Swiss Energy
БесплатноНе проверенEnables AI assistants to access structured, location-based Swiss energy infrastructure data, including power plants, wind turbines, solar roof potential, and En
Описание
Enables AI assistants to access structured, location-based Swiss energy infrastructure data, including power plants, wind turbines, solar roof potential, and Energiestadt labels, via public APIs without authentication.
README
🇨🇭 Part of the Swiss Public Data MCP Portfolio
⚡ swiss-energy-mcp
License: MIT
Python 3.11+
MCP
Data Source
MCP server for Swiss energy data from the Federal Office of Energy (SFOE/BFE) via GeoAdmin REST API and opendata.swiss — no API key required.
Overview
swiss-energy-mcp gives AI assistants structured, location-based access to Switzerland's energy infrastructure. Built on open geodata from the Swiss Federal Office of Energy (SFOE/BFE) via the GeoAdmin REST API and the opendata.swiss catalogue — completely authentication-free.
The server is part of a growing portfolio of Swiss open data MCP servers. Think of it as the energy atlas counterpart to swiss-road-mobility-mcp: while the latter maps mobility, this server maps where Switzerland produces electricity, where solar potential exists, and which municipalities hold the "Energiestadt" label.
Anchor demo query: "Which power plants are within 20 km of the school in Wädenswil — and is the municipality an Energiestadt?"
Features
- 🔍 10 ready-to-use tools covering all major energy data layers from SFOE/BFE
- ⚡ Power plants — all types: photovoltaic, hydro, wind, biomass, nuclear, with optional category filter
- 💨 Wind turbines — detailed data incl. manufacturer, model, hub height, annual production
- 💧 Hydropower plants — type, status, turbine capacity, expected annual output
- ☀️ PV large installations — project name, capacity, annual/winter production, altitude
- 🌿 Biogas plants — plant name, output
- 🏙️ Energiestädte — municipalities with the Swiss "Energiestadt" label (score, year awarded, audits)
- 🏠 Solar roof potential — suitability category, area, orientation, and slope per roof segment
- 📊 Location energy profile — combines 5 layers into a single overview for any Swiss location
- 🗂️ SFOE dataset search — full-text search across SFOE publications on opendata.swiss
- ✅ Status check — verifies availability of both upstream APIs
- ☁️ Dual transport — stdio for Claude Desktop, Streamable HTTP for cloud deployment
Prerequisites
- Python 3.11+
- uv (recommended) or
pip
Installation
Claude Desktop (stdio transport)
Add to your claude_desktop_config.json:
{
"mcpServers": {
"swiss-energy-mcp": {
"command": "uvx",
"args": ["swiss-energy-mcp"]
}
}
}
Config file locations:
- macOS:
~/Library/Application Support/Claude/claude_desktop_config.json - Windows:
%APPDATA%\Claude\claude_desktop_config.json
Local development
git clone https://github.com/malkreide/swiss-energy-mcp.git
cd swiss-energy-mcp
uv sync
uv run swiss-energy-mcp
Cloud / HTTP transport (Streamable HTTP)
For use via claude.ai in the browser (e.g. on managed workstations without local software):
SWISS_ENERGY_TRANSPORT=http uvx swiss-energy-mcp
💡 "stdio for the developer laptop, HTTP for the browser."
Quickstart
Once connected in Claude Desktop, try:
What power plants are within 20 km of Bern?
Show me all wind turbines in the Jura region.
Is Zürich an Energiestadt? What's their score?
What is the solar potential of rooftops near lat=47.37, lon=8.54?
Give me a full energy profile for the region around Lucerne.
Find SFOE datasets about hydropower.
Available Tools
| Tool | Description |
|---|---|
energy_find_power_plants |
All electricity generation plants within a radius (optional category filter) |
energy_find_wind_turbines |
Wind turbines with manufacturer, model, hub height |
energy_find_hydro_plants |
Hydropower plants with capacity and expected output |
energy_find_pv_installations |
Large PV installations with annual/winter production |
energy_find_biogas_plants |
Biogas plants |
energy_find_energy_cities |
Municipalities with "Energiestadt" label |
energy_solar_potential |
Solar suitability of roof segments at a location |
energy_location_profile |
Combined energy profile (5 layers) for a location |
energy_search_bfe_datasets |
Full-text search over SFOE datasets on opendata.swiss |
energy_check_status |
Check availability of GeoAdmin and opendata.swiss APIs |
All tools accept WGS84 coordinates (lat/lon). Conversion to Swiss LV95 is handled internally.
