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Use case 050

Stormwater Pumping Stations

A deployment concept for local governments, drainage authorities, pump vendors and emergency management teams.

Proposed deployment · Compatibility assessment required
Water and Environmental Infrastructure

Why this environment matters

The platform for stormwater pumping stations removes runoff from low-lying areas during heavy rainfall and flood events. The operational risk is specific: remote compromise or disabled pumps can rapidly turn a cyber incident into property damage and road closures. NØNOS could provide a smaller, memory-safe base for dividing that workflow into signed, least-privilege components and restoring it from a known state after each sensitive session or incident.

The security challenge

The threat model should assume that one component will eventually fail or be exploited. In this case, remote compromise or disabled pumps can rapidly turn a cyber incident into property damage and road closures. Water and environmental systems mix remote field devices, long asset lifecycles and processes whose failure can affect public health, property and ecosystems. The aim is to prevent that single failure from automatically gaining the keys, devices, records and network paths of the whole platform.

How the capsule model could help

A candidate NØNOS architecture would keep level sensing, pump sequencing, remote telemetry and maintenance access separate, allowing emergency operation from a known-good state. The design would prioritise isolated OT applications and signed engineering tools, supported by restricted actuator capabilities and authenticated sensor paths. Each capsule would carry a declared policy for files, networks, devices and secrets, and unknown or altered software would not receive the same authority as an approved component.

Separate address spaces and capability checks can limit cross-process reach. They cannot stop harmful use of legitimate permissions, prove AI decisions correct or substitute for domain-specific safety controls.

Deployment requirements

Implementation must preserve local manual control, safe fallback states, independent process protection and the utility's tested emergency procedures. The operating system is one control layer, not a substitute for process safety.

Current public-beta limitations, hardware support and application availability must be assessed before any pilot. Neither this use case nor an industry source establishes NONOS certification or a current customer deployment.

Who could buy or integrate it?

  • Municipal drainage authorities fund pumping-station controls and resilient operations.
  • Pump-system OEMs integrate local controllers and remote monitoring packages.
  • Public-works engineering contractors deliver upgrades; drainage operators supervise pumps during storms.

Industry examples: Xylem, Sewerage & Water Board of New Orleans. Organisations shown illustrate the industry. No NONOS customer, partner or endorsement relationship is implied.

Market opportunity

Market benchmarks and device scenarios.

Published industry benchmark
US$4.43 billion

Water automation and instrumentation

Global · 2025 · annual market estimate

Automation and instrumentation for water and wastewater; includes physical instruments and control systems beyond workstation software.

Modelled global devices
50K–750K

Candidate OS endpoints

Hypothetical planning range · 2025

Low confidence: planning assumptions. Hardware compatibility, procurement and adoption have not been validated.

Illustrative annual licensing
$1M–$90M

USD / year at full model coverage

Device scenario × assumed US$20–$120 per device / year.

Not a revenue forecast, announced price or measured serviceable market.

Device calculation

Hypothetical global planning range, 2025 scenario: assume 50,000–250,000 stormwater pumping sites selected for remote control × 1–3 candidate OS endpoints per site/asset = 50,000–750,000 endpoints. Counting unit: pump-station controllers; individual motors excluded. Site and asset counts, and devices per site, are planning assumptions. The installed base has not been measured. Coverage is limited to the defined equipped subset; includes all candidate endpoints within that assumed subset. Hardware eligibility, certification, adoption and achievable NØNOS share are unverified; overlaps other cases.

Water Automation and Instrumentation Market – Size, Companies & Trends ↗

Market context only; separate from device and site population estimates. Original monetary-market scope and geography are preserved in benchmark. This source does not establish the assumed worldwide site count or endpoint density.

How to interpret the figures

Adjacent or broader commercial market benchmark; not the NØNOS OS market, licensable-device count or revenue forecast.

Modelled candidate endpoints multiplied by an assumed annual USD price per endpoint. Pricing is a planning assumption, not a vendor quote. This illustrates the full scenario range, not revenue or total addressable market. It excludes adoption timing, procurement, certification, support costs, channel economics and achievable market share. Use cases can overlap, so their totals do not represent unique devices.

Research from 2026. Publisher estimates have not been independently audited.

Read the full methodology

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