Title of Invention

"METHOD AND DEVICE FOR DIMMING LIGHTING CONTROL DEVICES TO A PREDEFINED LEVEL"

Abstract The invention relates to a method for controlling electronically controlled lighting control devices or parts thereof depending on the detection of a movement in a defined space. For this purpose, an output signal of a motion detector connected to a supply voltage, which detector outputs the supply voltage as an output signal depending on the detection of a motion, is evaluated and the electronically controlled lighting control device is adjusted to one or a plurality of defined dimming levels depending on the output signal of the motion detector.
Full Text Dirnmipg of lighting means operating devices to previously defined levels
The present invention relates in general to methods and devices by means of which lighting meails, such as LEDs, gas-discharge lamps, high-pressure lamps etc. can be controlled and/or regulated to previously defined dimming levels (dimming stages).Such electronic operating devices are generally known as an electronic ballast (EB) in the sector of gas-discharge lamps.
It is known from the prior art to drive, for example, such electronic ballasts (EBs) , in order to cite only one example* of lighting means operating devices, via a digital bus. In this regard, reference is made to the literature in connection with the so-called DALI (digital addressable light interface) standard. In this case, digital signals are therefore fed to a lighting means operating device at a control input, which signals can predetermine, inter alia, desired dimming values.
Since a user does not always desire to use the associated bus device including a digital controller for a lighting means operating device with such a digital interface, as well, operating devices are also known from the prior art in which either even a digital signal or else a signal produced by means of a pushbutton supplied with mains voltage can be applied to such a digital control input (digital interface). In this case, a user, if he does not wish to go beyond the digital periphery, can therefore drive the digital control input of the operating device by means of actuating the pushbutton. In the process, for example, the duration and the repetition rate of the actuation of the pushbutton is evaluated by the • connected
operating device as a signal for connection/disconnection or for dimming.
An example of such an operating device, to whose digital control input a signal originating from a pushbutton or switch supplied with mains voltage can also be applied, is mentioned, for example, in the German utility model DE 297 24 657.
The present invention is now based on the object of transferring the knowledge that signals produced by means of a mains voltage can also be applied to a digital control input of a lighting means operating device given a corresponding design, which knowledge is obtained from the sector of pushbuttons and switches, to other sectors.
In the process, the invention has -in particular identified that such an approach can also be transferred to the sector of motion detection by means of a motion sensor.
The mentioned object is achieved in more precise terms by the features of the independent claims. The dependent claims develop the central concept of the invention in a particularly advantageous manner.
The invention therefore proposes a method for driving electronically controlled lighting means operating devices. A typical example of such a lighting means operating device is an electronic ballast (EB) for gas-discharge lamps. According to the invention, an output signal of a motion sensor, which is connected to a supply voltage, is evaluated. Then, the electronically controlled lighting means operating .device is set to one of a plurality of predetermined dimming levels as a function of the output signal of the motion sensor.
The output signal of the motion sensor can in this case be detected in a control input of the operating device which is provided isolated from the voltage supply of the lighting means operating device.
In this case, the control input may be designed such that either a digital signal or a mains voltage signal can be applied to it.
In accordance with a further aspect of the present invention, a method for driving electronically controlled lighting means operating devices is provided, at least two different dimming stages (dimming levels) being preprogrammed in advance in a lighting means operating device. Then, selectively one of the two imming stages is set as a function of a control signal, which is fed to the lighting means operating device. Both dimming stages in this case indicate a luminous efficiency of more than 0%.
In accordance with yet a further aspect of the present invention, a method for driving electronically controlled lighting means operating devices is provided, in which a motion is detected in a defined area. If a motion is positively detected, starting from a quiescent value, the lighting means operating device is set to a desired operational value, which is different than the quiescent value, the desired operational value indicating a greater luminous efficiency of the connected lighting means in comparison with the quiescent value.
In this case, the desired .operational value can be maintained automatically over a defined period of time before the quiescent value is set again.
The quiescent value and/or the desired operational value can in this case be capable of being adjusted or programmed.
In this case, the quiescent value can be adjusted to a value of raore than 0% luminous efficiency.
The invention also relates to a computer software programming product, which supports a method of the abovement ioned type if it is running on a computing device or if it is implemented by means of hard-wiring.
The invention also relates to an operating means for lighting means which is designed to carry out such a method.
A further aspect of the present invention relates to a lighting means operating device which has a control input. In this case, two different dimming levels are stored in the operating device which .are each greater than 0% and to which a connected lighting means is controlled and/or regulated as a function of a signal applied fco the control input.
In this case, the control input can be designed such that either a digital signal with a first voltage level or a signal originating from a mains voltage with a level which is different than the first voltage level can be applied. The two mentioned types of signal can be evaluated by the operating device and converted for driving a connected lighting means.
The invention also relates to a system for driving electronically controlled lighting means operating devices, the system having a motion sensor, which is connected to a supply voltage, and a lighting means operating device. The lighting means operating device
has a control input, to which an output signal of the motion sensor can be fed. In this case, the lighting means operating device can set a connected lighting means automatically to a higher luminous efficiency in response to a motion detected by the motion sensor.
Yet a further aspect of the present invention relates to a system for driving lighting means which has a motion sensor and a lighting means operating device connected thereto. The lighting means operating device sets a connected lighting means to a desired operational value, which is different than the quiescent value, if a motion is detected in a defined area by the motion sensor. In this case, the desired operational value is higher than a quiescent value.
The lighting means operating device can "in particular be an electronic ballast (EB).
Further advantages, features and properties of the
