Claims
- 1. Method for controlling the operational performance of at least one gas discharge lamp wherein a manipulated-variable value for at least one specific controlled variable is generated with the aid of a controller as a function of a differential value between a predetermined desired value and an actual value of a specific operating parameter of the at least one gas discharge lamp, for the purpose of controlling the brightness of the at least one gas discharge lamp, and wherein the controller has a proportional component or amplification factor, said method comprising the steps of:feeding the desired value directly to the controller; and setting the value of the proportional component or the amplification factor of the controller as a function of the desired value in such a way that the proportional component or amplification factor of the controller is reduced for desired values which correspond to comparatively high brightness values and is increased for desired values which correspond to comparatively low brightness values.
- 2. Method according to claim 1, wherein:the setting of the proportional component or the amplification factor of the controller as a function of the desired value is effected in a linear manner or in steps.
- 3. In combination with an electronic ballast for operating at least one gas discharge lamp;a controller device which, as a function of a differential value between a predeterminable desired value and an actual value of an operating parameter of the at least one gas discharge lamp, generates a manipulated-variable value for at least one specific controlled variable for the purpose of controlling the brightness of the at least one gas discharge lamp, said controller device having a proportional component or amplification factor; and a controlled system which has a series-resonant circuit connecting the at least one gas discharge lamp thereto; said controller device being arranged to receive the desired value directly; said electronic ballast including a setting means for setting the proportional component or the amplification factor of the controller device as a function of the desired value (SOLL) in such a way that the proportional component or amplification factor of the controller is reduced for desired values which correspond to comparatively high brightness values and is increased for desired values which correspond to comparatively low brightness values.
- 4. A combination according to claim 3, wherein:the controller device includes the setting means.
- 5. A combination according to claim 3, further including:an actual-value acquisition device which is connected and arranged to ascertain the actual value of the brightness of the at least one gas discharge lamp by determining the lamp current or a variable corresponding to the lamp current.
- 6. A combination according to claim 3, wherein:the setting means is constructed to set the proportional component or amplification factor of the controller device as a function of the predeterminable desired value in a linear manner.
- 7. A combination according to claim 3, wherein:the setting means is constructed to set the proportional component or amplification factor of the controller device as a function of the predeterminable desired value in steps.
- 8. A combination according to claim 3, wherein:the controller device has the control response of a PI or PID controller.
- 9. A combination according to claim 3, wherein:the controller device comprises a first control unit constructed to be controlled by software, and a second control unit connected thereto and constructed exclusively in terms of hardware, said first control unit being arranged to receive external control information, and said second control unit is arranged to receive internal operating-status information.
- 10. A combination according to claim 9, wherein:said first control unit is constructed and arranged to receive the desired value and the second control unit is constructed and arranged to receive the actual value; wherein the first control unit includes the setting means; wherein the first control unit is connected to the second control unit by way of a bidirectional connecting line, wherein the first control unit is constructed and arranged to determine the manipulated-variable value information, which corresponds to the manipulated-variable value, as a function of the external control information fed to it with the desired value and the internal operating-status information received from the second control unit by way of the connecting line with the actual value; and wherein the first control unit is constructed to transmit this information to the second control unit which, as a function of this manipulated-variable value information, generates a manipulated-variable value signal for the controlled variable.
- 11. A combination according to claim 9, wherein:the first control unit is a programmable microprocessor and the second control unit is an application-specific integrated circuit.
- 12. A combination according to claim 3, wherein:the controlled variable relates to the frequency or the pulse duty factor of an alternating operating voltage applied to the series-resonant circuit.
Priority Claims (1)
Number |
Date |
Country |
Kind |
197 08 783 |
Mar 1997 |
DE |
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CROSS REFERENCE TO RELATED APPLICATIONS
This is a continuation of co-pending International Application No. PCT/EP98/00773, filed Feb. 11, 1998.
US Referenced Citations (8)
Foreign Referenced Citations (5)
Number |
Date |
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4018127A1 |
Dec 1991 |
DE |
4412510A1 |
Oct 1994 |
DE |
0605052A1 |
Jul 1994 |
EP |
0774885A1 |
May 1997 |
EP |
0796036A2 |
Sep 1997 |
EP |
Continuations (1)
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Number |
Date |
Country |
Parent |
PCT/EP98/00773 |
Feb 1998 |
US |
Child |
09/387847 |
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US |