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GovTech / GIS

WaterCadastre

Integrated Water Resources and GIS Management Platform

01 / Architecture case studyDomain / AI / 2D+3D GISHigh-level public scope
02

The domain

Water-resource and cadastral information connected through AI-assisted GIS.

WaterCadastre combines domain workflows with Mirob AI, an assistant that connects natural-language questions to verified results and synchronized 2D/3D geospatial views.

Domain contextWaterCadastre

A water-resource and cadastral platform combining domain workflows with an AI assistant and synchronized 2D/3D geospatial views.

  1. 01Water-resource information
  2. 02Cadastral information
  3. 03AI-assisted 2D / 3D GIS
03

Architecture responsibility

Architecture responsibility across backend, domain, data, and GIS concerns.

Sherzod's approved scope combines Team Lead responsibility with Backend and Solution Architecture, requirements-to-architecture work, domain decomposition, and technical coordination.

RoleTeam Lead

Backend and Solution Architecture

  1. 01

    Architecture scope 01

    Backend and solution architecture

    Backend and Solution Architecture is the principal responsibility named in the approved role record.
  2. 02

    Architecture scope 02

    Requirements to architecture

    The approved leadership scope includes translating requirements into architecture-level engineering work.
  3. 03

    Architecture scope 03

    Domain decomposition

    Domain decomposition is an approved high-level system architecture theme for the project.
  4. 04

    Architecture scope 04

    Data-intensive backend architecture

    The public architecture view includes data-intensive backend concerns without exposing data scope or topology.
  5. 05

    Architecture scope 05

    AI-assisted GIS context

    The public architecture view connects a guarded AI query flow to verified results and 2D/3D geospatial object focus.
04

Domain decomposition

Architecture approach

An editorial lens for the approved engineering principles, not a literal module map or historical sequence.

  1. 01Domain context
  2. 02Domain decomposition
  3. 03Natural-language query
  4. 04Guarded AI orchestration
  5. 05Verified answer / 2D-3D focus
05

AI and 3D GIS

A guarded AI flow that remains connected to the source interface.

Mirob AI turns natural-language questions into constrained query plans, grounds responses in verified results, and can focus the corresponding object in synchronized 2D and 3D GIS views.

  1. 01

    AI / GIS concern 01

    Domain-specific assistant

    Mirob AI provides a natural-language entry point to WaterCadastre information and geospatial workflows.
  2. 02

    AI / GIS concern 02

    Guarded query orchestration

    Deterministic routing and LLM planning produce an allowlisted structured query rather than treating the model as a data source.
  3. 03

    AI / GIS concern 03

    Grounded response contract

    A verified result can drive the answer, a declarative chart, and a deep-link back to the relevant table or map context.
  4. 04

    AI / GIS concern 04

    Leaflet 2D / ArcGIS SceneView 3D

    The synchronized views highlight AI-found or selected point, line, and polygon geometry, with the 3D camera fitted to the focused object set.
06

System engineering model

Engineering scope model

A conceptual view of the approved engineering scope, not a claim of exact chronology or production topology.

  1. 01Requirements
  2. 02Domain decomposition
  3. 03Backend and solution architecture
  4. 04Guarded AI orchestration
  5. 05Grounded answer and navigation
  6. 062D / 3D object focus
07

Technical leadership

Technical leadership expressed through concrete engineering activities.

The approved leadership scope is deliberately limited to technical leadership, requirements-to-architecture work, task coordination, and code review.

  1. 01

    Leadership area 01

    Technical leadership

    Team Lead responsibility frames the public leadership view of the project.
  2. 02

    Leadership area 02

    Requirements to architecture

    Requirements were translated into architecture-level engineering direction within the approved scope.
  3. 03

    Leadership area 03

    Task coordination

    Task coordination is part of the approved technical leadership summary.
  4. 04

    Leadership area 04

    Code review

    Code review is included as a concrete public-safe leadership activity.
08

Engineering takeaways

AI and geospatial depth without operational disclosure.

  1. 01

    Architecture across a multi-concern domain

    The approved project purpose combines water-resource, cadastral, and geospatial information concerns.

  2. 02

    Guarded AI orchestration

    Deterministic routing and allowlisted LLM query planning keep the model in an orchestration role.

  3. 03

    Grounded, navigable results

    Verified results connect the response to charts and the relevant source table or map view.

  4. 04

    2D / 3D geometry focus

    AI-found and manually selected geometries remain visible across synchronized 2D and 3D map contexts.

  5. 05

    Technical leadership

    Requirements-to-architecture work, task coordination, and code review make the leadership contribution concrete.

09

Project context

A deliberately bounded view of architecture, AI, and 3D GIS.

The public portfolio scope covers approved project identity, role, technology subsets, guarded AI orchestration, grounded responses, synchronized 2D/3D object focus, and technical leadership.

Project
WaterCadastre
Category
GovTech / GIS
Role
Team Lead / Backend and Solution Architecture
Public portfolio scopeHigh-level engineering view
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