Business Challenge

Building the subscriber-management layer for a new municipal broadband service

A municipal gas and electric utility launched a fibre-to-the-home initiative to provide high-speed Internet services to residential and business customers across its service territory.

To support the new broadband offering, the utility required carrier-grade Broadband Network Gateway infrastructure capable of dynamic subscriber provisioning, per-subscriber quality-of-service enforcement, and high availability.

The existing core network was built on HP 5800 series routers with dual upstream ISP links, but it lacked the subscriber-management layer required to deliver differentiated broadband services.

The design needed to support residential subscribers using dynamic IP addressing and business subscribers using static IP addressing, multiple service tiers at 200 Mbps and 1 Gbps, non-stop service delivery without a single point of failure, and centralized QoS and security-policy enforcement.

Legacy Core Without Subscriber Intelligence

The existing network did not provide the subscriber-management capabilities needed for the new residential and business services.

Multiple Broadband Service Profiles

The architecture had to support 200 Mbps residential, 1 Gbps residential, and 1 Gbps business service profiles.

Carrier-Grade Availability

Redundancy was required across access, gateway, synchronization, core-uplink, and upstream connectivity.

Centralized Subscriber Policies

Per-subscriber QoS and security policies had to be enforced centrally at the BNG layer.

Solution Overview

Dual redundant BNGs with Enhanced Subscriber Management

The design introduced a dedicated subscriber edge while retaining the utility’s existing access and core-routing environment.

A pair of 7750 SR-7 Service Routers was deployed as redundant Broadband Network Gateways and integrated with 7360 ISAM FX fibre access nodes and the existing core-routing infrastructure.

Enhanced Subscriber Management enabled fully dynamic, DHCP-triggered subscriber provisioning within a Virtual Private Routed Network service context.

Key Design Elements

01

Dual-Homed Access Nodes

Each fibre access node connects to both BNG routers over 10 Gbps links, ensuring that no single link or node failure disrupts subscriber services.

02

Subscriber Router Redundancy Protocol

SRRP provides active/backup gateway redundancy for all IPoE subscribers. If the master BNG fails, the backup assumes the master role and takes ownership of subscriber default gateways.

03

Multi-Chassis Synchronization

MCS mirrors subscriber state; including IP and MAC mappings, QoS profiles, and DHCP lease data between the two BNGs in real time over a dedicated TCP connection.

04

Routed Central Office Model

Subscriber interfaces, group interfaces, and dynamically created Managed SAPs are triggered by DHCP Discover packets, eliminating manual per-subscriber SAP provisioning.

05

Internal DHCP Servers

Each BNG operates a local DHCP server for IP address assignment, synchronized through MCS and supporting normal, communications-interrupted, and partner-down operating modes.

Architecture Highlights

A redundant subscriber edge integrated with the existing access and core network

The architecture combines redundant BNG platforms, dual-homed fibre access, synchronized subscriber state, dynamic provisioning, routed uplinks, and diverse upstream connectivity.

BNG Platform
7750 SR-7 chassis with SF/CPM-5 cards and IMM line cards supporting up to 64K subscribers per module.
Access Layer
7360 ISAM FX with GPON, one VLAN per subscriber model, and DHCP Option 82 insertion.
Access Redundancy
Each fibre access node is dual-homed to both BNG routers through 10 Gbps links.
Residential Gateway
Routed-mode residential gateway with NAT, firewall, and DHCP proxy, using a single public IP address per home.
Uplink Routing
OSPF Area 0 between the BNGs and core routers, with OSPF Area 10 and MP-BGP between the two BNGs.
Inter-BNG Link
Dual 10 Gbps link aggregation carrying VPRN traffic over MPLS, MCS synchronization, and SRRP messaging.
Subscriber Resiliency
SRRP provides active/backup subscriber gateway redundancy while MCS synchronizes subscriber state between the BNGs.
Subscriber Management
Enhanced Subscriber Management with DHCP-triggered dynamic provisioning, subscriber interfaces, group interfaces, and Managed SAPs in a VPRN service context.
Upstream ISPs
Dual 10 Gbps fibre connections to two independent transit providers for path diversity.

Quality of Service

Centralized per-subscriber policy enforcement

QoS enforcement is centralized at the BNG layer, with three service profiles mapped to the utility’s residential and business offerings.

Downstream traffic toward subscribers uses per-subscriber shapers to guarantee contracted bandwidth.

MCS synchronizes QoS state across both BNGs so that policy enforcement continues during failover events.

200 Mbps

Residential — Dynamic IP

Best Effort forwarding class for the 200 Mbps residential service tier.

1 Gbps

Residential — Dynamic IP

Best Effort forwarding class for the 1 Gbps residential service tier.

1 Gbps

Business — Static IP

Low Priority 2 forwarding class for differentiated treatment of business subscriber traffic.

Per-subscriber shaping and synchronized QoS state allow contracted service policies to remain enforced across the redundant BNG pair.

Resiliency and Failover

Coordinated recovery across access, gateway, synchronization, and routing layers

The architecture was validated against multiple failure scenarios to support non-stop service delivery.

SRRP coordinates subscriber gateway ownership between the active and backup BNGs, while MCS maintains synchronized subscriber, DHCP, and QoS state.

OSPF convergence and the redundant inter-BNG and core links provide alternate forwarding paths when access or uplink failures occur.

BNG-to-Core Uplink Failure

Traffic reroutes through the inter-BNG link aggregation and uses the peer BNG’s core uplink.

Access Node-to-BNG Link Failure

SRRP triggers failover to the surviving BNG path connected to the dual-homed access node.

Inter-BNG Link Failure

Each BNG continues to operate independently through its direct connection to the core network.

Combined Access and Uplink Failure

Traffic converges on the fully connected BNG through automatic SRRP and OSPF reconvergence.

Business Outcomes

A scalable and resilient foundation for municipal broadband services

Redundant Broadband Infrastructure

The deployment established a fully redundant, carrier-grade platform for residential and business Internet services delivered over fibre.

Differentiated Subscriber Services

The BNG design supports distinct residential and business profiles, including dynamic and static IP addressing and differentiated service tiers.

Dynamic Provisioning

Enhanced Subscriber Management eliminated manual per-subscriber configuration through DHCP-triggered provisioning and dynamically created Managed SAPs.

Non-Stop Service Design

Dual-BNG redundancy, SRRP, MCS, dual-homed access, and routed failover mechanisms support continued service through multiple failure scenarios.

Subscriber and Network Isolation

The VPRN-based architecture provides separation between subscriber traffic and network operations.

Foundation for Service Expansion

The architecture establishes a scalable foundation for future service expansion, including voice and video offerings.

Conclusion

Carrier-grade subscriber management integrated into the municipal utility network

The deployment introduced a redundant Broadband Network Gateway layer built on 7750 SR-7 Service Routers, with Enhanced Subscriber Management, SRRP, MCS, dynamic DHCP-triggered provisioning, centralized QoS enforcement, and coordinated routing failover. The resulting architecture enables differentiated residential and business broadband services while maintaining subscriber-state synchronization, service resiliency, and separation between subscriber traffic and network operations.

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