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    • 11. 发明申请
    • METHOD AND SYSTEM FOR MANAGING MOBILE MANAGEMENT ENTITY (MME) IN A TELECOMMUNICATION NETWORK
    • 用于在电信网络中管理移动管理实体(MME)的方法和系统
    • US20130258943A1
    • 2013-10-03
    • US13854772
    • 2013-04-01
    • TEJAS NETWORKS LIMITED
    • Vinod Kumar MADAIAH
    • H04W72/04
    • H04W72/04H04W24/02H04W84/047
    • The present invention relates to a method and system for managing MME in a telecommunication network. In one embodiment this is accomplished by receiving the bearer resource request message at the MME_UE from the UE, wherein the bearer resource request message is corresponding to the UE's original bearer resource request, inspecting the received message by the MME_UE in order to identify presence of RN_ID, if any, requesting to receive by the MME_UE from the MME_RNs for RN's ‘management context information’ wherein management context includes all information that enables taking over the function of MME_RN by the MME_UE and consolidating the MME_UE and MME_RNs function within the MME as MME_UE_RNs, so that for all future response to the received request will be managed by MME_UE_RN.
    • 本发明涉及用于管理电信网络中的MME的方法和系统。 在一个实施例中,这是通过从UE接收来自MME_UE的承载资源请求消息来实现的,其中承载资源请求消息对应于UE的原始承载资源请求,通过MME_UE检查接收的消息,以便识别RN_ID的存在 (如果有的话)请求从MME_RN接收用于RN的“管理上下文信息”的MME_UE,其中管理上下文包括能够由MME_UE接管MME_RN的功能的所有信息,并将MME内的MME_UE和MME_RNs功能合并为MME_UE_RN, 以便所有未来对接收到的请求的响应将由MME_UE_RN进行管理。
    • 13. 发明申请
    • METHOD AND SYSTEM FOR PROTECTING TRAFFIC OF A PLURALITY OF WORK ODUS OVER A PROTECT ODU
    • 保护ODU的多重工作ODU的交通的方法和系统
    • US20130216217A1
    • 2013-08-22
    • US13764813
    • 2013-02-12
    • Tejas Networks Limited
    • NISHANT SHARMANIKHIL KUMAR SATYARTHIVIVEK SUBRAMANIAN
    • H04J14/08
    • H04J14/08H04J3/1652H04J2203/006
    • The various embodiments herein provide a method and system for protecting multiple work ODU failures using, a higher capacity protect ODU in an Optical Transport Network. The method for protecting multiple work ODU failures in an Optical Transport Network comprising steps of detecting signal failures in at least one of a plurality of work ODUs, requesting for release of one or more time-slots for a defective work ODU and allocating the one or more time-slots of a low priority traffic from the protect ODU in an incremental manner of priority. The method apply a TPN based policy for defining lower ODUs, performs handshaking between the transmit and downstream ends using, the protocol provided, defines the role and behavior of the various system components and the service requests and performs an automatic lockout of protection for the work ODU in which an urn alarm is present.
    • 本文的各种实施例提供了一种使用光传输网络中更高容量保护ODU来保护多个工作ODU故障的方法和系统。 用于保护光传输网络中的多个工作ODU故障的方法包括以下步骤:检测多个工作ODU中的至少一个工作ODU中的信号故障,请求释放用于有缺陷的工作ODU的一个或多个时隙并分配一个或 来自保护ODU的低优先级流量的更多时隙以增量的优先级方式。 该方法应用基于TPN的策略来定义较低的ODU,使用所提供的协议,在所提供的协议之间执行握手,定义各种系统组件和服务请求的角色和行为,并对工作进行自动锁定保护 存在瓮报警的ODU。
    • 14. 发明申请
    • BEARER SIGNALING MANAGEMENT METHOD
    • 承载信号管理方法
    • US20130201934A1
    • 2013-08-08
    • US13752864
    • 2013-01-29
    • Tejas Networks Limited
    • Kumar RohitR. C. SanilKumar M. Vinod
    • H04W72/04
    • H04W72/04H04W72/0406H04W84/047
    • A method and system of bearer management signalling in a communication network comprising of transporting bearer resource request message of both the UE and RN via DeNB to management entity of UE within EPC, as a signalling message over uplink channel referred to as “Union of Resource Request” (UR Request) message. The bearer resource response message from one of the management entity of UE or management entities of UE and RN within EPC are transported as a signalling message to Evolved Packet Edge (EPE) via DeNB over the downlink channel referred to as “Implicit Admission Response” (IA Response). This manages bearer setup signalling as a single loop, by transportation of ‘UR Request’ signalling message and receiving one “IA Response” signalling message over uplink and downlink channels respectively. EPE is a conglomeration of network nodes comprising of UEs, RNs and all other network nodes that communicate over EPC via DeNB.
