Method for generating a 3D combined model that represents a scene
Abstract
A method for generating a 3D combined model that represents a scene includes acquiring the coordinates in an external geodetic frame, acquiring at least one 3D primary model representing the scene, which model includes primary model elements, oriented in the geodetic frame. The primary model elements are assigned measured primary physical property values in the form of coordinates in a local three-dimensional coordinate system of the corresponding point. The method further includes generating a 3D secondary model representing the scene, wherein at least some secondary model elements are assigned coordinates in the local coordinate system and at least one secondary physical property value. At least some secondary model elements are assigned coordinates in the external geodetic frame. The primary and at least one secondary model are then combined. Also disclosed are a related system and reference members for use in the system.
Claims
exact text as granted — not AI-modifiedThe invention claimed is:
1. Method for generating a 3D combined model that represents a scene ( 1 ), in which scene ( 1 ) base members ( 11 ) are attached to scene elements ( 2 ) and wherein each base member ( 11 ) is associated with a respective reference point ( 23 ), which method comprises the steps of:
acquiring the coordinates in an external geodetic frame of a coordinate system for each of said reference points ( 23 );
detachably connecting first reference members ( 20 ) (60), comprising primary means ( 21 ) an emitter or reflector (61) adapted to provide at least one type of primary physical property value and a filament arrangement (62) adapted to provide a predetermined temperature value, to said base members ( 11 ) in predetermined positional relationships;
acquiring at least one 3D primary model that represents the scene ( 1 ), which 3D primary model comprises a plurality of primary model elements, some of which represent points on the scene elements ( 2 ) and some of which represent points on said primary means ( 21 ) emitter or reflector (61), wherein each primary model element is assigned measured the provided primary physical property values in the form of coordinates in a local three-dimensional coordinate system of the corresponding point;
wherein the method comprises the steps of:
acquiring at least one secondary model that represents the scene ( 1 ), which secondary model comprises a plurality of secondary model elements, some of which represent points associated with scene elements ( 2 ) and some of which represent points associated with secondary means the filament arrangement ( 41 ; 62 ), connected to said base members ( 11 ) in predetermined positional relationships, wherein each secondary model element is associated with at least one measured secondary physical property value the predetermined temperature value associated with the corresponding point; and
processing the acquired information coordinates and models to generate a 3D combined model that represents the scene ( 1 ), wherein at least some combined model elements are associated with known coordinates in the external geodetic frame coordinate system, and wherein at least some combined model elements are associated with both first and second measured the provided primary physical property values and predetermined temperature values.
2. Method according to claim 1 , which method comprises the step of acquiring additional secondary models associated with different at least one secondary physical properties property.
3. Method according to claim 1 , further comprising the step of replacing some first reference members ( 20 ) with second reference members ( 40 ) comprising secondary means ( 41 ) before a secondary model is acquired.
4. Method according to claim 1 , wherein said first reference members ( 20 ) comprise said secondary means ( 62 ).
5. Method according to claim 1 , which method comprises the steps of:
detachably connecting one or more surveying reference members comprising surveying means for use with surveying equipment a prism or reflector (13) to at least two base members ( 11 ) in predetermined positional relationships;
acquiring the coordinates in the external geodetic frame coordinate system for each of the reference points ( 23 ) associated with said base members ( 11 ) by means of said surveying equipment and said one or more surveying reference members.
6. Method according to claim 1 , which method further comprises the step of attaching the base members ( 11 ) to the scene elements ( 2 ).
7. Method according to claim 1 2, wherein the at least one secondary physical property is one of the following: colour, frequency, luminescence, magnetic field, reflectivity, temperature and volume.
