METHOD FOR DETERMINING THE FILL LEVEL OF A FILL SUBSTANCE LOCATED IN A CONTAINER
20200249068 ยท 2020-08-06
Inventors
Cpc classification
G01S13/88
PHYSICS
G01S13/225
PHYSICS
H01Q1/225
ELECTRICITY
International classification
Abstract
A method for determining the fill level of a fill substance located in a container. The method, which is based on the pulse travel time principle, is distinguished by the fact that extra-range echos can be recognized. For this, the method includes two method portions, in which microwave pulses are transmitted in the direction of the surface of the fill substance with different repetition rates in measuring cycles following one after the other. In each method portion, travel times are ascertained. The fill level is ascertained based on the first travel time and/or based on the second travel time, to the extent that they approximately agree. Otherwise, it is assumed that such echo pulses concern extra-range echos. Thus, by means of the method of the invention, it can be assured for pulse radar-based fill-level measurements that extra-range echos do not result in erroneous fill level values.
Claims
1-7. (canceled)
8. A method for determining fill level of a fill substance located in a container, comprising the steps as follows: in a first method step with a first repetition rate in measuring cycles following one after the other, a first microwave pulse with a first center frequency is transmitted in the direction of the surface of the fill substance, after transmitting the first microwave pulse, at least one first echo pulse received, wherein a first travel time between transmission of the first microwave pulse and receipt of the at least one first echo pulse is ascertained; and, in a second method step with a second repetition rate in measuring cycles following one after the other, a second microwave pulse with a second center frequency is transmitted in the direction of the surface of the fill substance, after transmitting the second microwave pulse, at least one second echo pulse is received, wherein a second travel time between transmission of the second microwave pulse and receipt of the at least one second echo pulse is ascertained, wherein, to the extent that said first travel time and said second travel time approximately agree, the fill level is ascertained based on said first travel time and/or based on said second travel time.
9. The method as claimed in claim 8, wherein: at least in one measuring cycle of said first method step, the first microwave pulse is transmitted with a predefined delay, which corresponds approximately to the reciprocal of twice the first center frequency; and/or at least in one measuring cycle of said second method step, the second microwave pulse is transmitted with a predefined delay, which corresponds approximately to the reciprocal of twice the second center frequency.
10. The method as claimed in claim 9, wherein: for the case, in which, in multiple measuring cycles of said first method step and/or of said second method step, the microwave pulse is transmitted delayed, in which measuring cycle the first microwave pulse and/or the second microwave pulse are/is transmitted delayed is randomly controlled.
11. The method as claimed in claim 8, wherein: said first method step and said second method step are performed simultaneously.
12. The method as claimed in claim 8, wherein: said first method step and said second method step are performed alternately.
13. A fill-level measuring device for performing a method compromising the following steps: a method for determining fill level of a fill substance located in a container, comprising the steps as follows: in a first method step with a first repetition rate in measuring cycles following one after the other, a first microwave pulse with a first center frequency is transmitted in the direction of the surface of the fill substance, after transmitting the first microwave pulse, at least one first echo pulse received, wherein a first travel time between transmission of the first microwave pulse and receipt of the at least one first echo pulse is ascertained; and, in a second method step with a second repetition rate in measuring cycles following one after the other, a second microwave pulse with a second center frequency is transmitted in the direction of the surface of the fill substance, after transmitting the second microwave pulse, at least one second echo pulse is received, wherein a second travel time between transmission of the second microwave pulse and receipt of the at least one second echo pulse is ascertained, wherein, to the extent that said first travel time and said second travel time approximately agree, the fill level is ascertained based on said first travel time and/or based on said second travel time, the services comprising: a pulse producing unit for producing the first microwave pulse and/or the second microwave pulse, a transmitting/receiving unit for transmitting the first microwave pulse and/or the second microwave pulse, as well as for receiving the at least one first echo pulse and/or the at least one second echo pulse; and an evaluation unit for ascertaining fill level based on said first travel time and/or based on said second travel time.
14. The fill-level measuring device as claimed in claim 13, wherein: said pulse producing unit includes a delay unit for delay of the emitting of the first microwave pulse and/or of the second microwave pulse.
Description
The invention will now be explained based on the appended drawing, the figures of which show as follows:
[0026]
[0027]
[0028]
[0029]
[0030] The method is distinguished by the fact that extra-range echos are recognized as such. A fundamental feature of the method is that microwave pulses S.sub.1, S.sub.2 are transmitted with at least two different repetition rates f.sub.R1, f.sub.R2. In this connection,
[0031] Two different cases are considered in
[0032] In
[0033] According to the invention, it is thus detected whether an echo pulse E.sub.1, E.sub.2 is an extra-range-echo by comparing the first travel time t.sub.1 and the second travel time t.sub.2 with one another. When the first travel time t.sub.1 and the second travel time t.sub.2 do not agree, then the echo is an extra-range echo. Otherwise, it can be assumed from the comparison that an extra-range echo is not involved, so that the fill level L is determined based on the equal travel times t.sub.1, t.sub.2.
[0034]
[0035] In the scope of the invention, however, any other method for production of microwave pulses S.sub.1, S.sub.2 with different repetition rates f.sub.R1, f.sub.R2 can be used. This could be achieved, for example, by another pulse producing unit supplementally to the illustrated pulse producing unit 3. In such case, an option would be that two high-frequency oscillators with mutually differing center frequencies f.sub.M1, f.sub.M2 are implemented. In this case, an option would be that the first method portion and the second method portion of the method of the invention are performed at the same time.
[0036] In the case of the fill-level measuring device shown in
[0037] Serving for ascertaining the fill level L based on the travel times t.sub.1, t.sub.2 is an evaluation unit 5. It includes a microcontroller 51 for A/D conversion of the echo pulses E.sub.1, E.sub.2 as well as for calculating the travel times t.sub.1, t.sub.2.
[0038]
[0039]
[0040] The fill-level measuring device shown in
[0041] This measure, which serves for reducing the signal strength of extra-range echos E.sub.1, E.sub.2 , could also be applied in the case of the embodiment of the fill level measuring device shown in
LIST OF REFERENCE CHARACTERS
[0042] 1 container [0043] 2 fill substance [0044] 3 pulse producing unit [0045] 4 transmitting/receiving unit [0046] 5 evaluation unit [0047] 31 first pulse generator [0048] 32 first frequency divider [0049] 33 first high-frequency oscillator [0050] 34 first delay unit [0051] 41 transmitting/receiving separator, duplexer or directional coupler [0052] 42 antenna [0053] 51 microcontroller [0054] 52 reference pulse generator [0055] 53 second frequency divider [0056] 54 second high-frequency oscillator [0057] 55 second delay unit [0058] 56 mixer [0059] E.sub.1, E.sub.2 echo pulses [0060] f.sub.M1, f.sub.M2 center frequencies [0061] f.sub.R1, f.sub.R2 repetition rates [0062] L fill level [0063] S.sub.1, S.sub.2 microwave pulses [0064] t.sub.0, t.sub.1, t.sub.2 travel times