 设备管理命令和控制层可操作以从网络接收与呼叫相关联的指示符信号。 呼叫由呼叫代理控制。 设备管理命令和控制层还可操作以响应于指示符信号来访问与呼叫代理相关联的数据库条目,并且将来自呼叫代理的呼叫的控制重新分配给第二呼叫代理。
    • 86. 发明申请
    • Method and apparatus for synchronized transport of data through an asynchronous medium
    • 用于通过异步介质同步传输数据的方法和装置
    • US20050053053A1
    • 2005-03-10
    • US10658053
    • 2003-09-09
    • Mark SmithShiping LiJames Pasco-Anderson
    • Mark SmithShiping LiJames Pasco-Anderson
    • H04L12/64H04L12/66
    • H04L12/6418
    • A gateway apparatus includes multiple network server cards which are synchronized with each other to allow time slot switching of synchronous data across an asynchronous medium between source and destination server cards. The gateway includes synchronization logic and a data adaptation layer which implements a protocol for formatting of synchronous serial data. The data undergoes serial to parallel conversion and is formed into per time slot subpackets which are further packetized along with context and synchronization data. The packet is transmitted through an asynchronous switch after which the packet is disassembled into its constituent subpackets and queued into play-out buffers according to each subpackets' associated context and synchronization data. The apparatus allows synchronous data to be switched from a source time slot to a destination time slot across the asynchronous switch with a known, fixed delay. The gateway apparatus requires only a single asynchronous switch to transmit data between and among both the synchronous and asynchronous domains.
    • 网关装置包括彼此同步的多个网络服务器卡,以允许在源服务器卡和目的地服务器卡之间的异步介质上的同步数据的时隙切换。 网关包括同步逻辑和实现用于格式化同步串行数据的协议的数据适配层。 数据经历串行到并行转换,并且形成为每个时隙子分组,其随着上下文和同步数据进一步分组化。 分组通过异步交换机传输,之后分组被拆分成其组成子分组,并根据每个子分组的相关上下文和同步数据排队到播出缓冲器中。 该装置允许同步数据以已知的固定延迟从异常交换机的源时隙切换到目的时隙。 网关设备只需要一个异步交换机来在同步和异步域之间进行数据传输。