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    • 2. 发明申请
    • HARDWARE-TRUSTED NETWORK BEARERS IN NETWORK FUNCTION VIRTUALIZATION INFRASTRUCTURE (NFVI) SERVERS THAT EXECUTE VIRTUAL NETWORK FUNCTIONS (VNFS) UNDER MANAGEMENT AND ORCHESTRATION (MANO) CONTROL
    • 网络功能虚拟化基础设施(NFVI)服务器中执行虚拟网络功能(VNFS)的硬件可信网络承载在管理和协调(MANO)控制下
    • WO2017136406A1
    • 2017-08-10
    • PCT/US2017/015983
    • 2017-02-01
    • SPRINT COMMUNICATIONS COMPANY L.P.
    • MARQUARDT, Ronald R.RAJAGOPAL, ArunPACZKOWSKI, Lyle Walter
    • H04L29/08H04L12/24H04L12/715
    • H04W12/06H04L41/28H04L45/64H04L67/14H04W72/02H04W88/18H04W92/02
    • Network Function Virtualization Infrastructure (NFVI) servers (121-129) execute Virtual Network Functions (VNFs) (113-119) to exchange user data under the control of a Management and Orchestration (MANO) system (130, 361). A Hardware-Trust (HT) server (140, 362) maintains hardware trust in some of the NFVI servers (121-129). The HT server (140, 362) exchanges NFVI/VNF execution data with the MANO system (130, 361) to associate executing VNFs (113-119) with hardware-trusted NFVI servers (121-129). A control set of the VNFs (113-119, 351-354) receives a request for a hardware-trusted communication and responsively selects a network bearer supported by data VNFs. The HT server (140, 362) determines if the data VNFs (352, 354) are hardware-trusted VNFs (354), and if so, the HT server (140, 362) indicates to the control VNFs (351, 353) that the hardware-trusted communication may proceed. The control VNFs (351, 353) direct the data VNFs (352, 354) to transfer the hardware-trusted data communication over the selected network bearer.
    • 网络功能虚拟化基础设施(NFVI)服务器(121-129)执行虚拟网络功能(VNF)(113-119),以在管理和编配(MANO)系统的控制下交换用户数据( 130,361)。 硬件信任(HT)服务器(140,362)维护一些NFVI服务器(121-129)中的硬件信任。 HT服务器(140,362)与MANO系统(130,361)交换NFVI / VNF执行数据以将执行的VNF(113​​-119)与硬件可信的NFVI服务器(121-129)相关联。 VNF(113​​-119,351-354)的控制集合接收对硬件可信通信的请求,并且响应地选择由数据VNF支持的网络承载。 HT服务器(140,362)确定数据VNF(352,354)是否是硬件可信VNF(354),并且如果是,则HT服务器(140,362)向控制VNF(351,353)指示: 硬件可信的通信可以继续。 控制VNF(351,353)指示数据VNF(352,354)通过所选网络载体传送硬件可信数据通信。
    • 3. 发明申请
    • COMMUNICATION PACKET HEADER DATA COMPRESSION
    • 通信分组头部数据压缩
    • WO2017160635A1
    • 2017-09-21
    • PCT/US2017/021813
    • 2017-03-10
    • SPRINT COMMUNICATIONS COMPANY L.P.
    • BERTZ, Lyle T.MARQUARDT, Ronald R.GUIRGUIS, Ihab AminMANNING, Serge M.BARTLETT, Roger Danforth
    • H04L29/06
    • H04L69/04H04L47/36H04L69/22
    • A data communication system (100) compresses packet headers. A transmitter (101) executes state machines (111-114) to process a data packet and determine if a transmitter state machine (111-114) is transferring Interdependent Machine Output (IMO) data. The transmitter (101) generates an IMO vector that indicates if any IMO data is in the data packet. If IMO is present, then the transmitter (101) augments the IMO vector to indicate the individual transmitter state machines (111-114) that transferred the IMO data. The transmitter (101) transfers the data packet with the IMO vector to a receiver (102). The receiver (102) processes the IMO vector to determine if any IMO data is transferred in the data packet. If IMO data is transferred, then the receiver (102) processes the augmented IMO vector to transfer the IMO data to individual receiver state machine (121-124) that correspond to the transmitter state machines (111-114) that transferred the IMO data.
