IP Library Granted Patent US 9,432,123
Granted Patent B2
US 9,432,123 · App. 14/179,447 · Granted Aug 30, 2016

Adaptive mach zehnder modulator linearization

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Quick Facts
Patent No.
US 9,432,123
App. No.
14/179,447
Granted
Aug 30, 2016
Kind
B2
Abstract

The present invention is directed to optical communication systems and methods thereof. In various embodiments, the present invention provides method for linearizing Mach Zehnder modulators by digital pre-compensation and adjusting the gain of the driver and/or the modulation index. The pre-compensation can be implemented as a digital pre-compensation algorithm, which is a part of an adaptive feedback loop. There are other embodiments as well.

Claims (39)

1. A modulation system comprising:

a nonlinear mapping module being configured to perform a mapping process to generate a voltage signal using a modulation signal and a first modulation index using an inverse transformation function;

a DAC module being configured to convert the voltage signal to an analog signal;

a driver module being configured to generate a driving signal using the analog signal and a gain value, the driver module further being configured to adjust the gain value in response to a compensation signal;

a peak detection module in a transmitter being configured to determine a peak value associated with the driving signal;

an MZ modulator being configured to generate an output signal using at least the driving signal, the output signal being associated a half wave voltage value; and

a compensation module being configured to generate the compensation signal using at least the first modulation index and the second module index, the second modulation index being a function of the peak value and the half wave voltage value.

2. The system of claim 1 wherein the MZ modulator receives a biased signal characterized by an amplitude value, the half wave voltage value being determined based on the amplitude value and measured harmonics of the output signal.

3. The system of claim 1 wherein the second modulation index is determined by computing a ratio between the peak value and the half wave voltage value.

4. The system of claim 1 further comprising a linear equation module for processing the voltage signal.

5. The system of claim 1 wherein the MZ modulator is biased by a reference voltage.

6. The system of claim 1 wherein the MZ modulator is electrically coupled to a photo diode.

7. The system of claim 1 further comprising a DC source for biasing the MZ modulator.

8. A modulation system comprising:

a nonlinear mapping module being configured to perform a mapping process to generate a voltage signal using a modulation signal and an adjustable modulation index value using an inverse transformation function;

a DAC module being configured to convert the voltage signal to an analog signal;

a driver module being configured to generate a driving signal using the analog signal and a gain value;

a peak detection module in a transmitter being configured to determine a peak value associated with the driving signal;

an MZ modulator being configured to generate an output signal using at least the driving signal, the output signal being associated a half wave voltage value; and

a compensation module being configured to determine the adjustable modulation index value based on the peak value and the half wave voltage value.

9. The system of claim 8 wherein the MZ modulator receives a biased signal characterized by an amplitude value, the half wave voltage value being determined based on the amplitude value and measured harmonics of the output signal.

10. The system of claim 8 further comprising a linear equation module for processing the voltage signal; the linear equation module being configured to provide a signal compensation based at least on the modulation index value.

11. The system of claim 8 wherein the gain value is substantially constant.

12. The system of claim 8 wherein the modulator comprises a photo diode.

13. The system of claim 8 wherein the half wave voltage value is determined based on the amplitude value and measured harmonics of the output signal.

14. The system of claim 8 half wave voltage value is based at least on a measured power in 4th harmonic and 2nd harmonic.

15. A method for modulating signals comprising:

performing nonlinear mapping a modulation signal using a first modulation index to generate a voltage signal using an inverse transformation function;

processing the voltage signal using a linear equation;

converting the processed voltage signal to an analog signal;

processing the analog signal at a gain value to generate a driving signal;

measuring a peak voltage of the driving signal in a transmitter;

performing MZ modulation on the driving signal to generate an output signal;

determining a second modulation index based at least on the driving signal and the first modulation index; and

adjusting the gain value using the second modulation index.

16. The method of claim 15 further comprising measuring harmonics using the output signal.

17. The method of claim 15 further comprising determining a ratio between the peak value and a half wave voltage value.

18. The method of claim 15 further comprising amplifying the analog signal.

19. The method of claim 15 further comprising measuring a bias amplitude associated with an MZ modulator.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2021
From: CAVIUM INTERNATIONAL
To: MARVELL ASIA PTE LTD.
Reel/Frame 057336/0873 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2021
From: MARVELL TECHNOLOGY CAYMAN I
To: CAVIUM INTERNATIONAL
Reel/Frame 057279/0519 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2021
From: INPHI CORPORATION
To: MARVELL TECHNOLOGY CAYMAN I
Reel/Frame 056649/0823 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2014
From: SHANKAR, HARI
To: INPHI CORPORATION
Reel/Frame 032286/0017 →