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Engineering & Systems

Inflasys combines inflatable structures, engineering and embedded systems to deliver solutions that are documented, measurable and field-ready. This page presents our 4 areas: Engineering Office & Data, Calculation Reports & Wind, Custom Developments, and Real-Time Multi-Sensor Monitoring.
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Inflasys engineering and systems: calculations, instrumentation, monitoring, developments

4 complementary areas, one approach: design, measure, decide

Our services are designed to reduce uncertainty and accelerate decision-making.

Depending on your objectives (technical validation, optimization, operations, custom development), we activate one or more areas to deliver clear outputs: calculation reports, measurement plans, supervision, interfaces and reports.

This approach is compatible with industrial, institutional and dual-use contexts.

4 complementary areas, one approach: design, measure, decide

1) Engineering Office – Engineering, acquisition & data

1) Engineering Office – Engineering, acquisition & data

Design, instrumentation, acquisition and analysis to validate assumptions, document real behavior and speed up iterations.

4 complementary areas, one approach: design, measure, decide

2) Calculation reports & wind resistance

2) Calculation reports & wind resistance

Wind, stability, anchoring, margins: dedicated calculation reports, complemented when needed by embedded instrumentation (tension, displacement, pressure).

4 complementary areas, one approach: design, measure, decide

3) Custom developments – Drones & interfaces

3) Custom developments – Drones & interfaces

Tailor-made solutions for ground and marine drones, operator interfaces and dedicated applications, adapted to field constraints.

4 complementary areas, one approach: design, measure, decide

4) Real-time monitoring & multi-sensor systems

4) Real-time monitoring & multi-sensor systems

Real-time multi-sensor supervision (pressure, temperature, GPS, inertial, tension, acoustics…) with indicators and alerts to support decision-making.

Why structure a project around measurement and evidence?

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On real systems (inflatable structures, embedded systems, mobile platforms), technical decisions must be justified: through calculations, testing, or observation during operations.

Our approach aims to deliver usable outputs: calculation reports, protocols, test reports, dashboards, histories, and operational recommendations.

By combining an engineering office, instrumentation, monitoring and software development, we reduce unnecessary iterations and secure key choices (architecture, anchoring, operating limits, maintenance).

Result: solutions that are more robust, better documented and easier to deploy over time.

Our technical methodology (from requirements to validation)

Engineering and validation methodology
1. Scoping
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Definition of objectives, field constraints, environment, expected level of evidence and deliverables.

Identification of critical variables: wind, pressure, temperature, loads, movements, availability, operational safety.

2. Design & sizing
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Production of calculation reports and architecture choices (sensors, acquisition, interfaces, power supply, communications).

Definition of thresholds, indicators and acceptance criteria.

3. Instrumentation & validation
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Deployment of sensors (tension, displacement, pressure, temperatures, inertial, acoustics, etc.) and timestamped acquisition.

Measurement analysis, actionable summary, recommendations and iterations when needed.

Capabilities mobilized depending on the need

An “engineering & systems” project requires combining calculations, instrumentation, software and field use to deliver a truly usable solution.

Our work combines <strong>structural engineering</strong> (assumptions, load cases, anchoring, margins), <strong>sensors & data acquisition</strong> (measurement plan, integration, traceability) and <strong>data analysis</strong> (indicators, anomalies, recommendations).

Depending on scope, we also deliver <strong>operator interfaces</strong> and <strong>dedicated applications</strong> for supervision, operations and decision support.

Timelines & scope: a modular approach

Scope depends on the level of evidence you need: calculations only, instrumented validation, or real-time monitoring with supervision.

A need can be covered by a calculation report (wind/stability/anchoring) or by a complete chain including instrumentation, acquisition, analysis and supervision.

Architectures are designed to be scalable: adding sensors, adjusting thresholds, new dashboards, integrating an interface or a business application.

We systematically define the scope and deliverables before execution, to ensure a clear trajectory (content, timelines, acceptance criteria).

Why choose Inflasys for these topics?

Because we approach these projects as complete systems: calculations + measurements + operations. The goal is to deliver a solution that works in the field and can be managed over time.

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Structured approach: scoping, deliverables, acceptance criteria
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Multi-sensor measurements and traceable acquisition
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Calculation reports: wind, stability, anchoring, margins
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Supervision & alerts for decision-making
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Custom developments: interfaces & dedicated applications
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Let’s discuss your needs

Do you have a project requiring an engineering office, a calculation report, instrumented validation, real-time monitoring, or a custom development? Contact us: we’ll define the scope and propose a realistic path forward.