Power Stroke Duration

Power Stroke Duration MCP Connector for Claude

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Calculate optimal kite power stroke metrics and maneuver stability.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides advanced kinetic modeling for kiteboarding. It allows AI agents to calculate the primary outcomes of a kite loop or turn using a force integration model. Users can determine the get_optimal_stroke_metrics to find the necessary duration, power, and angle for specific wind and rider conditions. It also includes tools to get_required_kite_size for target energy outputs, analyze_stroke_efficiency to evaluate energy conversion, and simulate_maneuver_stability to predict kite behavior during a stroke.

kiteboardingkinetic-modelingwind-powermaneuver-analysissports-science

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

analyze_stroke_efficiency

Evaluates how effectively a specific stroke configuration converts wind energy into movement

get_optimal_stroke_metrics

Calculates the primary kinetic outcomes of a kite power stroke

get_required_kite_size

Determines the necessary kite size to achieve a target power output

simulate_maneuver_stability

Predicts if the kite will remain stable during the stroke

See how to talk to your AI agent using Power Stroke Duration.

What are the optimal stroke metrics for a 75kg rider on a racing board in 12m/s wind with a 10m2 kite starting from a water start?

For a 75kg rider on a racing board in 12m/s wind, the optimal stroke duration is 2.4 seconds, generating 450 Joules of power with a stroke angle of 85 degrees.

How much kite size do I need to generate 500 Joules in 15m/s wind for an 80kg rider on a freeride board?

To achieve 500 Joules of energy in 15m/s wind for an 80kg rider on a freeride board, an optimal kite size of 11.5m2 is required.

Is a 120-degree stroke angle stable in 8m/s wind with a 9m2 kite?

No, a 120-degree stroke angle in 8m/s wind with a 9m2 kite is likely to result in a stall due to the high angle relative to the wind pressure.

The `get_optimal_stroke_metrics` tool uses a drag coefficient profile based on the selected board type, such as racing or wave, to calculate the required force.

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