Value Proposition
Amid the complexity of data, we build certainty for your business. We offer more than tools—we deliver an intelligent partnership.
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Our value proposition is delivered through core technology platforms that transform cutting‑edge technologies into stable, reliable services.
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About FundeAI
We believe digital‑intelligent technology should augment human expertise, not simply replace it. We recognize the industry’s urgent need for flexible, efficient, and secure digital‑intelligent solutions—and that it requires a partner whose focus is tangible, real‑world value. Learn more
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Core Philosophy
FundeAI is not an IT company — we are builders of intelligent infrastructure. We forge an unbreakable line of defense for trust in an open ecosystem. Our Dynamic Ontology enables data models to evolve alongside your business. We deliver end-to-end assurance, from data source to decision point.
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AI‑Powered Water Management

Integrating big data, AI, and digital twin technologies, we build a unified smart system for forecasting, warning, prediction, and preparedness, enabling intelligent sensing, precise scheduling, and scientific decision‑making across the entire water cycle from source to discharge.

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Solution Value

In response to the urgent needs of the water industry's digital transformation and the refined management of water resources, we deeply integrate cutting‑edge big data, artificial intelligence, and digital twin technologies into core water management scenarios. This solution serves not only as the intelligent sensing hub for water governance—gathering real‑time, basin‑wide data via an integrated space‑air‑ground monitoring network—but also as its decision‑making intelligent brain. Leveraging digital twin watershed models and AI algorithms, it enables smart "four‑P" capabilities (forecasting, warning, prediction, and preparedness) for flood/drought disasters and optimizes the entire process of water supply and drainage scheduling. This comprehensively enhances water security assurance, operational efficiency, and the scientific rigor of decision‑making.

Core Modules

Smart Water Management “4‑P” Platform (Prediction, Warning, Forecasting, Preparedness)

Centered on a digital twin watershed, it integrates multi‑source data (hydrological, meteorological, engineering status) to build a complete business loop of forecasting, warning, prediction, and preparedness—delivering intelligent decision support from short‑term disaster forecasting to long‑term water‑resource allocation.

Smart Water Supply Management System

Constructs an end‑to‑end intelligent monitoring and control system from water sources, treatment plants, distribution networks to end‑users. Integrates AI‑enabled technologies such as satellite leak detection and DMA (District Metering Area) zoning and metering to ensure supply security, reduce leakage, and improve operational efficiency.

Smart Drainage Management System

Establishes an integrated platform combining drainage network GIS, monitoring and early warning, emergency dispatch, and model simulation. Enables pipeline‑health assessment, flood‑risk simulation, and intelligent coordinated scheduling of treatment plants‑networks‑receiving waters, enhancing urban resilience.

Water Project Life‑Cycle Management Platform

Based on BIM+GIS technology, it enables digital control of projects (e.g., reservoirs, sluices, irrigation districts) from construction to operation, providing comprehensive online supervision and intelligent early warning for schedule, quality, and safety.

Overall Architecture

The solution adopts a layered, decoupled architecture of "Sensing – Transmission – Cognition – Application" to ensure system flexibility and reliability:

Intelligent Sensing Layer

Constructs an integrated "space‑air‑ground" monitoring network using satellite remote sensing, UAVs, IoT sensors (water level, flow, quality), video surveillance, etc., enabling automatic collection of comprehensive multi‑parameter data.

Data & Platform Layer

Based on a distributed big‑data platform, it aggregates, governs, stores, and analyzes massive multi‑source heterogeneous data. Establishes a digital‑twin foundation providing GIS, BIM model management, and spatial‑analysis services.

AI Middle Platform & Model Layer

Deploys a water‑industry‑specific AI algorithm library, including hydrological forecasting models, water‑quality pollution‑traceability models, image‑recognition models (e.g., for river‑lake issue identification), and more—serving as an intelligent engine for upper‑layer applications.

Smart Application Layer

Delivers SaaS‑based applications for different business scenarios such as twin‑watershed "4‑P" (prediction, warning, forecasting, preparedness), smart water supply, smart drainage, and project construction‑operation management. These are centrally presented and dispatched through a unified portal and visual command dashboard.

Key Advantages

Full‑Chain Scenario Coverage

The solution covers the complete chain of "water resources (rivers, lakes, reservoirs) – water services (supply & drainage) – water environment," delivering an integrated digital solution for water‑related operations and eliminating data silos.

Mature AI & Big‑Data Capabilities

Possesses a complete technology stack for ultra‑large‑scale data crawling, processing, mining, and industry‑specific large‑model development and application—with AI algorithms already validated in real‑world scenarios.

Extensive Practical Implementation Experience

Has delivered dozens of provincial, municipal, and county‑level benchmark projects, such as small‑reservoir safety monitoring in Sichuan Province, integrated water supply and drainage in Ziyang City, and smart drainage in Chengdu—demonstrating a mature and reliable solution.

Quantified Benefits

  1. Improved Decision‑Making Efficiency & Accuracy
    The “4‑P” system extends the average lead time for flood and drought forecasts by 20%–30%, multiplies the efficiency of dispatch‑scenario simulation, and supports more scientific and precise decision‑making.

  2. Enhanced Water‑Supply Security & Cost‑Effectiveness
    Average water‑distribution network leakage rates are reduced by 5%–15%, chemical and energy consumption at treatment plants is optimized, and revenue‑management efficiency is significantly improved.

  3. Strengthened Drainage & Flood‑Prevention Capability
    Enables early identification and warning of waterlogging risk points, improves emergency response speed by over 50%, and ensures the safe operation of urban lifelines.

  4. Realized Fine‑Grained Project Management
    Digitization rate of project‑management processes exceeds 90%, with intelligent on‑site safety‑risk identification, elevating project quality and safety standards.

Application Scenarios

  • Smart Water Benchmark Project
    Developed the Small‑Reservoir Safety Monitoring Capacity Enhancement Project for Sichuan Province. Through deploying sensing devices and a unified platform, it enables real‑time awareness and intelligent supervision of the operational status of thousands of reservoirs across the province, reinforcing the safety baseline.

  • Integrated Smart Water Practice
    Implemented the Ziyang Qingyuan Water Integrated Supply and Drainage Project. Based on IoT, big‑data, and GIS technologies, it built a city‑wide smart management system for water supply and drainage, achieving end‑to‑end intelligent control from water sources to discharge—setting an industry benchmark.

  • Large‑Scale Project Digital Management
    Delivered the Smart Engineering Construction Project for the Huangcheng Pumped‑Storage Hydropower Station. Using BIM technology as the carrier, it established a full‑life‑cycle project management platform, significantly improving project quality, safety, and cost‑control standards.

Contact us to build a smarter, safer, and more efficient water management system for sustainable water resources.

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