EP1161007A2

System and method for optical heterodyne detection of an optical signal

Abstract

An optical heterodyne detection system includes an optical pre-selector (214; 814) that has an adjustable passband which is adjusted to track the wavelength of a swept local oscillator signal. In an embodiment, an input signal (202) is combined with a swept local oscillator signal (206) and the combined optical signal is filtered by the optical pre-selector (214). In another embodiment, the input signal (802) is filtered by the optical pre-selector (814) before the input signal and the swept local oscillator signal (806) are combined. Filtering the input signal or the combined input signal and the swept local oscillator signal to pass a wavelength band that tracks the wavelength of the swept local oscillator signal reduces the noise contributed from WDM signals and increases the dynamic range of the optical heterodyne detection system. An embodiment of the optical heterodyne detection system includes an optical combining unit (210), an optical pre-selector (214) for the combined input and swept local oscillator signals, and a photodetector (212). Another embodiment of the optical heterodyne detection system includes an optical pre-selector (814) for the input signal, an optical combining unit (810), and a photodetector (812).

EP1161007A2, drawing sheet 1
Sheet 1 of 8

Term

Term ended

Projected expiry passed 19 March 2021, 5.5 years ago.

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10 claims: 6 independent, 4 dependent

  1. 1
    A system for optical heterodyne detection comprising:a first optical path (204;804) for carrying an input signal;a second optical path (208;808) for carrying a swept local oscillator signal;optical combining means (210;810) for combining said input signal and said swept local oscillator signal into a combined optical signal;a third optical path (218;818) for carrying said combined optical signal;a photodetector (212;812) optically arranged to receive said combined optical signal from said third optical path, said photodetector generating an electrical signal in response to said combined optical signal;and an optical pre-selector (214;814) optically arranged to filter an optical signal within one of said first, second, and third optical paths, said optical pre-selector having a passband that tracks the wavelength of said swept local oscillator signal, said optical pre-selector outputting a filtered portion of said optical signal.
  2. 4
    The system of one of the preceding claims further including an attenuator (620;920) connected to attenuate said input signal before said input signal is combined with said swept local oscillator signal.
  3. 5
    The system of one of the preceding claims further including a processor (216;816) for determining an optical characteristic represented by said input signal in response to said electrical signal.
  4. 6
    A method for monitoring an optical signal utilizing optical heterodyne detection, the method comprising:combining (1102) an input signal with a swept local oscillator signal to generate a combined optical signal;outputting (1104) said combined optical signal;generating (1106) an electrical signal in response to said combined optical signal;processing (1108) said electrical signal to determine an optical characteristic represented by said input signal;and filtering (1110) one of said combined optical signal, said input signal, and said swept local oscillator signal to pass a wavelength band that tracks the wavelength of said swept local oscillator signal.
  5. 9
    The method of one of claims 6 to 8 further including a step of adjusting said filtering (1110) in real-time to track the wavelength change of said swept local oscillator signal.
  6. 10
    The method of one of claims 6 to 9 further including the steps of:blocking transmission of said input signal before said input signal is combined (1102) with said swept local oscillator signal;and calibrating electrical signals that are generated (1106) in response to said swept local oscillator signal.