WEBVTT - generated by wenglor-media

1
00:00:00.116 --> 00:00:01.116
My name is Hendrik Beel.

2
00:00:01.116 --> 00:00:03.166
I am the managing director of RTT System.

3
00:00:03.816 --> 00:00:06.016
Our company focuses on

4
00:00:06.016 --> 00:00:06.866
the development and production

5
00:00:06.866 --> 00:00:08.866
of detection systems and

6
00:00:08.866 --> 00:00:10.866
AI-based detection systems.

7
00:00:11.016 --> 00:00:13.216
We use these detection systems

8
00:00:13.216 --> 00:00:14.466
for all our products,

9
00:00:14.466 --> 00:00:16.566
such as our sorting units.

10
00:00:16.766 --> 00:00:17.566
The challenges that we

11
00:00:17.566 --> 00:00:19.966
tackle at our company

12
00:00:19.966 --> 00:00:20.766
using the MLSL profile sensor

13
00:00:20.766 --> 00:00:23.566
from wenglor are basically

14
00:00:23.566 --> 00:00:25.866
that we have AI-based detection systems.

15
00:00:25.866 --> 00:00:27.766
These consist of several sensors.

16
00:00:27.766 --> 00:00:30.166
Here in the mixed construction waste

17
00:00:30.516 --> 00:00:33.366
sorting plant, we try

18
00:00:33.366 --> 00:00:35.466
to detect plastics, stone and metals.

19
00:00:35.666 --> 00:00:37.516
The sensor helps us with this – that’s
one point.

20
00:00:37.516 --> 00:00:40.066
The second point is that we

21
00:00:40.066 --> 00:00:42.066
can use the height profiles

22
00:00:42.216 --> 00:00:44.616
from the sensor to calculate

23
00:00:44.866 --> 00:00:45.416
the optimal point

24
00:00:45.416 --> 00:00:47.416
for the robot to engage,

25
00:00:47.466 --> 00:00:49.266
so that we can efficiently remove

26
00:00:49.266 --> 00:00:51.016
the contaminants from the material flow.

27
00:00:51.016 --> 00:00:52.716
And the third point for

28
00:00:52.716 --> 00:00:55.466
using the 2D/3D profile sensor

29
00:00:55.466 --> 00:00:56.366
is that we can optimize

30
00:00:56.366 --> 00:00:58.566
the robot's path

31
00:00:58.566 --> 00:00:59.616
and thus avoid collisions

32
00:00:59.616 --> 00:01:00.000
with other objects.

33
00:01:01.000 --> 00:01:03.000
The 2D/3D sensor essentially

34
00:01:03.000 --> 00:01:05.000
offers the advantages that

35
00:01:05.000 --> 00:01:07.000
it has a relatively large working width,

36
00:01:07.000 --> 00:01:09.000
can process data very quickly

37
00:01:09.000 --> 00:01:10.000
and can provide us with

38
00:01:10.000 --> 00:01:12.000
the results from the height profiles,

39
00:01:12.000 --> 00:01:14.000
but can also measure

40
00:01:14.000 --> 00:01:15.000
height differences very precisely.

41
00:01:15.000 --> 00:01:17.000
All these points together mean

42
00:01:17.000 --> 00:01:19.000
that we can use this sensor

43
00:01:20.000 --> 00:01:22.000
to cover certain applications,

44
00:01:22.000 --> 00:01:25.000
also in the different working conditions

45
00:01:25.000 --> 00:01:26.000
in which our machines are used.

46
00:01:26.000 --> 00:01:27.000
They are located in dusty environments

47
00:01:27.000 --> 00:01:29.000
and have changing temperature ranges –

48
00:01:29.000 --> 00:01:31.000
the sensor works very reliably everywhere

49
00:01:31.000 --> 00:01:33.000
and we can integrate it well.

