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课程名称:CCNP服务提供商350-501(SPCOR)验证考试准备测试2025 概述:欢迎参加CCNP服务提供商350-501(SPCOR)验证考试准备测试2025。本课程旨在帮助学员为实施和操作Cisco服务提供商网络核心技术(SPCOR 350-501)的120分钟考试做好准备。本考试与CCNP和CCIE服务提供商认证相关,测试候选人在实现核心服务提供商网络技术方面的知识,包括核心架构、服务、网络、自动化、服务质量、安全和网络保障等内容。 本课程将涵盖以下主题: 1. 架构 - 服务提供商架构概述(核心架构、传输技术、移动性等) - Cisco网络软件架构(IOS、IOS XE、IOS XR) - 服务提供商虚拟化(NFV基础设施、VNF工作负载、容器等) - 服务质量(QoS)架构 - 控制平面和管理平面安全 - 数据平面安全实现 2. 网络 - IS-IS 和 OSPF 协议的实现 - BGP路径选择算法及其实现 - 路由策略语言及路由图的实现 - 高可用性实施 3. MPLS和段路由 - MPLS的实施及流量工程 - 段路由的描述与实现 4. 服务 - VPN服务(包括EVPN、L2VPN和L3VPN) - 组播服务及QoS服务的实施 5. 自动化和保障 - 使用可编程API进行网络自动化 - 网络服务编排(NSO)及数据建模语言(如YANG) - 配置管理工具(如Ansible和Terraform) 该课程为希望在Cisco服务提供商网络技术领域深入学习和获得认证的专业人士提供全面的知识和技能。
Welcome to Exam CCNP Service Provider 350-501 (SPCOR) Verified QA Tests 2025Implementing and Operating Cisco Service Provider Network Core Technologies (SPCOR 350-501) is a 120-minute exam associated with the CCNP and CCIE Service Provider Certifications. This exam tests a candidate's knowledge of implementing core service provider network technologies including core architecture, services, networking, automation, quality of services, security, and network assurance. The course, Implementing and Operating Cisco Service Provider Network Core Technologies, helps candidates to prepare for this exam.The following topics are general guidelines for the content likely to be included on the exam. However, other related topics may also appear on any specific delivery of the exam.Implementing and Operating Cisco Service Provider Network Core Technologies (350-501) Topics:- 1.0 Architecture1.1 Describe service provider architectures1.1.a Core architectures (Metro Ethernet, MPLS, unified MPLS, SR, SRTE, SRv6)1.1.b Transport technologies (xDSL, DWDM, DOCSIS, TDM, and xPON)1.1.c Mobility (packet core, RAN xhaul transport for 5G vRAN and ORAN transport)1.1.d Routed optical network1.2 Describe Cisco network software architecture1.2.a IOS1.2.b IOS XE1.2.c IOS XR1.3 Describe service provider virtualization1.3.a NFV infrastructure1.3.b VNF workloads1.3.c Containers1.3.d Application hosting1.4 Describe QoS architecture1.4.a MPLS QOS models (Pipe, Short Pipe, and Uniform)1.4.b MPLS TE QoS (MAM, RDM, CBTS, PBTS, and DS-TE)1.4.c DiffServ and IntServ QoS models1.4.d Trust boundaries between enterprise and SP environments1.4.e IPv6 flow label1.5 Configure and verify control plan security1.5.a Control plane protection techniques (LPTS and CoPP)1.5.b BGP-TTL security and protocol authentication1.5.c BGP prefix suppression1.5.d LDP security (authentication and label allocation filtering)1.5.e BGP sec1.5.f BGP flowspec1.6 Describe management plane security1.6.a Traceback1.6.b AAA and TACACS1.6.c RestAPI security1.6.d DDoS1.7 Implement data plane security1.7.a uRPF1.7.b ACLs1.7.c RTBH1.7.d MACsec2.0 Networking2.1 Implement IS-IS (IPv4 and IPv6)2.1.a Route advertisement2.1.b Area addressing2.1.c Single/Multitopology2.1.d Metrics2.2 Implement OSPF (v2 and v3)2.2.a Neighbor adjacency2.2.b Route advertisement2.2.c Multiarea (addressing and types)2.2.d Metrics2.3 Describe BGP path selection algorithm.2.4 Implement BGP (v4 and v6 for IBGP and EBGP)2.4.a Neighbors2.4.b Prefix advertisement2.4.c Address family2.4.d Path selection2.4.e Attributes2.4.f Redistribution2.4.g Additional Paths2.4.h PIC2.5 Implement routing policy language and route maps (BGP, OSPF, IS-IS)2.6 Troubleshoot routing protocols2.6.a Neighbor adjacency (BGP, OSPF, IS-IS)2.6.b Route advertisement (BGP, OSPF, IS-IS)2.7 Describe IPv6 transition (NAT44, NAT64, CGNAT, MAP-T and DS Lite)2.8 Implement high availability2.8.a NSF / graceful restart2.8.b NSR2.8.c BFD2.8.d Link aggregation3.0 MPLS and Segment Routing3.1 Implement MPLS3.1.a LDP sync3.1.b LDP session protection3.1.c LDP neighbors3.1.d Unified MPLS3.1.e MPLS OAM3.2 Describe traffic engineering3.2.a IS-IS and OSPF extensions3.2.b RSVP functionality3.2.c FRR3.3 Describe segment routing3.3.a Segment types3.3.b SR control plane (BGP, OSPF, IS-IS)3.3.c Segment routing traffic engineering3.3.d TI-LFa3.3.e PCE-PCC architectures3.3.f Flexible algorithm3.3.g SRv6 (locator, micro-segment, encapsulation, interworking gateway)4.0 Services4.1 Describe VPN services4.1.a EVPN4.1.b Inter-AS VPN4.1.c CSC4.1.d mVPN4.2 Configure L2VPN and Carrier Ethernet4.2.a Ethernet services (E-Line, E-Tree, E-Access, E-LAN)4.2.b IEEE 802.1ad, IEEE 802.1ah, and ITU G.80324.2.c Ethernet OAM4.2.d VLAN tag manipulation4.3 Configure L3VPN4.3.a Intra-AS VPN4.3.b Shared services (extranet and Internet)4.4 Implement multicast services4.4.a PIM (PIM-SM, PIM-SSM, and PIM-BIDIR, PIMv6)4.4.b IGMP v1/v2/v3 and MLD4.5 Implement QoS services4.5.a Classification and marking4.5.b Congestion avoidance, traffic policing, and shaping5.0 Automation and Assurance5.1 Describe the programmable APIs used to include Cisco devices in network automation5.2 Interpret an external script to configure a Cisco device using a REST API5.3 Describe the role of Network Services Orchestration (NSO)5.4 Describe the high-level principles and benefits of a data modeling language, such as YANG5.5 Describe configuration management tools, such as Ansible and Terraform5.6 Describe Secure ZTP5.7 Configure dial-in/out, TCP, TLS and mTLS certificates using gRPC and gNMI5.8 Configure and verify NetFlow/IPFIX5.9 Configure and verify NETCONF and RESTCONF5.10 Configure and verify SNMP (v2c/v3)