Kite Power Spike Analyzer

Kite Power Spike Analyzer MCP Connector for Claude

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Analyzes energy surges and apparent wind dynamics for kite propulsion systems.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized computational tools for analyzing sudden surges in energy produced by kite propulsion systems. By calculating the interaction between kite kinematics and apparent wind dynamics, users can determine the calculate_power_spike_metrics for specific maneuvers, predict surges using analyze_apparent_wind_dynamics, assess physical impact with estimate_structural_load, and determine maneuver quality via evaluate_spike_efficiency.

kitewind-powerkinematicsaerodynamicsenergy-surge

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

analyze_apparent_wind_dynamics

Determines the intensity of the wind perceived by the kite to predict potential surges

calculate_power_spike_metrics

Provides a complete snapshot of the energy surge during a specific kite maneuver

estimate_structural_load

Calculates the potential physical impact on the kite and lines from a specific force event

evaluate_spike_efficiency

Compares the power spike against steady-state conditions to determine the quality of the maneuver

See how to talk to your AI agent using Kite Power Spike Analyzer.

Calculate the power spike metrics for a kite moving at 15 m/s with a wind speed of 10 m/s, acceleration of 2 m/s², position of 45 degrees, design factor of 0.8, and 30m lines.

The power spike factor is 2.45, the peak force is 450.2 N, and the spike duration is 1.2 seconds.

What is the apparent wind speed if the kite is moving at 12 m/s in a 5 m/s wind at a 45-degree position?

The apparent wind speed is 14.8 m/s with a wind angle offset of 12.5 degrees.

Estimate the structural load for a peak force of 500 N with 40m lines and a design factor of 0.7.

The line tension is 485.5 N and the structural risk score is 0.65.

The power spike factor is a dimensionless ratio representing the magnitude of the energy surge relative to steady-state power, indicating the intensity of the maneuver.

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