Fuel Economy Log Analysis

Fuel Economy Log Analysis MCP Connector for Claude

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Analyze vehicle fuel efficiency, cost per distance, and performance trends.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides analytical tools to track and evaluate vehicle fuel performance. It processes chronological fueling records to calculate efficiency, cost per distance, and period-over-period trends. Use get_fill_up_summary to view individual fueling events and efficiency per interval, get_period_metrics for aggregated data over specific timeframes, get_performance_trends to compare current performance against previous periods, and search_fuel_logs to filter specific refueling events.

fuel-efficiencyvehicle-trackingcost-analysislog-managementautomotive-data

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

get_fill_up_summary

Provides a detailed list of individual fueling events and the efficiency achieved during each interval

get_performance_trends

Compares the current period's efficiency and cost against the most recent prior period to show changes

get_period_metrics

Calculates aggregated fuel efficiency and cost metrics over a specific timeframe

search_fuel_logs

Allows searching for specific fueling events based on date ranges or minimum volume thresholds

See how to talk to your AI agent using Fuel Economy Log Analysis.

Show me the fuel efficiency summary for vehicle V123.

The fuel efficiency for vehicle V123 shows an average efficiency of 12.5 km/L across 5 recorded fill-ups.

What were my fuel metrics between 2024-01-01 and 2024-01-31 for vehicle V123?

For the period 2024-01-01 to 2024-01-31, the vehicle covered 1,200 km with a total fuel consumption of 100L, resulting in an efficiency of 12 km/L and a cost per distance of $0.15/km.

Compare my fuel performance for the last 30 days against the previous 30 days for vehicle V123.

Your fuel efficiency improved by 5% compared to the previous 30-day period, and your cost per distance decreased by $0.02/km.

Efficiency is determined by the distance traveled between two consecutive fill-ups divided by the volume of fuel required to refill the tank.

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