present invention will now be explained with reference
co the single figure of the drawings attached as an
annex.
Figure 1 shows a first system according to the invention for driving a lighting means, and
Figure 2 shows a further exemplary embodiment, in which a motion sensor communicates with a lighting means operating device via a digital bus.
Figure 1 schematically illustrates a motion sensor 1, which is known in principle, an electronic ballast (EB) 2 and two connected lighting means 4 at the output 3 of the EB. Mention has already been made in the introduction of the fact that the EB 2 only represents one example of an operating device for lighting means
and the present invention can freely be applied to any other desired lighting means and therefore beyond
gas-discharge lamps.
The EB 2 illustrated has three terminals PE, L, N, which can be connected to ground, to the phase and to
the neutral conductor of a voltage supply 5.
Furthermore, the illustrated EB also has an interface having two terminals Dl, D2. This interface Dl, D2, as can already be seen from the brief designation of the terminals, can be designed such that its digital signals are fed, for example, in accordance with the DALI standard in order to transmit commands to the EB 2 or in order to transmit commands at these terminals from the EB 2 to a connected bus, such as the DALI bus, for example, if a bidirectional communication is provided.
Optionally, the terminals Dl, .D2 can ,.therefore also be designed to receive digital commands with subsequent signal processing. In any case, the claims Dl, D2 are designed such that signals can be applied to them which originate from a supply voltage, such as the mains voltage, for example. In the example illustrated, the terminal D2 is connected to the neutral conductor N of the voltage supply 5.
A conventional motion sensor 1 is connected between the other signal control input Dl of the EB 2 and the phase conductor L of the voltage supply 5 (the function of the optional timer 6, which is likewise connected therebetween, will be explained later). The phase L of the supply voltage 5 is therefore fed to this motion sensor 1 on the input side. The output signal of the motion sensor 1, which is therefore fed to the control input Dl of the EB 2, is denoted by L'.
Essentially two different signals can therefore be applied to the control input Dl, namely one for the case in which a motion is detected by the motion sensor 1 and a signal, which is different than this, for the case in which the motion sensor 1 doeX not identify a motion.
In particular, these two signal states, which correspond to the output signal of the motion sensor, can be defined as follows:
When a motion is detecced by the motion sensor 1, it closes the connection between the phase conductor L and the control input Dl, with the result that the signal level of the phase conductor L is applied to the control input Dl. In the EB 2 , a defined dimming level is stored in advance which is set by the EB 2 if the detection of a motion by the motion sensor 1 is reproduced by the phase conductor L being connected to the control input Dl.
On the other hand, if the motion sensor 1 does not identify any motion in the range monitored by it, in accordance with this exemplary embodiment the connection between the control input Dl and the phase conductor L of the voltage supply 5 is isolated, with the result that no voltage is applied to the control input Dl. For this case, which can therefore be interpreted by the EB 2 as no motion having been identified, a second dimming value can be preprogrammed in the EB 2 which will be referred to below as the quiescent value corresponding to a motion not having been identified. This quiescent value may in particular be a lower dimming level in comparison with the desired
/
operational value in the event of ' a motion being
• identified.
Typical applications for such a system for driving lighting means are, for example, stairwells or corridors. Advantageously, in this case no further control units are required in addition Jz'o the lighting means operating device and the motion sensor.
if a motion is identified by the motion sensor 1 and, as a result, for example the mains voltage is applied to the control input Dl of the EB 2, said EB 2 can, for example, get a connected lighting means automatically co 100% luminous efficiency. If, on the other hand, no motion is identified, and thus the" signal '0' is applied to the control input Dl (no voltage), the lighting means can be controlled to a lower value such as, for example, 5% luminous efficiency.
If, therefore, the motion sensor identifies the presence of a person, for example in a stairwell, this stairwell is automatically illuminated,.--with sufficient luminous efficiency, for example 100%.
After a predetermined period of time, which can be programmed or adjusted, for example, in the EB 2 or else corresponds to the (again possibly adjustable) delay time of the motion sensor 1 after identification of a motion, the motion sensor again interrupts the connection to the control phase L. The connected lighting means is therefore set to the quiescent value again, which corresponds to a substantially lower level in comparison with the desired operational value.
As has been stated, both the quiescent value and the desired operational value on detection of a motion can be capable of being adjusted or programmed using the EB
2.
Provision may furthermore be made for a timer 6 to also be connected in series, in addition to the motion sensor, which timer predetermines time spans of use (for example mornings, evenings, dusk, etc.) in which the function of the motion sensor is-7 switched to be active. The timer therefore only connects the control phase L to the motion sensor within the ' time span of use, with the result that the motion sensor can in turn only produce a connection between the control input Dl and the control phase L during the time span of use.
These time spans of use, however, can also be adjusted in the operating device or in the motion sensor itself, for example.
Adjusting the two dimming levels (quiescent value, desired operational value) can take place, for example, via an interface. This can be carried out during operation, during installation, during manufacture etc. The interface can also have a wire-free' design.
The EB can also be designed to automatically identify the connection of a motion sensor. This is advantageous, for example, when the EB is one which has a continuous dimming range or a virtually continuous dimming range of, for example, from 1% to 100%, which automatically switches over to a two dimming level operation when the connection of a motion sensor to the terminals Dl, D2 is identified.
A typical application is therefore the 'identification of people at certain periods of time (during the morning, during the evening) in a stairwell etc.
Figure 2 illustrates the fact that a" motion sensor 1 may also be an element of a digital bus system (for example in accordance with the DALI standard) . In this
case, the motion sensor 7 can transmit the information on the detection of a motion in the form of a digital signal via a bus line 8 to connected operating devices 2, 2'. This information, as provided, for example, in the DALI standard, can be addressed and one or a group of connected operating devices with lighting means 4, 4' respond with the corresponding address.
In addition, the digital controllers (DALI GC, DALI SC) , control elements (DALI touchpanel) and interfaces (DALI SCI) which are conventional in the DALI system can naturally also be connected, for example. Programming of the above-described levels and periods of time can take place, for example, via these interfaces.




