Nova Patents
EP2762829A1

Variable modelling of a measuring device

Abstract

The invention relates to a method for providing static and dynamic position information of a designated point of a measuring device, the measuring device comprising a surface and a structure comprising the designated point and being arranged moveable relatively to the surface, with defining a model for representing an actual position of the designated point of the structure relative to the surface and deriving the actual position of the designated point by a calculation based on the defined model. The model comprises at least two cells (41,43-46) for modelling the structure, wherein the at least two cells (41,43-46) for modelling the structure are linearly arranged in a linear extension direction, at least one of the cells (41,43-46) for modelling the structure is a variable cell (43-46) of a set of at least one variable cell (43-46) and the at least one variable cell (43-46) having variable elongation as to the extension direction. An actual elongation of the at least one variable cell (43-46) is set in order to model a positional change, particularly in linear extension direction, of the designated point.

EP2762829A1, drawing sheet 1
Sheet 1 of 7

Term

6.4 yearsto projected expiry

Projected expiry 5 February 2033, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

15 claims: 2 independent, 13 dependent

  1. 1
    Method for providing static and dynamic position information of a designated point of a measuring device (1,2), the measuring device (1,2) comprising ● a surface (32) and ● a structure (31) comprising the designated point and being arranged moveable relatively to the surface (32), with ● defining a model for representing an actual position of the designated point of the structure (31) relative to the surface (32) and ● deriving the actual position of the designated point by a calculation based on the defined model, characterised by ● the model comprising at least two cells (41,43-46,51) for modelling the structure (31), wherein □ the at least two cells (41,43-46,51) for modelling the structure (31) are linearly arranged in a linear extension direction, □ at least one of the cells (41,43-46,51) for modelling the structure (31) is a variable cell (43-46,51) of a set of at least one variable cell (43-46, 51) and □ the at least one variable cell (43-46,51) having variable elongation as to the extension direction, and ● setting an actual elongation of the at least one variable cell (43-46,51) in order to model a positional change, particularly in linear extension direction, of the designated point.
  2. 5
    Method according to any one of the claims 1 to 4, characterised in that the model comprising at least two variable cells (43-46,51) being linearly arranged as to the linear extension direction, wherein the positional change of the designated point is modelled by setting an actual elongation of the at least two variable cells (43-46, 51).
  3. 6
    Method according to any one of the claims 1 to 5, characterised by providing an updated actual position of the designated point by recalculating the position of the designated point with updated elongation parameters of the model, wherein the elongation parameters represent the actual elongation of the at least one variable cell (43-46,51) and are updated with changing the elongation, in particular wherein the updated actual position is provided with defined time interval, in particular continuously by continuously recalculating the position of the designated point, and/or deriving an actual position information for at least a part of the measuring device (1,2) by calculation based on the model, in particular a spatial coordinate of a measurement point measurable by a probe (49) connected to the structure (31) is derived.
  4. 7
    Method according to any one of the claims 1 to 6, characterised in that cell parameters are defined at least defining one of the following properties of static and/or variable cells for reproducing realistic properties of the structure (31):● length, ● stiffness, ● mass, ● inertia and/or ● thermal characteristic.
  5. 8
    Method according to any one of the claims 1 to 7, characterised by deriving a state parameter indicating a dynamic behaviour of the structure (31) and/or of the designated point, in particular wherein the state parameter depends on the position of the designated point relative to the surface (32) and/or on a positional change of the designated point and/or of the surface (32), in particular wherein the state parameter defines one of the following values and/or a change of the respective value for the structure (31) and/or the designated point:● actual velocity, ● actual acceleration, ● currently occurring force, ● currently occurring torque and/or ● currently occurring mechanical stress.
  6. 9
    Method according to any one of the claims 1 to 8, characterised by deriving an error value representing a displacement and/or deflection of at least a part of the structure (31), in particular of the designated point, wherein the displacement and/or deflection is caused by vibration, bending and/or torsion of at least a part of the structure (31) and/or of the surface (32), in particular wherein the error value is derived depending on the cell parameters and the state parameter, in particular wherein the error value is processed for determining a compensated spatial coordinate of a measurement point.
  7. 10
    Method according to any one of the claims 1 to 9, characterised in that ● connection units (48) are defined for modelling a connection of two neighbouring cells, wherein the connection units (48) are providing damping and/or spring properties, and/or ● the surface (32) is embodied by a bearing or a carriage (14), in particular by an air bearing.
  8. 12
    Measuring device (1,2) comprising ● a structure (31) and a surface (32), which are arranged movable relatively to each other, ● driving means allocated to the structure (31) and the surface (32) for providing movability and ● a controlling and processing unit adapted for execution of a modelling functionality, on execution of which a model for representing an actual position of a designated point of the structure (31) relative to the surface (32) is defined and the designated point of the structure (32) is derived by a calculation based on the defined model, characterised in that ● the model comprises at least two cells (41,43-46,51) for modelling the structure (31), wherein □ the at least two cells (41,43-46,51) for modelling the structure (31) are linearly arranged in a linear extension direction, □ at least one of the cells (41,43-46,51) for modelling the structure (31) is a variable cell (43-46,51) of a set of at least one variable cell (43-46, 51) and □ the at least one variable cell (43-46,51) having variable elongation as to the extension direction, and wherein on execution of the modelling functionality ● an actual elongation of the at least one variable cell (43-46,51) is set in order to model a positional change, particularly in linear extension direction, of the designated point and ● the actual position of the designated point is calculated based on the model using actual elongation of the at least one variable cell (43-46,51).
  9. 15
    Computer programme product having computer-executable instructions for performing the method of one of the claims 1 to 11, in particular when run on a controlling and processing unit of a measuring device (1,2) according to any one of the claims 12 to 14.