Wind Window Analysis

Wind Window Analysis MCP Connector for Claude

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Analyze wind window geometry, power zones, and optimal kite positioning.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides precise kiteboarding positioning analysis by calculating wind window geometry. It allows AI agents to determine the exact size of the power zone using get_power_zone_details, identify neutral zone boundaries with calculate_neutral_zone_boundaries, and find the peak pull position via get_max_power_angle. Additionally, users can predict the impact of weather changes using simulate_wind_shift to maintain optimal kite placement during wind shifts.

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4 tools expose this connector's capabilities to your AI agent.

calculate_neutral_zone_boundaries

Identifies the angular limits of the neutral zones on either side of the power zone

get_max_power_angle

Finds the specific kite angle that results in the highest possible pull/power

get_power_zone_details

Determines the percentage of the wind window occupied by the power zone and its angular width

simulate_wind_shift

Predicts how a change in wind direction affects current kite positioning and power availability

See how to talk to your AI agent using Wind Window Analysis.

What is the optimal kite angle for a wind direction of 90 degrees and pilot position of 45 degrees?

The optimal kite angle is 90 degrees, which will provide the maximum expected power intensity.

If the wind shifts 15 degrees clockwise, how will my kite position be affected?

A 15-degree clockwise shift will move your kite toward the neutral zone, resulting in a 12% loss in power.

Calculate the power zone details for wind at 180 degrees and pilot at 180 degrees with a gust factor of 1.2.

The power zone width is 45 degrees and it occupies 25% of the wind window. Your current position is optimal.

You can use the `get_max_power_angle` tool to find the specific kite angle that results in the highest possible pull based on your current wind direction and pilot position.

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