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    • 1. 发明申请
    • Overload protection for SIP servers
    • SIP服务器的过载保护
    • US20080031258A1
    • 2008-02-07
    • US11497948
    • 2006-08-01
    • Arup AcharyaErich M. NahumJohn Michael TraceyXiping WangCharles P. WrightZhen Xiao
    • Arup AcharyaErich M. NahumJohn Michael TraceyXiping WangCharles P. WrightZhen Xiao
    • H04L12/56
    • H04L47/10H04L47/19H04L47/2441H04L47/32H04L47/801H04L47/821H04L49/90H04L65/1046H04L69/22
    • A method for operating a server having a maximum capacity for servicing requests comprises the following steps: receiving a plurality of requests; classifying each request according to a value; determining a priority for handling the request according to the value, such that requests with higher values are assigned higher priorities; placing each request in one of multiple queues according to its priority value; and dropping the requests with the lowest priority when the plurality of requests are received at a rate that exceeds the maximum capacity. The server operates according to a session initiation protocol.Classifying each request comprises running a classification algorithm. The classification algorithm comprising steps of: receiving a rule set, each rule comprising headers and conditions; creating a condition table by taking a union of all conditions in the rules; creating a header table by extracting a common set of headers from the condition table; extracting the relevant headers from the header table; determining a matching rule; creating a bit vector table; selecting the matching rule according to data in the bit vector table; and applying the rule to place the message in the appropriate queue.
    • 一种用于操作具有用于服务请求的最大容量的服务器的方法包括以下步骤:接收多个请求; 根据值对每个请求进行分类; 确定根据该值处理请求的优先级,使得具有较高值的​​请求被分配较高的优先级; 根据其优先级值将每个请求放置在多个队列之一中; 并且当以超过最大容量的速率接收到多个请求时,丢弃具有最低优先级的请求。 服务器根据会话启动协议进行操作。 分类每个请求包括运行分类算法。 分类算法包括以下步骤:接收规则集,每个规则包括头部和条件; 通过规则中的所有条件联合创建条件表; 通过从条件表中提取一组公共标题来创建头表; 从头表中提取相关头文件; 确定匹配规则; 创建一个位向量表; 根据位向量表中的数据选择匹配规则; 并应用规则将消息放置在适当的队列中。
    • 2. 发明授权
    • Overload protection for SIP servers
    • SIP服务器的过载保护
    • US07522581B2
    • 2009-04-21
    • US11497948
    • 2006-08-01
    • Arup AcharyaErich M. NahumJohn Michael TraceyXiping WangCharles P. WrightZhen Xiao
    • Arup AcharyaErich M. NahumJohn Michael TraceyXiping WangCharles P. WrightZhen Xiao
    • H04L12/66H04L12/28H04L12/56
    • H04L47/10H04L47/19H04L47/2441H04L47/32H04L47/801H04L47/821H04L49/90H04L65/1046H04L69/22
    • A method for operating a server having a maximum capacity for servicing requests comprises the following steps: receiving a plurality of requests; classifying each request according to a value; determining a priority for handling the request according to the value, such that requests with higher values are assigned higher priorities; placing each request in one of multiple queues according to its priority value; and dropping the requests with the lowest priority when the plurality of requests are received at a rate that exceeds the maximum capacity. The server operates according to a session initiation protocol.Classifying each request comprises running a classification algorithm. The classification algorithm comprising steps of: receiving a rule set, each rule comprising headers and conditions; creating a condition table by taking a union of all conditions in the rules; creating a header table by extracting a common set of headers from the condition table; extracting the relevant headers from the header table; determining a matching rule; creating a bit vector table; selecting the matching rule according to data in the bit vector table; and applying the rule to place the message in the appropriate queue.
