Method for Detecting a Measurement Region in a Substrate
20170370720 · 2017-12-28
Assignee
Inventors
- Torsten GOGOLLA (Schaan, LI)
- Dietmar Schoenbeck (Goefis, AT)
- Sascha Korl (Louisville, CO, US)
- Jens Neumann (Grabs, CH)
Cpc classification
International classification
Abstract
A method for detecting a measurement region in a substrate, using an arrangement that includes a detector device having a detection field, a localization device, and a control device, is provided. The method includes selecting a measurement region to be detected, which has a start position and coordinates. The dimension of the measurement region to be detected is greater than the detection field of the detector device. The method also includes determining using the localization device an actual position of the detector device, and further determining by the control device an actual detection field from the actual position of the detector device. Moreover, the method includes comparing by the control device the start position of the measurement region to be detected with the actual detection field.
Claims
1-14. (canceled)
15. A method for detecting a measurement region in a substrate by an apparatus, wherein the apparatus comprises a detector device having a detection field, a localization device, and a control device, the method comprising the steps of: selecting a first measurement region to be detected having a start position and coordinates, wherein dimensions of the first measurement region to be detected are greater than the detection field of the detector device; determining by the localization device a current position of the detector device; determining by the control device a current detection field from the current position of the detector device; and comparing by the control device the start position of the measurement region to be detected against the current detection field.
16. The method according to claim 15, further comprising the steps of: calculating by the control device an adjustment instruction for the detector device from the current position of the detector device and the start position of the measurement region to be detected; and depicting the adjustment instruction for the detector device on a display device if the start position is located outside of the current detection field.
17. The method according to claim 15, further comprising the step of: issuing a command by the control device to the detector device to execute at least one measurement in the substrate if the start position of the measurement region to be detected is located within the current detection field.
18. The method according to claim 15, further comprising the steps of: generating by the control device an operating instruction to stop the detector device; and depicting the operating instruction on a display device if the start position of the measurement region to be detected is located within the current detection field.
19. The method according to claim 18, further comprising the step of: issuing a command by the control device to the detector device to execute at least one measurement in the substrate if the start position of the measurement region to be detected is located within the current detection field and the detector device is not moved.
20. The method according to claim 17, further comprising the steps of: during the measurement using the detector device, calculating by the control device an adjustment instruction for the detector device from the coordinates of the measurement region to be detected and the current position of the detector device; and depicting the adjustment instruction for the detector device on a display device.
21. The method according to claim 20, further comprising the step of: executing by the detector device measurements in a substrate using a measurement frequency and the measurement values are transmitted using a first transmission frequency by the detector device to the control device.
22. The method according to one of the claim 20, wherein the current position of the detector device is determined by a localization device using one localization frequency, and the position data is transmitted using a second transmission frequency by the localization device to control device.
23. The method according to claim 20, further comprising the step of: issuing by the control device a command to the detector device to discontinue taking measurements in the substrate if the coordinates of the measurement region to be detected are located outside of the current detection field.
24. The method according to claim 23, further comprising the steps of: calculating by the control device an adjustment instruction for the detector device from the current position of the detector device and the coordinates of the measurement region to be detected; and depicting the adjustment instruction for the detector device on the display device.
25. The method according to claim 24, further comprising the step of: issuing by the control device a command to the detector device to execute at least one measurement in the substrate if the coordinates of the measurement region to be detected are located within the current detection field.
26. The method according to claim 21, wherein the detector device is moved at least two times over the measurement region to be detected, and wherein first measurements are taken using first detection parameters and second measurements are taken with second detection parameters by the detector device.
27. The method according to claim 15, wherein a current orientation of the detector device is determined using the localization device.
28. The method according to claim 27, wherein the current detection field of the detector device is determined from the current position and current orientation of the detector device.
29. The method according to claim 19, further comprising the steps of: during the measurement using the detector device, calculating by the control device an adjustment instruction for the detector device from the coordinates of the measurement region to be detected and the current position of the detector device; and depicting the adjustment instruction for the detector device on a display device.
30. The method according to one of the claim 21, wherein the current position of the detector device is determined by a localization device using one localization frequency, and the position data is transmitted using a second transmission frequency by the localization device to control device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0025]
[0026]
[0027]
[0028]
DETAILED DESCRIPTION OF THE DRAWINGS
[0029]
[0030] In regard to detector devices, one differentiates between held and guided detector devices; a held detector device is held over the substrate to be detected during the measurement process without any forward movement, and a guided detector device is guided during the measuring process along a linear path or in any desired path over the substrate to be detected.
[0031] The method according to the invention is described by a measurement task in an interior space 14. Interior space 14 consists of a floor 15, a left and right sidewall 16, 17, a back wall 18 and a ceiling 19. The boundaries 15-19 of interior space 14 are covered by the term “boundary surface”. Interior space 14 is spanned by a three-dimensional coordinate system X, Y, Z, whose point of origin (0, 0, 0) is located in the left bottom corner between floor 15, left sidewall 16, and back wall 18.