8. System for use in a method for generating a 3D combined model that represents a scene ( 1 ) according to claim 1 , which system comprises:
a plurality of base members ( 11 ), wherein each base member ( 11 ) defines a reference point ( 23 ), which base members ( 11 ) are adapted to be connected to scene elements ( 2 );
a plurality of reference members ( 20 ; 60 ) each comprising a first connecting portion ( 24 ) adapted to cooperate with a second connecting portion ( 34 ) of a base member ( 11 ) to detachably connect the reference member ( 20 ; 60 ) to said base member ( 11 ) in a predetermined positional relationship, wherein each reference member ( 20 ; 60 ) comprises a primary means an emitter or reflector ( 21 ; 61 ) with a recognizable appearance; and
wherein said system further comprises secondary means ( 41 ; 62 ), adapted to provide at least one recognizable secondary physical property value, which secondary means ( 41 ; 62 ) are adapted to be connected to said base members ( 11 ) in predetermined positional relationshipsa filament arrangement (62), adapted to provide a predetermined temperature value.
9. System according to claim 8 , wherein at least one first reference member ( 60 ) comprises a secondary means ( 62 ).
10. System according to claim 8 , which system comprises second reference members ( 40 ) each comprising a first connecting portion ( 24 ) adapted to cooperate with the second connecting portion ( 34 ) of the base member ( 11 ) to detachably connect the second reference member ( 40 ) to the base member ( 11 ) in a predetermined positional relationship, wherein each second reference member ( 40 ) comprises a secondary detectable means ( 41 ).
11. System according to claim 8 , wherein the second connecting portion ( 34 ) of the base member ( 11 ) is adapted to cooperate with a first connecting portion of a surveying reference member, which surveying reference member comprises a surveying means adapted to cooperate with surveying equipment prism or reflector (13), to detachably connect said surveying reference member to the base member ( 11 ) in a predetermined positional relationship, which surveying means prism or reflector (13) can be used to determine the coordinates in an external geodetic frame of the a coordinate system for each reference point ( 23 ) of the base member members ( 11 ).
12. Reference member ( 60 ) for use in a system according to claim 8 , which reference member ( 60 ) comprises a first connecting portion ( 24 ) adapted to cooperate with a second connecting portion ( 34 ) of a base member ( 11 ) to detachably connect the reference member ( 60 ) to the base member ( 11 ) in a predetermined positional relationship, and a primary means an emitter or reflector ( 61 ) with a recognizable appearance, wherein said reference member ( 60 ) comprises a secondary means filament arrangement ( 62 ) adapted to provide at least one type of secondary physical property value a predetermined temperature value.
13. Method according to claim 2 , further comprising the step of replacing some first reference members ( 20 ) with second reference members ( 40 ) comprising secondary means ( 41 ) before a secondary model is acquired.
14. Method according to claim 2 , wherein said first reference members ( 20 ) comprise said secondary means ( 62 ).
15. Method according to claim 2 , which method comprises the steps of:
detachably connecting one or more surveying reference members comprising surveying means for use with surveying equipment a prism or reflector (13) to at least two base members ( 11 ) in predetermined positional relationships;
acquiring the coordinates in the external geodetic frame coordinate system for each of the reference points ( 23 ) associated with said base members ( 11 ) by means of said surveying equipment and said one or more surveying reference members.
16. Method according to claim 3 , which method comprises the steps of:
detachably connecting one or more surveying reference members comprising surveying means for use with surveying equipment to at least two base members ( 11 ) in predetermined positional relationships; acquiring the coordinates in the external geodetic frame of the reference points ( 23 ) associated with said base members ( 11 ) by means of said surveying equipment and said one or more surveying reference members.
17. Method according to claim 4 , which method comprises the steps of:
detachably connecting one or more surveying reference members comprising surveying means for use with surveying equipment to at least two base members ( 11 ) in predetermined positional relationships; acquiring the coordinates in the external geodetic frame of the reference points ( 23 ) associated with said base members ( 11 ) by means of said surveying equipment and said one or more surveying reference members.
18. Method according to claim 2 , which method further comprises the step of attaching the base members ( 11 ) to the scene elements ( 2 ).
19. Method according to claim 3 , which method further comprises the step of attaching the base members ( 11 ) to the scene elements ( 2 ).
20. Method according to claim 4 , which method further comprises the step of attaching the base members ( 11 ) to the scene elements ( 2 ).
21. Method according to claim 1, wherein the filament arrangement configured to emit thermal radiation.Join the waitlist — get patent alerts
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