1. A method for driving electronically controlled
lighting means operating devices,
the method having the following steps:
evaluating an output signal of a motion sensor, which is connected to a supply voltage and outputs the supply voltage as an output signal as a function of the detection of a motion, and
setting the electronically controlled lighting means operating device to one of a plurality of predetermined dimming levels a-sx a function of an output signal of the motion sensor, it being possible for at least one o-f- the predetermined dimming levels to be programmed.
2. A method for driving electronically controlled
lighting means operating devices,
the method having the following steps:
evaluating an output signal of a motion sensor, which is connected to a supply voltage and outputs the supply voltage as an output signal as a function of the detection of a motion, and
setting the electronically controlled lighting means operating device to one of a plurality of
predetermined dimming levels as a function of an
output signal of the motion xXsensor, the output signal of the motion sensor being detected at a control input of a digital interface of the operating device.
3. The method as claimed in claim 1 or 2,
the output signal of the motion sensor being detected at a control input of the operating device which is provided isolated from the voltage supply of the lighting means operating device.
4. The method as claimed in claim 3,
it being possible for either a digital signal or a signal originating from a supply voltage, in particular a mains voltage, to be, applied to the
* *
control input.
5. A method for driving electronically controlled
lighting means operating devices, having the
following stc,-ps :
advance-programming two different dimming stages in >* lighting means operating device, and
selectively setting one of the two dimming stages arj a function of a control signal, which is fed to the lighting means operating device.
6. A moV'.hod for driving electronically controlled
light.ing means operating devices, having the
following steps-. . detecting a motion in a defined area, and
for the case- of the detection of a motion, starting from a quiescent value, setting the lighting means operating device to a desired operational value, which is different than the quiescent value and indicates a greater luminous efficiency of the connected lighting means in comparison with the quiescent value, it being possible for the quiescent value and/or the desired operational value to be programmed.
-7. The method as claimed in claim 6,
the desired operational value being maintained over a defined period of time before the quiescent value is set again. . . X
8. The method as claimed in claim 7, characterized
in that the defined period of time for maintaining the desired'operational value is capable of being, adjusted or programmed.
9. The method as claimed in one of claims 5 to 8,
it being possible for the quiescent value and/or che desired opi-rut ional vaine t.o be adjusted.
10. The method as claimed in one of. claims 5 to 9,
the quiescent value being adjusted to a value of more than 0% luminous efficiency.
11. The method as claimed in one of the preceding
claims,
characterized
in that an operating device which is capable of setting more than two dimming levels identifies the connection of a motion sensor and converts to operation with only two dimming levels.
12. A computer software programming product,
characterized
in that it: supports a method as claimed in one of the preceding claims if it is running on a computing device of an operating device.
13. An operating means for lighting means,
characterized
in that it is designed to carry out a method as claimed in one of claims 1 ./t.o 11^
14. A lighting means operating device,
having a control input,
two different dimming levels being stored in the operating device which are each greater than 0% and to which a connected lighting .means is controlled and/oi regulated as a function of a
signal applied to the control input, it being possible for at least one of the dimming levels to be programmed.
15. A lighting means operating device,
having a control input,
two different dimming Revels be'ing stored in the operating device which are each greater than 0% and to which a connected lighting means is controlled and/or regulated as a function of a signal applied to the control input, the control input being part of a digital interface.

