Private Network Intelligence · Ports & Logistics

Private Network ROI Calculator

Model 5-year connectivity economics across terminal productivity, automation, safety, and logistics use cases.

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Private Network Intelligence · Ports & Logistics

What ROI Can Your Port Expect from a Private Network?

A vendor-neutral, methodology-transparent 5-year ROI model for deploying private LTE or 5G across port and terminal operations — covering crane productivity, yard efficiency, gate automation, safety, autonomous vehicles, reefer monitoring, and energy use cases. Grounded in TeckNexus port deployment evidence and Nokia, Ericsson, and terminal-operations benchmarks.

3 phases · ~10 minutes 10 port use cases 5-year financial model Safety & operational value separate Vendor-neutral · Free
Phase 1Port Profile
Phase 2Use Cases
Phase 3Calibrate
OutputROI Model
Important disclaimer: This calculator produces illustrative estimates based on published industry benchmarks and TeckNexus deployment analysis. Results are indicative only and should not be used as the sole basis for capital investment decisions. Actual returns depend on terminal type, existing TOS/IT maturity, implementation quality, vendor selection, and cargo volume. Full methodology and sources are shown in your results report.
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Phase 1 · Port Profile
Seven inputs define your baseline. Terminal type filters which use cases appear in Phase 2 — autonomous vehicles and reefer monitoring only appear for relevant terminal types. Annual TEU/revenue scales the financial model.
Input 1 of 7
What type of port or terminal operation is this?
This determines which use cases are available and which Nokia / Ericsson / TeckNexus benchmarks apply to your model.
Input 2 of 7
What is the annual throughput or revenue of this operation?
Select the measure most relevant to your terminal type. Container terminals should use TEU; bulk terminals use tonnes; others use annual revenue.
Input 3 of 7
How many crane or major equipment assets operate at this terminal?
Used to calibrate equipment productivity and predictive maintenance calculations. Count ship-to-shore cranes, RTGs, RMGs, stackers, reclaimers, or equivalent major assets.
Input 4 of 7
How many workers (including contractors) are regularly on site?
Total workforce used to calibrate worker safety, connected workforce, and communications value calculations.
Input 5 of 7
What is the current state of wireless connectivity across yard and quayside operations?
Shapes network cost baseline and which use cases have the fastest payback. This is the most common adoption barrier in ports — legacy Wi-Fi or fragmented connectivity.
Input 6 of 7
What is the current maturity of your Terminal Operating System (TOS) and operational data?
TOS data quality is the primary determinant of how fast AI and optimisation use cases can deliver value. This is the most common under-estimated constraint in port digital transformation programmes.
Input 7 of 7
What is the current automation maturity of this terminal?
Shapes benefit realisation timelines — highly manual terminals take longer to realise full automation ROI. Year 1–2 projections are adjusted accordingly.
Phase 2 · Select Use Cases
Select the use cases you want to model ROI for. Recommended use cases are the highest-evidence starting points for your terminal type. Container-terminal-only use cases are filtered for other terminal types.
Selected: 0 use cases · Select at least 2 to continue
Phase 3 · Assumption Calibration
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5-year financial model Use case breakdown Safety & operational value Network cost baseline Full methodology
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TeckNexus · Private Network ROI Calculator · Ports & Logistics

Your 5-Year Port Private Network ROI Model

5-Year Financial Model
Use Case Breakdown
Methodology & Sources
Ready to build the full port business case?
TeckNexus provides vendor-neutral port private network intelligence, deployment benchmarks, and use case guidance across container, bulk, RoRo, inland, and integrated port operations. Explore the Ports Intelligence Platform.

What ROI Can Your Port Expect from a Private Network? A Vendor-Neutral, Evidence-Grounded Answer

A seven-input terminal profile drives a 5-year ROI model covering crane productivity, yard efficiency, gate automation and autonomous vehicles — grounded in 46 qualified port deployments and Nokia, Ericsson and TeckNexus benchmarks, scaled to your actual terminal type and TOS maturity

Port private network ROI conversations frequently skip past a variable that turns out to matter more than most: Terminal Operating System data maturity, which the calculator identifies directly as the most commonly under-estimated constraint in port digital transformation programmes. TeckNexus has launched a Private Network ROI Calculator for Ports, a vendor-neutral, methodology-transparent 5-year financial model covering crane productivity, yard efficiency, gate automation, safety, autonomous vehicles, reefer monitoring and energy use cases — grounded in 46 qualified port deployments alongside Nokia, Ericsson and TeckNexus benchmarks.