Example Use Cases
| Query | Tool |
|---|---|
| "Power plants near Bern (20 km radius)?" | energy_find_power_plants |
| "Wind turbines in the Jura?" | energy_find_wind_turbines |
| "Is Zürich an Energiestadt?" | energy_find_energy_cities |
| "Solar potential of rooftops near lat=47.37, lon=8.54?" | energy_solar_potential |
| "Full energy profile for Lucerne region?" | energy_location_profile |
| "SFOE datasets on hydropower?" | energy_search_bfe_datasets |
→ More use cases by audience →
Data Sources
| Source | URL | Auth |
|---|---|---|
| GeoAdmin REST API (swisstopo) | api3.geo.admin.ch |
None |
| opendata.swiss CKAN API | opendata.swiss/api/3/action |
None |
BFE Layers used:
ch.bfe.elektrizitaetsproduktionsanlagench.bfe.windenergieanlagench.bfe.statistik-wasserkraftanlagench.bfe.photovoltaik-grossanlagench.bfe.biogasanlagench.bfe.energiestaedtech.bfe.solarenergie-eignung-daecher
Configuration
All variables use the SWISS_ENERGY_ prefix and are validated at startup.
| Environment variable | Default | Description |
|---|---|---|
SWISS_ENERGY_TRANSPORT |
stdio |
Transport mode: stdio or http |
SWISS_ENERGY_HOST |
127.0.0.1 |
Host for HTTP transport. Bind 0.0.0.0 only inside a container. |
SWISS_ENERGY_PORT |
8000 |
Port for HTTP transport |
SWISS_ENERGY_CORS_ORIGINS |
https://claude.ai |
Comma-separated allowed CORS origins (HTTP transport) |
SWISS_ENERGY_ALLOWED_HOSTS |
(empty) | Comma-separated inbound Host allow-list. Only needed for a non-loopback bind. |
SWISS_ENERGY_LOG_LEVEL |
INFO |
Log level: DEBUG / INFO / WARNING / ERROR |
SWISS_ENERGY_HTTP_TIMEOUT |
20 |
Upstream HTTP timeout in seconds |
Both list-valued variables also accept a JSON array — ["https://a.test"] —
in addition to the comma-separated form.
See .env.example for a template.
MCP Protocol Version
This server speaks two protocol eras over the same endpoint. The client's first request on a connection decides which one applies; a later claim from the other era is refused.
| Era | Revision | Who reaches it |
|---|---|---|
initialize handshake |
2024-11-05 … 2025-11-25 |
What today's clients speak. The server answers with the revision asked for, or with the 2025-11-25 ceiling when the request asks for something newer. |
| Per-request envelope | 2026-07-28 |
A request carrying the 2026-07-28 _meta envelope opens a modern connection. |
Both revisions are pinned in
tests/test_protocol_version.py and asserted
against the installed SDK, so a Dependabot bump of mcp cannot move either one
silently. The handshake ceiling is measured against a live initialize through
the assembled ASGI stack, not read off a constant name.
Note that the SDK's LATEST_PROTOCOL_VERSION is an alias for the modern
era, not for the handshake era — pinning against it alone would leave the era
that current clients actually negotiate free to drift.
Update policy. When the gate fails, do not edit the constant blindly: read
the spec changelog between the two revisions, verify the server still behaves,
then move the constant, this section, README.de.md and
CHANGELOG.md together.
MCP Primitives
The server uses all three MCP primitives:
- Tools — 10 read-only tools (see above). Every search tool returns an
EnergyResponseenvelope: structuredresultsplus a Markdownsummary, explicitsource/licenseattribution, and amatch_typefield. - Resource —
energy://layers, the static catalogue of BFE GeoAdmin layers. - Prompt —
energy_site_assessment, a guided location-analysis template.
Development Phase
The server is in Phase 1 (read-only). See docs/roadmap.md for the phased architecture and docs/security.md for the egress allow-list, SSRF protection and trifecta assessment.
