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    • 1. 发明申请
    • DYNAMIC DISTRIBUTION OF TARGET SELECTION ALGORITHMS
    • 目标选择算法的动态分配
    • WO2012127449A3
    • 2012-11-22
    • PCT/IB2012051387
    • 2012-03-22
    • ERICSSON TELEFON AB L MMALOY JONANDERSSON PER
    • MALOY JONANDERSSON PER
    • H04L29/08H04L29/12
    • H04L61/1541H04L67/1002H04L67/1025H04L67/1038H04L67/28H04L67/2809H04L67/289H04L67/34
    • Methods of distributing a selection algorithm (X) that selects a target server component (A) from among a plurality of server components (A, B) having a same functionality type (1) include receiving notifications (30, 32) from the plurality of server components (A, B) indicating addresses (A_ Addr, B_ Addr) at which the plurality of server components (A, B) can be contacted, receiving (30, 32) a selection algorithm (X) that is to be used by a client component (D) for selecting the target server component (A) from among the plurality of server components (A, B), and associating the selection algorithm (X) with the functionality type (1). The methods may further include receiving a message (36) from the client component (D) requesting addresses (A_ Addr, B_ Addr) of server components (A, B) having the functionality type (1), sending (38) the addresses (A_ Addr, B_ Addr) of the plurality of server components (A, B) to the client component (D), and sending (38) the selection algorithm (X) to the client component (D).
    • 从具有相同功能类型(1)的多个服务器组件(A,B)中分发选择目标服务器组件(A)的选择算法(X)的方法包括从多个 指示可以与多个服务器组件(A,B)接触的地址(A_ Addr,B_Adrr)的服务器组件(A,B),接收(30,32)将被使用的选择算法(X) 用于从所述多个服务器组件(A,B)中选择所述目标服务器组件(A)并且将所述选择算法(X)与所述功能类型(1)相关联的客户端组件(D)。 所述方法还可以包括从客户端组件(D)接收请求具有功能类型(1)的服务器组件(A,B)的地址(A_ Addr,B_Adrr)的消息(36),发送(38)地址 (A,B)的多个服务器组件(A,B)的A_ Addr,B_ Addr)发送给客户端组件(D)(38)。
    • 3. 发明申请
    • MESSAGE PIGGYBACKING DURING TRANSPORT MEDIUM CONGESTION
    • 运输中期消息传递消息
    • WO0122665A3
    • 2001-08-16
    • PCT/SE0001645
    • 2000-08-25
    • ERICSSON TELEFON AB L M
    • MALOY JON
    • H04L12/801H04L12/823H04L12/861H04L29/06H04L29/08H04Q11/04H04L12/56
    • H04L47/32H04L29/06H04L47/10H04L47/11H04L49/90H04L49/9094H04L69/32
    • A computer (30(1)) detects congestion (50, 80) on a network transport medium (32) and in response thereto refrains from sending any packets containing messages. These to be transmitted messages are instead stored (56, 84) by the computer in memory (40). In one embodiment, each message addressed to the same destination addressee computer is stored (84) in a common buffer (38), with a different buffer being allocated to each identified destination addressee computer (30(2) and 30(3)) for the to be transmitted messages. In another embodiment, each such message is encapsulated (54) into a single packet (36) that is stored (56) in the reserved portion. When the congestion condition on the transport medium subsides (58, 86), the one or more messages stored within a given buffer are retrieved from memory and encapsulated (104) within a single packet (36) addressed to the destination addressee computer associated with that given buffer. Alternatively, the stored single packet is retrieved from memory. That single packet is then sent (76, 106) over the transport medium to the identified destination addressee computer.
    • 计算机(30(1))检测网络传输介质(32)上的拥塞(50,80),并响应于此阻止发送包含消息的任何分组。 这些被发送的消息被存储器(40)中的计算机存储(56,84)。 在一个实施例中,寻址到同一目的地收件人计算机的每个消息被存储在公共缓冲器(38)中,其中不同的缓冲器被分配给每个识别的目的地收件人计算机(30(2)和30(3)),用于 要发送的消息。 在另一个实施例中,每个这样的消息被封装(54)到在保留部分中被存储(56)的单个分组(36)中。 当传输介质上的拥塞状况下降(58,86)时,存储在给定缓冲器内的一个或多个消息从存储器中检索并封装(104)到单个数据包(36)内,寻址到与该数据库相关联的目标地址计算机 给定缓冲区 或者,从存储器检索存储的单个分组。 然后将该单个分组通过传输介质发送(76,106)到所识别的目的地收信机。
    • 4. 发明专利
    • MESSAGE PIGGYBACKING DURING TRANSPORT MEDIUM CONGESTION
    • CA2385470C
    • 2006-05-02
    • CA2385470
    • 2000-08-25
    • ERICSSON TELEFON AB L M
    • MALOY JON
    • H04Q11/04H04L47/32
    • A computer (30(1)) detects congestion (50, 80) on a network transport medium (32) and in response thereto refrains from sending any packets containing messages. These to be transmitted messages are instead stored (56, 84) by th e computer in memory (40). In one embodiment, each message addressed to the sa me destination addressee computer is stored (84) in a common buffer (38), with a different buffer being allocated to each identified destination addressee computer (30(2) and 30(3)) for the to be transmitted messages. In another embodiment, each such message is encapsulated (54) into a single packet (36) that is stored (56) in the reserved portion. When the congestion condition o n the transport medium subsides (58, 86), the one or more messages stored with in a given buffer are retrieved from memory and encapsulated (104) within a single packet (36) addressed to the destination addressee computer associate d with that given buffer. Alternatively, the stored single packet is retrieved from memory. That single packet is then sent (76, 106) over the transport medium to the identified destination addressee computer.
