An enterprise organization with 8 branch locations is migrating its site-to-site connectivity from a legacy dedicated full-mesh physical WAN to a Dynamic Multipoint VPN (DMVPN) deployment featuring redundant dual central hubs over commercial internet links. Which of the following statements accurately describe the topological changes and operational characteristics resulting from this migration? (Select TWO.)
- The physical topology shifts to a dual-hub-and-spoke model reducing static WAN connections from 28 to 16, while the logical topology can dynamically establish direct spoke-to-spoke tunnels on demand.Cevap
- BThe underlying logical topology must maintain permanent, static point-to-point tunnels between every spoke pair to achieve direct spoke-to-spoke routing without traversing the central hubs.
- The virtual overlay operates logically as a non-broadcast multi-access (NBMA) network, requiring encapsulation protocols like Multipoint GRE to transport multicast routing protocol traffic across internet transports.Cevap
- DPhysical fault tolerance is compromised such that the total outage of one central hub will isolate all 8 branch offices from communicating with each other.
Cevap
The physical topology shifts to a dual-hub-and-spoke model reducing static WAN connections from 28 to 16 while supporting dynamic logical spoke-to-spoke tunnels, and the virtual overlay functions as an NBMA network requiring mGRE to carry multicast and broadcast traffic.
Migrating from a static full-mesh WAN to a dual-hub DMVPN architecture changes the physical connection count from 28 static links (calculated via for 8 nodes) down to 16 static hub links (). Furthermore, public internet transport functions logically as an NBMA network, requiring encapsulation like Multipoint GRE (mGRE) to handle broadcast and multicast traffic for dynamic routing protocols.
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Physical vs. Logical Topologies and DMVPN Overlay Mechanics