    • 数据通信系统(100)压缩分组报头。 发送器(101)执行状态机(111-114)以处理数据分组并确定发送器状态机(111-114)是否正在传送相互依赖的机器输出(IMO)数据。 发射机(101)生成IMO向量,该向量指示是否有任何IMO数据在数据分组中。 如果存在IMO,则发射器(101)增强IMO矢量以指示传送IMO数据的各个发射器状态机(111-114)。 发射机(101)将具有IMO向量的数据分组传送到接收机(102)。 接收器(102)处理IMO向量以确定是否有任何IMO数据在数据分组中传输。 如果IMO数据被传送,则接收器(102)处理扩充IMO矢量以将IMO数据传送到与传送IMO数据的发送器状态机(111-114)对应的单独接收器状态机(121-124)。
    • 6. 发明申请
    • LONG TERM EVOLUTION (LTE) COMMUNICATIONS OVER TRUSTED HARDWARE
    • 长期演进(LTE)通过硬币进行通信
    • WO2016130447A1
    • 2016-08-18
    • PCT/US2016/016924
    • 2016-02-08
    • SPRINT COMMUNICATIONS COMPANY L.P.
    • PACZKOWSKI, Lyle WalterRAJAGOPAL, ArunMARQUARDT, Ronald R.
    • H04W36/00H04W12/06H04W12/00H04W12/08H04W12/02
    • H04W36/0022H04L67/14H04W12/00H04W12/02H04W12/06H04W12/08H04W36/0038H04W76/10H04W88/16
    • A Long Term Evolution (LTE) communication network (100) transfers data communications for User Equipment (UE) (101). An LTE gateway system (112-113) exchanges hardware trust data with a server system (140) to maintain hardware trust for the LTE gateway system (112-113). An LTE access node (110) processes a Radio Resource Control (RRC) message that contains a trusted bearer requirement for the UE (101) to generate an SI Application Protocol (S1-AP) initial UE message that contains the trusted bearer requirement for the UE (101). An LTE management node (111) processes the S1-AP initial UE message to generate a General Packet Radio Service Transfer Protocol (GTP) create session message that contains the trusted bearer requirement for the UE (101). The LTE gateway system (112-113) exchanges user data for the UE (101) between the LTE access node (110) and a communication node (130-131) responsive to the GTP create session message.
    • 长期演进(LTE)通信网络(100)传送用于用户设备(UE)(101)的数据通信。 LTE网关系统(112-113)与服务器系统(140)交换硬件信任数据,以维持LTE网关系统(112-113)的硬件信任。 LTE接入节点(110)处理无线电资源控制(RRC)消息,该无线电资源控制(RRC)消息包含用于UE(101)的可信承​​载要求以产生包含对于所述信任承载要求的SI应用协议(S1-AP)初始UE消息 UE(101)。 LTE管理节点(111)处理S1-AP初始UE消息以生成包含对UE(101)的可信承​​载要求的通用分组无线业务传输协议(GTP)创建会话消息。 LTE网关系统(112-113)响应于GTP创建会话消息交换LTE接入节点(110)和通信节点(130-131)之间的UE(101)的用户数据。
    • 8. 发明申请
    • COMPUTER SYSTEM HARDWARE VALIDATION FOR VIRTUAL COMMUNICATION NETWORK ELEMENTS
    • 虚拟通信网络元件的计算机系统硬件验证
    • WO2016118298A1
    • 2016-07-28
    • PCT/US2015/068022
    • 2015-12-30
    • SPRINT COMMUNICATIONS COMPANY L.P.
    • PACZKOWSKI, Lyle WalterRAJAGOPAL, ArunMARQUARDT, Ronald R.
    • H04L9/32H04L29/06G06F9/455H04W12/00
    • H04W12/08G06F9/45533G06F9/45558G06F2009/45595H04L9/32H04L9/3226H04L63/10H04L63/20H04W8/26
    • A data communication network has computer systems (111-114) that process virtual network elements (121-132) during network processing time cycles to forward data communication packets for user data services. The computer systems (111-114) process hardware-embedded codes during the network processing time cycles to identify the computer systems (111-114). A security server (141-144) validates the computer system identities for the virtual network elements (121-132). A database system maintains a distributed data structure that individually associates the data services, the computer systems (111-114), the virtual network elements (121-132), and the computer system validities. The security server (141-144) and the database system could be discrete systems or they may be at least partially integrated within the computer systems (111-114) where they would typically execute during different processing time cycles from the virtual network elements (121-132).
    • 数据通信网络具有在网络处理时间周期期间处理虚拟网络元件(121-132)的计算机系统(111-114),以转发用于用户数据服务的数据通信分组。 计算机系统(111-114)在网络处理时间周期期间处理硬件嵌入代码以识别计算机系统(111-114)。 安全服务器(141-144)验证虚拟网元(121-132)的计算机系统标识。 数据库系统维护单独地关联数据服务,计算机系统(111-114),虚拟网络元件(121-132)和计算机系统有效性的分布式数据结构。 安全服务器(141-144)和数据库系统可以是离散系统,或者它们可以至少部分地集成在计算机系统(111-114)内,在计算机系统(111-114)中它们通常将在来自虚拟网络元件(121)的不同处理时间周期内执行 -132)。