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Brownfield fiber expansion and PON capacity upgrade

A municipal and regional ISP expanding an established GPON access network across Wisconsin and the western Great Lakes region.

Brownfield fiber expansion and PON capacity upgrade
Input received
OLT chassis/card/port exports and PON utilization, GIS cable/structure/terminal data and splice diagrams, cabinet audit sheets and OTDR/power records, and the client's proposed electronics and unit costs.
Delivered
An existing-condition reconciliation workbook, a capacity model by OLT port/splitter/cabinet/feeder, a GPON/XGS-PON overlay schematic and optical-budget workbook, incremental LLD construction sheets, and a phased migration matrix.
Timeline
25 business days after the baseline record freeze and receipt of the approved electronics matrix.

Brownfield planning starts by reconciling the live logical path before any new capacity is assigned. The modeled upgrade adds capacity for 1,472 premises, relieves 42 exhausted feeder fibers and reduces average splitter utilization from 87% to 68%; reuse and reassignment avoid 7.4 miles of new feeder construction, representing approximately $780,000 in the client-style planning model.

Additional premises
1,472
Fibers relieved
42
Splitter utilization
87% → 68%
Modeled avoidance
$780k

The engineering problem

The network has grown through multiple construction programs, creating inconsistent cabinet names, partially exhausted feeder cables and splitter assignments that do not always match GIS or operations exports. Several growth areas cannot be served by simply adding terminals because upstream splitter ports or assigned fibers are unavailable. The upgrade model links OLT ports, splitter modules, feeder fibers, closures, distribution cables and terminals before any new capacity is assigned or a migration step is written, and every mismatch between operations exports, GIS and splice records is logged rather than silently resolved in favor of one source.

Design parameters and first-principles checks

Existing footprint6,420 premises across 12 cabinets; 6,403 assigned usable ports in the baseline model
Growth1,472 incremental premise assignments
Before capacity7,360 usable subscriber ports; 6,403 assigned; 87.0% utilized
After capacity11,584 usable ports; 7,875 assigned; 68.0% utilized
Passive relief132 incremental 1:32-equivalent splitter modules across 12 cabinets
Feeder relief42 exhausted/blocked feeder fibers reassigned or relieved
Construction avoided7.4 miles of new feeder; $20/ft representative planning rate; approximately $780k
Migration controlCutover groups limited to 64 subscribers per maintenance window

Key design decisions

Existing cable is reused only where the fiber path is traceable and the route, closure, connector and optical values meet the approved design basis. XGS-PON capacity is added selectively to growth areas while stable GPON service is retained where coexistence and hardware compatibility permit. Each cutover group is limited to 64 subscribers and includes test criteria, affected ports, rollback references and post-window record ownership.

Cabinet-cluster capacity model

ClusterCabinetsBefore assigned / usableGrowthAfter assigned / usableFibers relievedFeeder avoided
North31,612 / 1,8403821,994 / 2,896111.9 mi
East31,408 / 1,6003161,724 / 2,56091.6 mi
Central31,835 / 2,0804382,273 / 3,200132.2 mi
West31,548 / 1,8403361,884 / 2,92891.7 mi
TOTAL126,403 / 7,3601,4727,875 / 11,584427.4 mi

Sample XGS-PON optical path

Loss elementQuantity / valueAllowanceExtended loss
Fiber14.8 km0.35 dB/km conservative planning value5.18 dB
Fusion splices60.10 dB each0.60 dB
1:32 splitter117.00 dB17.00 dB
Connectors40.30 dB each1.20 dB
Coexistence element11.00 dB1.00 dB
TOTALN1 budget 29.00 dB24.98 dB loss / 4.02 dB margin

QA steps and evidence

QA gateAcceptance testEvidence / result
Baseline traceOLT-to-terminal trace works forward and backwardControlled discrepancy register; no multiply assigned fibers
CapacityBefore/after ports and assignments reconcile by cabinet6,403/7,360 before; 7,875/11,584 after
OpticalEvery relief path checked with approved loss librarySample worst path 24.98 dB; 4.02 dB N1 margin
CompatibilityOLT optics, coexistence, splitter and ONU path match matrixHardware/wavelength checklist by cutover group
Migration≤64 subscribers; prerequisites, test and rollback presentApproved work-package gate
RecordsGIS, splice, fiber, capacity and NOC references agreePost-cutover record checklist and owner

Revision record

RevisionTriggerChange madeControlled outcome
R0Baseline reconciliationResolved naming and fiber-assignment mismatches; held 63 items for client evidenceControlled existing-condition model established
R1Capacity option reviewSelected cabinet relief and fiber reuse over new-feeder option42 feeder fibers relieved; 7.4 mi new feeder avoided
R2Operations migration reviewReduced maximum cutover group from 96 to 64 and added rollback/test fieldsOperator-ready phased migration matrix

Result and calculation trail

The modeled upgrade adds capacity for 1,472 premises, relieves 42 exhausted feeder fibers and reduces average splitter utilization from 87% to 68%. Reuse and reassignment avoid 7.4 miles of new feeder construction, representing approximately $780,000 in the client-style planning model; migration packages are limited to 64 subscribers per step.

Before utilization: 6,403 assigned ÷ 7,360 usable = 87.0%. After utilization: 7,875 assigned ÷ 11,584 usable = 68.0%. Growth absorbed: 7,875 − 6,403 = 1,472. Feeder avoidance: 7.4 mi × 5,280 ft/mi × $20/ft = $781,440, reported as approximately $780,000.

Pathworks reconciled twelve cabinet areas, modeled GPON-to-XGS-PON relief and prepared phased migration packages for 1,472 incremental premises, relieving 42 feeder fibers and reusing existing plant to avoid 7.4 miles of modeled new-feeder construction.

Brownfield capacity before and after relief, by usable and assigned ports
Brownfield capacity before and after: the relief model increases usable capacity from 7,360 to 11,584 ports while adding 1,472 forecast assignments and reducing utilization from 87 to 68 percent.
GPON-to-XGS-PON relief architecture diagram
GPON-to-XGS-PON relief architecture: existing GPON and new XGS-PON paths are coordinated through controlled patching, cabinet relief and terminal assignments.
Sample XGS-PON N1 optical budget chart
Sample XGS-PON N1 optical budget: the longest representative relief path has 24.98 dB of modeled loss, leaving 4.02 dB against the 29 dB N1 budget.
Controlled migration sequence from build to cutover
Controlled migration sequence: the sequence keeps passive build, testing, cutover, rollback and record updates inside one controlled work package.

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