Terminal type filters use cases and determines which benchmarks apply

The calculator’s first input — container terminal, bulk/breakbulk, RoRo/vehicle terminal, inland port/intermodal hub, or an integrated port authority spanning multiple terminal types — does structural filtering work: autonomous vehicle integration and reefer monitoring only appear for terminal types where they’re actually relevant, and the specific Nokia, Ericsson and TeckNexus benchmarks applied to the model shift depending on which terminal type is selected. A container terminal gets the full use case portfolio spanning ship-to-shore cranes, RTGs/RMGs, straddle carriers, AGVs and TOS integration; a bulk terminal’s model is built instead around conveyors, stackers, ship loaders and stockpile management — genuinely different operational profiles that a one-size-fits-all model would blur.

Scale, equipment count and workforce calibrate the financial model

Annual throughput or revenue — measured in TEU for container terminals, tonnes for bulk terminals, or revenue for others — scales the entire financial model, ranging from small regional or feeder terminals under 500K TEU to mega global hub terminals over 5M TEU and $1B+ revenue. Major equipment asset count — the number of ship-to-shore cranes, RTGs, RMGs, stackers or reclaimers, ranging from under 15 to over 75 major assets — calibrates equipment productivity and predictive maintenance calculations specifically, since a fleet of this scale changes the absolute value at stake in a maintenance or productivity improvement in a way a smaller terminal simply doesn’t experience. Workforce headcount, from under 400 to over 4,000 workers including contractors, calibrates worker safety, connected workforce, and communications value calculations independently of equipment scale.

Connectivity baseline is named as the most common adoption barrier

The calculator asks directly about current wireless connectivity across yard and quayside operations — from no broadband wireless at all (radio/VHF only) through fragmented Wi-Fi with known coverage gaps and reliability issues, full Wi-Fi with performance limitations for automation and video, existing private LTE evaluating expansion or a 5G upgrade, to private 5G already in active rollout. This isn’t a neutral baseline question: the calculator identifies fragmented or legacy Wi-Fi coverage specifically as the most common adoption barrier in ports, meaning a large share of terminals modelling ROI are starting from a connectivity position that’s actively constraining crane reliability and yard mobility today, not just a theoretical starting point.

TOS data maturity is the primary determinant of how fast value actually lands

Terminal Operating System maturity — no TOS at all with manual, paper-based planning; a basic TOS with limited data quality and API access; a moderate TOS with two-plus years of structured history and some API access; or a rich TOS with full event data, real-time APIs, vessel ETA integration and clean history ready for AI model training without significant preparation — is treated as the primary determinant of how fast AI and optimisation use cases can deliver value, not a secondary technical detail. A terminal with no TOS is modelling a fundamentally different, and slower, path to realised ROI than one with a rich TOS already generating clean, structured data, and the calculator’s benefit realisation timeline reflects that difference directly rather than assuming uniform speed to value across all data maturity levels.

Automation maturity adjusts how fast benefit realisation ramps

Current automation maturity — fully manual with all equipment operator-controlled, semi-automated with some remote crane operation or automated gate systems, or advanced automation with AGVs and autonomous vehicles already at production scale — shapes benefit realisation timelines directly, with year one and two projections adjusted accordingly. Highly manual terminals take longer to realise full automation ROI than terminals where the network is already established as a critical enabler of existing automation — a distinction the calculator builds into its financial model rather than treating all terminals as equally ready to capture modelled benefits immediately.

Ten use cases, each independently modelled

The full use case set spans crane and berth scheduling optimisation, yard planning and container stacking AI, vessel ETA prediction and port call optimisation, equipment health and predictive maintenance, gate automation and truck appointment systems, worker safety and connected workforce, reefer monitoring and cold chain management, port digital twin and operational simulation, autonomous vehicle integration, and port energy optimisation and ESG monitoring. Recommended use cases are flagged as the highest-evidence starting points specifically for the selected terminal type, giving organisations a defensible sequence rather than an undifferentiated list of ten options to choose from.

From model to defensible business case

The output is a 5-year financial model with full inputs, assumptions and methodology visible — grounded in 46 qualified port deployments plus published Nokia and Ericsson benchmarks, giving the model an evidence base that holds up to internal scrutiny in a way a vendor-supplied ROI claim generally can’t.

Terminal operators, port authorities and technology teams building the business case for a private network can run the free, vendor-neutral calculator directly.


Related Tool: AI Use Case Prioritiser (Ports & Logistics)
Once you’ve modelled the financial case, prioritise which of your recommended use cases to deploy first based on operational impact and deployment feasibility for your terminal type.

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