    • 一种用于操作具有用于服务请求的最大容量的服务器的方法包括以下步骤:接收多个请求; 根据值对每个请求进行分类; 确定根据该值处理请求的优先级,使得具有较高值的​​请求被分配较高的优先级; 根据其优先级值将每个请求放置在多个队列之一中; 并且当以超过最大容量的速率接收到多个请求时,丢弃具有最低优先级的请求。 服务器根据会话启动协议进行操作。 分类每个请求包括运行分类算法。 分类算法包括以下步骤:接收规则集,每个规则包括头部和条件; 通过规则中的所有条件联合创建条件表; 通过从条件表中提取一组公共标题来创建头表; 从头表中提取相关头文件; 确定匹配规则; 创建一个位向量表; 根据位向量表中的数据选择匹配规则; 并应用规则将消息放置在适当的队列中。
    • 5. 发明授权
    • Virtual presence server
    • 虚拟在线服务器
    • US08447808B2
    • 2013-05-21
    • US12233795
    • 2008-09-19
    • Arup AcharyaNilanjan BanerjeeDipanjan ChakrabortyKoustuv DasguptaArchan MisraXiping WangCharles P. Wright
    • Arup AcharyaNilanjan BanerjeeDipanjan ChakrabortyKoustuv DasguptaArchan MisraXiping WangCharles P. Wright
    • G06F15/16G06F15/173
    • H04L67/24
    • Techniques are disclosed for generating and managing presentities in accordance with a virtual presence server. By way of example, a method for requesting information from at least one server comprises the following steps. A client request, which expresses a request that can not be satisfied by a single existing presentity, is obtained at an intermediate server, wherein the intermediate server operates as a virtual presence server. The virtual presence server (i.e., intermediate server) creates a set of software objects for a virtual presentity, the set of objects embodying logic to combine presence information from one or more of existing presentities and external information sources, in accordance with at least one existing presence server. The virtual presence server creates an association between the request of the client and the created virtual presentity that allows the presence information to be propagated back to the client.
    • 公开了根据虚拟呈现服务器来生成和管理节目的技术。 作为示例,用于从至少一个服务器请求信息的方法包括以下步骤。 在中间服务器处获得表示单个现有存在不能满足的请求的客户端请求,其中中间服务器作为虚拟呈现服务器操作。 虚拟呈现服务器(即,中间服务器)为虚拟存在体创建一组软件对象,所述一组对象体现逻辑以根据至少一个现有的现有存在和外部信息源组合来自一个或多个现有存在和外部信息源的存在信息 存在服务器。 虚拟呈现服务器在客户端的请求和创建的虚拟呈现之间建立关联,从而允许将呈现信息传播回客户端。
    • 7. 发明申请
    • Virtual Presence Server
    • 虚拟服务器
    • US20100077018A1
    • 2010-03-25
    • US12233795
    • 2008-09-19
    • Arup AcharyaNilanjan BanerjeeDipanjan ChakrabortyKoustuv DasguptaArchan MisraXiping WangCharles P. Wright
    • Arup AcharyaNilanjan BanerjeeDipanjan ChakrabortyKoustuv DasguptaArchan MisraXiping WangCharles P. Wright
    • G06F15/16
    • H04L67/24
    • Techniques are disclosed for generating and managing presentities in accordance with a virtual presence server. By way of example, a method for requesting information from at least one server comprises the following steps. A client request, which expresses a request that can not be satisfied by a single existing presentity, is obtained at an intermediate server, wherein the intermediate server operates as a virtual presence server. The virtual presence server (i.e., intermediate server) creates a set of software objects for a virtual presentity, the set of objects embodying logic to combine presence information from one or more of existing presentities and external information sources, in accordance with at least one existing presence server. The virtual presence server creates an association between the request of the client and the created virtual presentity that allows the presence information to be propagated back to the client.
    • 公开了根据虚拟呈现服务器来生成和管理节目的技术。 作为示例,用于从至少一个服务器请求信息的方法包括以下步骤。 在中间服务器处获得表示单个现有存在不能满足的请求的客户端请求,其中中间服务器作为虚拟呈现服务器操作。 虚拟呈现服务器(即,中间服务器)为虚拟存在体创建一组软件对象,所述一组对象体现逻辑以根据至少一个现有的现有存在和外部信息源组合来自一个或多个现有存在和外部信息源的存在信息 存在服务器。 虚拟呈现服务器在客户端的请求和创建的虚拟呈现之间建立关联,从而允许将呈现信息传播回客户端。