System for detecting the presence and position of hands and/or fingers near a vehicle steering wheel
US-2018335340-A1 · Nov 22, 2018 · US
US2024022250A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2024022250-A1 |
| Application number | US-202118252561-A |
| Country | US |
| Kind code | A1 |
| Filing date | Sep 23, 2021 |
| Priority date | Nov 13, 2020 |
| Publication date | Jan 18, 2024 |
| Grant date | — |
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A method for operating at least one optoelectronic button or operating element arranged behind an optically transparent control panel of a field device of automation technology for detecting an actuation of the optoelectronic button or operating element by an operator of the field device includes detecting whether the field device of automation technology is located in an interior area or in an exterior area; defining an evaluation condition which is used to detect the actuation of the optical button or control element; and detecting or evaluating whether an actuation of the optoelectronic button or control element is present based on the defined evaluation condition.
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1 - 13 . (canceled) 14 . A method for operating at least one optoelectronic button or operating element arranged behind an optically transparent control panel of a field device of automation technology, for detecting an actuation of the optoelectronic button or operating element by an operator of the field device, the method comprising: detecting whether the field device is located in an interior area or in an exterior area; defining a first evaluation condition and a second evaluation condition which are used to detect the actuation of the optical button or control element, wherein the first evaluation condition is used when it is detected that the field device is located in an interior area, and the second evaluation condition different from the first is used when it is detected that the field device is located in an exterior area; detecting or evaluating whether an actuation of the optoelectronic button or control element is present based on the first evaluation condition or on the second evaluation condition, wherein in the first evaluation condition, a value dependent on a time profile of an output signal originating from the optoelectronic button or control element is set in relation to a current value of the output signal for detecting the actuation of the optoelectronic button or control element, and in the second evaluation condition, a value independent of the time profile of the output signal during measuring operation of the field device is set in relation to a current value of the output signal for detecting the actuation of the optoelectronic button or control element. 15 . The method according to claim 14 , wherein for detecting an actuation of the optoelectronic button or control element based on the first evaluation condition, an actuation is detected when the current value of the output signal is greater than a value representing the time profile of the output signal. 16 . The method according to claim 14 , wherein in the second evaluation condition, a value representing an electromagnetic ambient radiation is furthermore set in relation to a current value of the output signal. 17 . The method according to claim 16 , wherein for detecting an actuation of the optoelectronic button or control element, an actuation is detected based on the second evaluation condition when a difference between the current value of the output signal and the value representing the electromagnetic ambient radiation is greater than the value independent of the time profile of the output signal. 18 . The method according to claim 14 , further comprising: ascertaining from which material the control panel is formed, wherein the detection or evaluation of the actuation of the optoelectronic button or control element is a function of the material of the control panel. 19 . The method according to claim 18 , wherein, as a function of the ascertained material of the control panel, a value dependent on the control panel material is used in the detection or evaluation of the actuation of the optoelectronic button or control element. 20 . The method according to claim 16 , wherein, as the value independent of the time profile of the output signal, a comparison value is used that is recorded and stored for each optoelectronic button or control element during the production or manufacture of the field device. 21 . The method according to claim 20 , wherein the comparison value serving as the value independent of the time profile of the output signal is adjusted during the measuring operation of the field device. 22 . The method according to claim 21 , wherein the adjustment is carried out in such a way that it is first ascertained during the measuring operation of the field device whether a state that permits an adjustment is given, and the adjusting is carried out only if such a state is given. 23 . The method according to claim 22 , wherein for ascertaining whether the state that permits the adjustment is given, the value representing the electromagnetic ambient radiation is used. 24 . The method according to claim 23 , wherein in the event that the state that permits an adjustment is given, the comparison value is adjusted to a current value of the output signal or a value representing the time profile of the output signal originating from the optoelectronic button or control element. 25 . A field device of automation technology, comprising: a transparent control panel having a contact surface for actuation by a user on an outer side of a field device housing or a field device cover; at least one optoelectronic button or control element that is arranged on an inner side of the transparent control panel, the optoelectronic button or control element including: at least one transmitting unit arranged on the inner side of the transparent control panel facing away from the outer side, wherein the at least one transmitting unit is designed to transmit an optical signal in a direction of the control panel; and at least one receiving unit corresponding to the at least one transmitting unit, wherein the at least one receiving unit is configured to receive the optical signal, and wherein the at least one receiving unit is arranged on the inner side of the control panel such that the optical signal scattered at the control panel by a finger or at another scattering object at least partially reaches the at least one receiving unit), wherein the at least one optoelectronic button or control element is configured to detect the intensity of the optical signal incident on the receiving unit on the basis of the received optical signal and to provide an output signal dependent thereon; an evaluation unit configured to: define a first evaluation condition and a second evaluation condition which are used to detect the actuation of the at least one optical button or control element, wherein the first evaluation condition is used when it is detected that the field device is located in an interior area, and the second evaluation condition different from the first is used when it is detected that the field device is located in an exterior area; and detect or evaluate whether an actuation of the at least one optoelectronic button or control element is present based on the first evaluation condition or on the second evaluation condition, wherein in the first evaluation condition, a value dependent on a time profile of an output signal originating from the at least one optoelectronic button or control element is set in relation to a current value of the output signal for detecting the actuation of the at least one optoelectronic button or control element, and in the second evaluation condition, a value independent of the time profile of the output signal during measuring operation of the field device is set in relation to a current value of the output signal for detecting the actuation of the at least one optoelectronic button or control element. 26 . The field device according to claim 25 , further comprising: a light sensor or photodetector configured to output a signal representing an electromagnetic ambient radiation, wherein the evaluation unit is further configured to set a value representing and environmental condition in relation to a current value of the output signal of the optoelectronic button or control element on the basis of the signal.
using a plurality of detectors, e.g. keyboard · CPC title
Automatic threshold calibration; e.g. threshold automatically adapts to ambient conditions or follows variation of input · CPC title
with human activation, e.g. processes requiring or being triggered by human intervention, user-input of digital word or analog voltage · CPC title
Calibration involving digital processing · CPC title
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