    • 一种通信网络中承载管理信令的方法和系统,包括:通过DeNB将承载资源请求消息通过DeNB传送到EPC内的UE的管理实体,作为通过上行链路信道的信令消息,称为“资源请求联盟 “(UR请求)消息。 来自UE的管理实体之一或EPC内的UE和RN的管理实体的承载资源响应消息作为信令消息通过被称为“隐式接纳响应”的下行链路信道上的DeNB被传送到演进分组边缘(EPE) IA响应)。 这通过“UR请求”信令消息的传送和在上行链路和下行链路信道上分别接收一个“IA响应”信令消息来管理承载建立信令作为单个环路。 EPE是由UE,RN和通过EPC通过DeNB进行通信的所有其他网络节点组成的网络节点的集合。
    • 15. 发明申请
    • PROTECTION SWITCHING METHOD AND SYSTEM FOR A MULTI-ROOTED POINT-TO- MULTI-POINT SERVICE IN A PROVIDER BACKBONE BRIDGE (PBB) NETWORK
    • 提供者背桥(PBB)网络中的多点点对多服务的保护切换方法和系统
    • US20130077473A1
    • 2013-03-28
    • US13626417
    • 2012-09-25
    • TEJAS NETWORKS LIMITED
    • Somnath OJHAVinod Kumar MADAIAH
    • H04L12/24
    • H04L41/0668H04L12/462H04L12/4662H04L41/0663H04L45/22H04L45/28
    • The present invention relates to a protection switching method and system for a Multi-Rooted Point-to-Multi-point Service in a Provider Backbone Bridge (PBB) network. In one embodiment, this is accomplished by assigning at least one communication device as Root node, a plurality of intermediate nodes and Leaf nodes, receiving, on at least one of the edge nodes (i.e. Root or leaf), the data packets from a client network interfacing with the PBB network, configuring all the communication edge devices to create a MAC-in-MAC data packet from the received data packet, configuring the Root node to add ISID R and leaf nodes to add ISID L in the I-tag of MAC-in-MAC data packets, determining a fault, if integrity check messages are not received in a predetermined time period between the Root node and the Leaf Nodes and switching the traffic by changing the designated backbone destination MAC address of the MAC-in-MAC data packets from the present root node MAC address to other available superior root node MAC address; wherein switching is performed when integrity failure is detected, or upon network operator request.
