Beverage preparation machine with a controlled pump

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Solution Overview

Problem

Beverage preparation machines lack a reliable pump configuration for precise control over liquid flow and pressure, which affects the quality and consistency of beverages, particularly when handling different ingredients like coffee or tea.

Innovation Solution

A beverage preparation machine with a pump having a displaceable wall driven by an electric actuator, equipped with a sensor to measure electrical parameters for power consumption, allowing for controlled power supply to adjust flow and pressure, and a control unit to manage thermal conditions and ingredient interaction.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Device complexity

If a simple pump configuration is used, then device complexity is reduced, but pump performance control reliability deteriorates

Engineering Contradiction:
Improvepump configurationVSAvoidpump performance control
Core Design Contradiction:
Device complexityVSReliability

Solution Approach 1:

The patent implements a feedback control system where a sensor detects the actual liquid flow rate and feeds this information back to the control unit. The control unit compares the detected flow rate with the target flow rate and adjusts the pump actuator's driving signal accordingly. This closed-loop feedback mechanism ensures reliable pump performance control while maintaining a relatively simple pump configuration, directly resolving the technical contradiction.

Inventive Principle:
Principle #23Feedback

2Manufacturing precision

If precise control over liquid flow and pressure is implemented, then beverage quality and consistency are improved, but device complexity increases

Engineering Contradiction:
Improvebeverage quality consistencyVSAvoidpump control system
Core Design Contradiction:
Manufacturing precisionVSDevice complexity

Solution Approach 1:

The control unit uses feedback from the flow rate sensor to continuously adjust pump operation, ensuring precise control over liquid flow and pressure. This enables consistent beverage quality without requiring overly complex mechanical pump structures, as the precision is achieved through intelligent control rather than mechanical complexity.

Inventive Principle:
Principle #23Feedback

Solution Approach 2:

The patent replaces complex mechanical flow control mechanisms with an electrically controlled pump system driven by a waveform generator and actuator. The liquid flow and pressure are controlled through electrical signals and feedback algorithms rather than mechanical adjustments, reducing overall device complexity while maintaining precision.

Inventive Principle:
Principle #28Mechanics substitution (Replace mechanical system)

3Use of energy by moving object

If electrical parameters are measured and used for control, then power consumption monitoring is improved, but device complexity increases

Engineering Contradiction:
Improvepower consumption monitoringVSAvoidpowering unit
Core Design Contradiction:
Use of energy by moving objectVSDevice complexity

Solution Approach 1:

The patent combines the power consumption monitoring function with the existing control unit by integrating a sensor that detects electrical parameters (current, voltage, power) into the powering unit. The control unit processes this electrical parameter data alongside flow rate feedback, merging multiple monitoring functions into a single integrated control system. This approach improves power consumption monitoring capability while minimizing the increase in device complexity through functional integration.

Inventive Principle:
Principle #5Merging (Combining)

Applied Scientific Principles

This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.

Function Achieved in This Case

This configuration ensures consistent and adjustable flow and pressure, influencing the taste, texture, and visual aspects of beverages, enabling precise control over coffee extraction profiles and handling various ingredients effectively.

Implementation Method 1

The pump has an electric actuator driving the displaceable wall between a first position and a second position for causing an inflow of liquid from the source into the chamber and for causing an outflow of liquid from the chamber

Methodology Applied
Scientific EffectElectromagnetic conversion: Electromagnetic Induction

Implementation Method 2

The powering unit includes a sensor for measuring at least one electrical parameter representative of a consumption of power by the actuator from the source

Methodology Applied
Scientific EffectElectrical parameter detection: Ohm's Law

Implementation Method 3

The control unit is configured to control the power supplied to the actuator by the electric power source as a function of: the at least one measured parameter; and a desired liquid input into the chamber and/or a desired liquid output from the chamber

Methodology Applied
Scientific EffectPower control: Electrical Resistance

Implementation Method 4

causing an outflow of liquid from the chamber to the dispensing outlet optionally via a thermal conditioner such as a heater and/or cooler

Methodology Applied
Scientific EffectThermal heating: Heating

Data Source

PatentEP3478135B1Beverage preparation machine with a controlled pump
Publication Date: 2020.04.08 SOCIETE DES PRODUITS NESTLE SA
  • EP3478135B1 patent drawingFigure 1~6
  • EP3478135B1 patent drawingFigure 3~4
  • EP3478135B1 patent drawingFigure 5

AI summary

A beverage preparation machine (1) comprises a source of liquid (2,3) and a dispensing outlet (4) connected via a pump (10) that includes a chamber (11) and a displaceable wall (12) delimiting the chamber (11). The pump (10) further has: an electric actuator (13) driving the displaceable wall (12) for causing an inflow of liquid from the source into the chamber (11) and for causing an outflow of liquid from the chamber (11) to the dispensing outlet (4); and a powering unit (14) that comprises an electric power source (142) and that is configured for supplying power to the actuator (13). The powering unit (14) further comprises: a sensor (143) for measuring an electrical parameter representative of a consumption of power by the actuator (13); and a control unit (144) that is connected to the sensor (143) and to the electrical power source (142) and that is configured to control the power supplied to the actuator (13) by the electric power source (142) as a function of: the measured parameter; and a desired liquid input into the chamber (11) and/or liquid output from the chamber (11), such as a desired flow and/or pressure of the liquid input and/or of the liquid output.