Safety & Limits
| Aspect | Details |
|---|---|
| Access | Read-only (readOnlyHint: true) — the server cannot modify or delete any data |
| Personal data | No personal data — all sources are aggregated, public infrastructure data |
| Rate limits | Built-in per-query caps (max 50 search results, default 5 km radius) |
| Timeout | 20 seconds per API call |
| Authentication | No API keys required — both APIs are publicly accessible |
| Licenses | All data under open licenses via opendata.swiss (OGD) |
| Terms of Service | Subject to ToS of the respective data sources: GeoAdmin, opendata.swiss, SFOE/BFE |
Architecture
┌─────────────────┐ ┌───────────────────────────┐ ┌──────────────────────────┐
│ Claude / AI │────▶│ Swiss Energy MCP │────▶│ SFOE / BFE Open Data │
│ (MCP Host) │◀────│ (MCP Server) │◀────│ │
└─────────────────┘ │ │ │ GeoAdmin REST API │
│ 10 Tools │ │ (api3.geo.admin.ch) │
│ Stdio | HTTP │ │ │
│ │ │ opendata.swiss CKAN │
│ server.py (FastMCP) │ │ (opendata.swiss) │
│ api_client.py │ └──────────────────────────┘
│ LV95 conversion │
│ GeoAdmin queries │
└───────────────────────────┘
Infrastructure Components
| Component | Metaphor | Function |
|---|---|---|
api_client.py |
Switchboard | Handles HTTP requests, coordinate conversion, error handling |
| LV95 converter | Translator | Converts WGS84 (lat/lon) to Swiss coordinate system |
server.py |
Storefront | Exposes all 10 tools via FastMCP |
Project Structure
swiss-energy-mcp/
├── src/
│ └── swiss_energy_mcp/
│ ├── server.py # FastMCP setup, lifespan, entry point
│ ├── settings.py # Typed configuration (pydantic-settings)
│ ├── logging_config.py # Structured JSON logging to stderr
│ ├── api_client.py # HTTP client, egress guard, LV95 conversion
│ ├── models.py # Pydantic input/output models
│ ├── formatting.py # Markdown summary builders
│ ├── resources.py # Layer-catalogue resource + prompt
│ └── tools/ # One module per tool group
│ ├── installations.py # power, wind, hydro, PV, biogas
│ ├── places.py # solar, Energiestadt, location profile
│ └── catalog.py # dataset search, status
├── tests/
│ ├── test_unit.py # Pure-unit tests (coords, formatting, egress)
│ ├── test_tools.py # Tool tests with respx-mocked APIs
│ └── test_live.py # Live integration tests (marked `live`)
├── docs/ # roadmap.md, security.md
├── Dockerfile # Multi-stage build, non-root user
├── pyproject.toml
├── CHANGELOG.md
├── CONTRIBUTING.md # Contribution guide (English)
├── CONTRIBUTING.de.md # Contribution guide (German)
├── SECURITY.md # Security policy (English)
├── SECURITY.de.md # Security policy (German)
├── LICENSE
├── README.md # This file (English)
└── README.de.md # German version
Known Limitations
- GeoAdmin radius search: Maximum search radius depends on layer density; very large radii may return partial results
- Solar potential: Layer
ch.bfe.solarenergie-eignung-daechercovers building footprints — not all roof types are classified - Energiestadt: Only municipalities with active label are included; historical entries may be incomplete
- opendata.swiss CKAN: Full-text search covers metadata only, not document contents
Testing
# Unit tests (no API key required)
PYTHONPATH=src pytest tests/ -m "not live"
# Live integration tests (network access required)
PYTHONPATH=src pytest tests/ -m "live"
Changelog
See CHANGELOG.md
Contributing
See CONTRIBUTING.md (🇩🇪 Deutsch)
Security
See SECURITY.md (🇩🇪 Deutsch) for the security policy and posture summary, and docs/security.md for the full technical security model.
License
MIT License — see LICENSE
Author
Hayal Oezkan · malkreide
Credits & Related Projects
- Data: SFOE/BFE via GeoAdmin — Swiss Federal Office of Energy
- Data: opendata.swiss — Swiss Open Government Data portal
- Protocol: Model Context Protocol — Anthropic / Linux Foundation
- Related: swiss-road-mobility-mcp — MCP server for Swiss mobility data
- Related: zurich-opendata-mcp — MCP server for Zurich city open data
- Portfolio: Swiss Public Data MCP Portfolio
Installation
Run via uv's uvx — no clone or manual install needed. Add to your MCP client config (mcpServers for Claude Desktop, Cursor and Windsurf; use a top-level servers key for VS Code in .vscode/mcp.json):
{
"mcpServers": {
"swiss-energy-mcp": {
"command": "uvx",
"args": [
"swiss-energy-mcp"
]
}
}
}
Установка Swiss Energy
У этого сервера нет опубликованного пакета — он собирается из исходников. Открой репозиторий и следуй инструкции в README.
▸ github.com/malkreide/swiss-energy-mcpFAQ
Swiss Energy MCP бесплатный?
Да, Swiss Energy MCP бесплатный — установка в пару кликов через Unyly без оплаты.
Нужен ли API-ключ для Swiss Energy?
Нет, Swiss Energy работает без API-ключей и переменных окружения.
Swiss Energy — hosted или self-hosted?
Доступен hosted-вариант: Unyly запускает сервер в облаке, локальная установка не обязательна.
Как установить Swiss Energy в Claude Desktop, Claude Code или Cursor?
Открой Swiss Energy на unyly.org, выбери вкладку своего клиента (Claude Desktop, Claude Code, Cursor) и нажми Install — конфиг сгенерируется автоматически, без правки JSON.
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