    • 5. 发明专利
    • Message piggybacking during transport medium congestion
    • AU7564800A
    • 2001-04-24
    • AU7564800
    • 2000-08-25
    • ERICSSON TELEFON AB L M
    • MALOY JON
    • H04L47/32H04L12/56
    • A computer (30(1)) detects congestion (50, 80) on a network transport medium (32) and in response thereto refrains from sending any packets containing messages. These to be transmitted messages are instead stored (56, 84) by the computer in memory (40). In one embodiment, each message addressed to the same destination addressee computer is stored (84) in a common buffer (38), with a different buffer being allocated to each identified destination addressee computer (30(2) and 30(3)) for the to be transmitted messages. In another embodiment, each such message is encapsulated (54) into a single packet (36) that is stored (56) in the reserved portion. When the congestion condition on the transport medium subsides (58, 86), the one or more messages stored within a given buffer are retrieved from memory and encapsulated (104) within a single packet (36) addressed to the destination addressee computer associated with that given buffer. Alternatively, the stored single packet is retrieved from memory. That single packet is then sent (76, 106) over the transport medium to the identified destination addressee computer.
    • 6. 发明专利
    • MESSAGE PIGGYBACKING DURING TRANSPORT MEDIUM CONGESTION
    • CA2385470A1
    • 2001-03-29
    • CA2385470
    • 2000-08-25
    • ERICSSON TELEFON AB L M
    • MALOY JON
    • H04L47/32H04Q11/04H04L12/56
    • A computer (30(1)) detects congestion (50, 80) on a network transport medium (32) and in response thereto refrains from sending any packets containing messages. These to be transmitted messages are instead stored (56, 84) by th e computer in memory (40). In one embodiment, each message addressed to the sa me destination addressee computer is stored (84) in a common buffer (38), with a different buffer being allocated to each identified destination addressee computer (30(2) and 30(3)) for the to be transmitted messages. In another embodiment, each such message is encapsulated (54) into a single packet (36) that is stored (56) in the reserved portion. When the congestion condition o n the transport medium subsides (58, 86), the one or more messages stored with in a given buffer are retrieved from memory and encapsulated (104) within a single packet (36) addressed to the destination addressee computer associate d with that given buffer. Alternatively, the stored single packet is retrieved from memory. That single packet is then sent (76, 106) over the transport medium to the identified destination addressee computer.
    • 7. 发明专利
    • BR0014110A
    • 2002-05-14
    • BR0014110
    • 2000-08-25
    • ERICSSON TELEFON AB L M
    • MALOY JON
    • H04L47/32H04L12/56
    • A computer (30(1)) detects congestion (50, 80) on a network transport medium (32) and in response thereto refrains from sending any packets containing messages. These to be transmitted messages are instead stored (56, 84) by the computer in memory (40). In one embodiment, each message addressed to the same destination addressee computer is stored (84) in a common buffer (38), with a different buffer being allocated to each identified destination addressee computer (30(2) and 30(3)) for the to be transmitted messages. In another embodiment, each such message is encapsulated (54) into a single packet (36) that is stored (56) in the reserved portion. When the congestion condition on the transport medium subsides (58, 86), the one or more messages stored within a given buffer are retrieved from memory and encapsulated (104) within a single packet (36) addressed to the destination addressee computer associated with that given buffer. Alternatively, the stored single packet is retrieved from memory. That single packet is then sent (76, 106) over the transport medium to the identified destination addressee computer.
    • 10. 发明专利
    • LOAD SHARED ARCHITECTURE FOR AN SS7 NODE
    • CA2357440C
    • 2004-05-25
    • CA2357440
    • 2001-09-13
    • ERICSSON TELEFON AB L M
    • MALOY JON
    • E04F17/00H04Q1/30H04Q3/00
    • A plurality of processors, each containing a statically replicated SS7 protocol stack, are interconnected with each other for inter-processor SS7 protocol layer message passing by a switch to form a scalable SS7 node. The interconnecting switch operates to allow the exchange of SS7 protocol stack related messages between an SS7 layer in one processor and a different SS7 layer in another processor. The node further includes an SS7 link interface associated with a t least one of the plurality of processors, with the switch further operating to all ow the exchange of SS7 protocol stack related messages between the link interface f or one processor and the SS7 protocol stack in another of the processors. Still further, one or more processors include an application, with the switch further operating to allow the exchange of SS7 protocol stack related messages between a selected application resident on one processor and the SS7 protocol stack in another of the processors.