16. The operating device as claimed-in claim 14 or 15,
characterized
in that it is designed such that either a digital signal with a first voltage level or a signal originating from a mains voltage with a level which is different than the first voltage level can be applied to the control input, and such that the two mentioned types of signal can be converted by the operating device' for driving a connected lighting means.
17. The operating device as claimed in one of claims
14 to 16,
characterized
in that it is an operating device having more than two dimming levels which switches over to operation with two defined dimming levels when a motion sensor is connected.
18. The operating device as claimed in one of claims
14 to 17,
characterized
in that it is designed to maintain the desired operational value over a defined period of time before it sets the quiescent value again.
19. A system for driving electronically controlled lighting means operating devices, having a ighting means operating device asclaimed in one of claims 14 to 18 and a motionsensor, which is connected to-a supply voltage andis connected to a control input of the lighting means operating device' such-that a connected lighting means is set to a higher luminous efficiency in response to a motion detected by themotion sensor.



Documents:

4888-delnp-2007-1-Claims-(10-09-2013).pdf

4888-delnp-2007-1-Correspondence Others-(10-09-2013).pdf

4888-delnp-2007-abstract.pdf

4888-delnp-2007-Claims-(05-09-2014).pdf

4888-delnp-2007-claims.pdf

4888-delnp-2007-Correspondence Others-(04-08-2014).pdf

4888-delnp-2007-Correspondence Others-(05-09-2013).pdf

4888-delnp-2007-Correspondence Others-(05-09-2014).pdf

4888-delnp-2007-Correspondence Others-(10-09-2013).pdf

4888-delnp-2007-Correspondence-Others-(30-08-2013).pdf

4888-delnp-2007-correspondence-others.pdf

4888-delnp-2007-description (complete).pdf

4888-delnp-2007-drawings.pdf

4888-delnp-2007-form-1.pdf

4888-delnp-2007-form-2.pdf

4888-delnp-2007-Form-3-(10-09-2013).pdf

4888-delnp-2007-form-3.pdf

4888-delnp-2007-form-5.pdf

4888-delnp-2007-GPA-(05-09-2014).pdf

4888-delnp-2007-gpa.pdf

4888-delnp-2007-pct-210.pdf

4888-delnp-2007-pct-304.pdf

4888-delnp-2007-Petition-137-(10-09-2013).pdf


Patent Number 262866
Indian Patent Application Number 4888/DELNP/2007
PG Journal Number 39/2014
Publication Date 26-Sep-2014
Grant Date 20-Sep-2014
Date of Filing 25-Jun-2007
Name of Patentee TRIDONICATCO GMBH & CO. KG,
Applicant Address FARBERGASSE 15, A-6851 DORNBIRN, AUSTRIA
Inventors:
# Inventor's Name Inventor's Address
1 JUEN, REINHOLD SANDGASSE 4, A-6850 DORNBIRN, AUSTRIA.
2 MAIER, JOACHIM AM EISWEIHER 2, A-6850 DORNBIRN, AUSTRIA.
PCT International Classification Number HO5B 37/02
PCT International Application Number PCT/EP2006/000144
PCT International Filing date 2006-01-10
PCT Conventions:
# PCT Application Number Date of Convention Priority Country
1 10 2005 008 996.8 2005-02-28 Germany
2 10 2005 002 973.6 2005-01-21 Germany