    • 本发明涉及提供商骨干网(PBB)网络中的多根点对多点服务的保护切换方法和系统。 在一个实施例中,这通过将至少一个通信设备分配为根节点,多个中间节点和叶节点,在至少一个边缘节点(即根或叶)上接收来自客户端的数据分组 与PBB网络进行网络接口,配置所有通信边缘设备,从接收到的数据包中创建MAC-in-MAC数据包,配置根节点添加ISID R和叶节点,以将ISID L添加到 MAC-in-MAC数据分组,确定故障,如果在根节点和叶节点之间的预定时间段内没有接收完整性检查消息,并且通过改变MAC-in-MAC数据分组的指定骨干目的地MAC地址来切换业务, MAC数据包从当前根节点MAC地址到其他可用的上级根节点MAC地址; 其中当检测到完整性故障时或者在网络运营商请求时执行切换。
    • 18. 发明授权
    • Method and system for bearer management
    • 承载管理方法和系统
    • US09155076B2
    • 2015-10-06
    • US13752891
    • 2013-01-29
    • Tejas Networks Limited
    • Kumar RohitR C SanilKumar M Vinod
    • H04W72/04H04W76/02H04W84/04
    • H04W72/0406H04W76/12H04W84/047
    • A method and system of bearer management signalling in a communication network comprising of transporting bearer resource request message of both the UE and RN via DeNB to managing entity of UE within EPC, as a signalling message over uplink channel referred to as ‘Union of Resource Request (UR Request)’ message. The bearer resource response message from one of the managing entity of UE or managing entities of UE and RN within EPC are transported as a signalling message to Evolved Packet Edge (EPE) via DeNB over the downlink channel referred to as ‘Intersection of Admission Response (IA Response)’. This manages bearer setup signalling as a single loop, by transportation of ‘UR Request’ signalling message and receiving one ‘IA Response’ signalling message over uplink and downlink channels respectively. EPE is a conglomeration of network nodes comprising of UEs, RNs and all other network nodes that communicate over EPC via DeNB.
    • 一种通信网络中的承载管理信令的方法和系统,包括:经由DeNB将承载资源请求消息转发到UE的管理实体,作为通过上行链路信道的信令消息,被称为资源请求联盟 (UR请求)'消息。 来自UE的管理实体之一或EPC内的UE和RN的管理实体的承载资源响应消息作为信令消息,经由DeNB经由DeNB经由被称为“接纳响应的交叉口”的下行链路信道被传送到演进分组边缘(EPE) IA回应)'。 这通过“UR请求”信令消息的传输和分别在上行链路和下行链路信道上接收一个“IA响应”信令消息来管理承载建立信令作为单个环路。 EPE是由UE,RN和通过EPC通过DeNB进行通信的所有其他网络节点组成的网络节点的集合。
    • 19. 发明授权
    • LTE wireless communication method for transceiving wireless device data
    • 用于收发无线设备数据的LTE无线通信方法
    • US09036519B2
    • 2015-05-19
    • US13684305
    • 2012-11-23
    • TEJAS NETWORKS LIMITED
    • Vinod Kumar Madaiah
    • H04B7/00H04W4/00H04W72/04H04B7/26H04W92/20
    • H04W72/0406H04B7/2643H04W92/20
    • The present invention relates to an LTE wireless communication method for transceiving wireless device data. In one embodiment, this is accomplished by a plurality of base transceiver station (BTS) linked by a network over which the base transceiver stations communicate, wherein the network includes at least one leaf BTS and at least two hub BTS, and wherein hub BTS include a first hub BTS and a second hub BTS, checking periodically for control signal by all the BTS, wherein the control signals are periodically exchanged by all the BTS through wireless channel, transparently, down-linking user traffic towards a user equipment append to the leaf BTS from the first hub BTS to the leaf BTS in the first communication area using a first frequency band and up-linking the user traffic from the user equipment append to the leaf BTS using wireless channel between second hub BTS and leaf BTS.
    • 本发明涉及用于收发无线设备数据的LTE无线通信方法。 在一个实施例中,这由通过基站收发器站所通信的网络链接的多个基站收发台(BTS)来实现,其中该网络包括至少一个叶BTS和至少两个集线器BTS,并且其中集线器BTS包括 第一集线器BTS和第二集线器BTS,周期性地检查所有BTS的控制信号,其中所有BTS通过无线信道周期性地交换控制信号,将用户业务下行链路向用户设备附加到叶片 BTS使用第一频带从第一集线器BTS到第一通信区域中的叶BTS,并且使用第二集线器BTS和叶BTS之间的无线信道将用户业务从用户设备附加到叶子BTS。