[0032]
[0033] Before measurements are taken using detector device 11, detector device 11 must be positioned over measurement region 21. To do so, using localization device 12, current position P.sub.akt is determined using coordinates x.sub.akt, y.sub.akt, z.sub.akt of detector device 11 in interior space 14. Current position P.sub.akt of detector device 11 is determined using two localization marks 22A, 22B. In the embodiment, localization marks 22A, 22B are applied to the top side of detector device 11. From the current position P.sub.akt of detector device 11, control device 13 determines a current detection field 23 of detector device 11. There is a known relationship between the positions of localization marks 22A, 22B and detection field 23 of detector device 11. A current orientation O.sub.akt of detector device 11 may also be determined using localization marks 22A, 22B. After control device 13 has determined current detection field 23 of detector device 11, the start position of measurement region 21 is compared by control device 13 against current detection field 23 of detector device 11.
[0034] Measurement region 21 is designed in a rectangular manner and is bounded by four corner points E.sub.ul, E.sub.ol, E.sub.or, E.sub.ur. The corner points are suitable as the start position of measurement region 21.
[0035]
[0036] Detector device 11 and control device 13 can be connected to each other via a first communications link 31. Control device 13 can be connected to localization device 12 via a second communications link 32. The communication links can be designed as wireless communication links, for example as radio, infrared, Bluetooth, WLAN or W-Fi links, or as cabled communication links. Besides the listed wireless link technologies, all already known and future wireless communication technologies for data and image transmission are suitable.
[0037] Control device 13 includes a housing 33, into which is integrated an operating device 34 and a display device 35. Operating device 34 and display device 35 can be designed as separate parts as shown in
[0038] Detection device 11 includes a sensor device 41, a control element 42 for controlling sensor device 41 and a second transmit and receive element 43. Originating at first transmit and receive element 38 of control device 13, the first communications link to second transmit and receive element 43 of detector device 11 is set up. The commands for detector device 11 are transmitted by control device 13 via first communications link 31 to control element 42 of detector device 23. The sensor device has a single sensor element or multiple sensor elements; the sensor elements may be designed as inductive sensors, capacitive sensors, radar sensors, magnetic field sensors, or as other sensors suitable for detecting objects in substrates.
[0039] Localization device 12 includes a measuring device 44, a control and evaluation element 45 for controlling measuring device 44 and for evaluating the measured values as well as a third transmit and receive element 46. Locator device 12 is designed for example as a total station and the measuring device 44 is designed as a distance and angle measuring device. Originating at first transmit and receive element 38 of control device 13, second communications link 32 to third transmit and receive element 46 of localization device 12 is set up.
[0040]
[0041] In a step S01, the user selects via operating device 34 measuring region 21 to be detected having start position E.sub.ul and the coordinates; in a step S02, measurement region 21 is uploaded into control device 13. Prior to starting the process, the user can establish one of the corner points as the start position or control device 13 decides, while the process is performed, which of the corner points lies closer, and defines that one as the start position. In the embodiment of
[0042] In a step S03, the user starts to execute the process. After the start in step S03, localization device 12 determines in a step S04 current position P.sub.akt and current orientation O.sub.akt of detector device 11 on back wall 18, which is transmitted in a step S05 by localization device 12 to control device 13. In a step S06, control device 13 determines from current position and orientation P.sub.akt, O.sub.akt current detection field 23 of detector device 11 and compares in a step S07 the start position against current detection field 23. In step S07, control device 13 thereby checks whether start position E.sub.ul of measurement region 21 is located within current detection field 23.
[0043] If start position E.sub.ul of measurement region 21 is located outside of current detection field 23 (N in S07), control device 13 generates in a step S08, from current position and orientation P.sub.akt, O.sub.akt of detector device 11 and start position E.sub.ul, an adjustment instruction for detector device 11, which is depicted on display device 35. The method according to the invention is continued with step S04. If start position E.sub.ul is located within current detection field 23 (J in S07), in a step S09 control device 13 issues a command to detector device 11 to take measurements in substrate 18 using a measuring frequency, and determines in a step S10 an adjustment instruction, from current position and orientation P.sub.akt, O.sub.akt and the coordinates of measurement region 21, how detector device 11 is to be moved over measurement region 21 to be detected. In a step S11, localization device 12 determines current position and orientation P.sub.akt, O.sub.akt using a localization frequency and transmits the position data to control device 13. Control device 13 determines from current position and orientation P.sub.akt, O.sub.akt current detection field 23 and in a step S12 compares the coordinates of measurement region 21 to be detected against current detection field 23.
[0044] If the coordinates of measurement region 21 are located within current detection field 23 (J in S12), the method according to the invention is continued with step S11. If the coordinates of measurement region 21 are located outside current detection field 23 (N in S12), control device 13 issues in a step S13 a command to detector device 11 to discontinue the measurements in substrate 18. In a step S14, control device 13 determines from current position and orientation P.sub.akt, O.sub.akt of detector device 11 and the coordinates of measurement region 21 an adjustment instruction, which is depicted on display device 35.
[0045] In a step S15, current position and orientation P.sub.akt, O.sub.akt of detector device 11 are determined by localization device 12 and transmitted to control device 13. In a step S16, control device 13 determines from current position and orientation P.sub.akt, O.sub.akt of detector device 11 current detection field 23, and in a step S17, it compares the coordinates of measurement region 21 to be detected against current detection field 23. In step S17, control device thereby checks whether the coordinates of measurement region 21 to be detected are located within current detection field 23.
[0046] If the coordinates of measurement region 21 are located outside of current detection field 23 (N in S17), the method according to the invention is continued with step S14. If the coordinates of measurement region 21 are located within current detection field 23 (J in S17), control device 13 generates in a step S18 a command to detector device 11 to continue the measurement in substrate 18. The method according to the invention is continued with step S11.