摘要:
A wavelength alignment method includes: emitting a first optical signal by using a laser; filtering the first optical signal by using a filter, and then transmitting a second optical signal; monitoring an extinction ratio of the second optical signal and an optical power of the second optical signal; and adjusting a working temperature of the laser and/or a working temperature of the filter to a target working temperature when the extinction ratio of the second optical signal exceeds an upper limit of a first extinction ratio threshold range and the optical power of the second optical signal exceeds a lower limit of a first optical power threshold range or when the extinction ratio of the second optical signal exceeds a lower limit of a first extinction ratio threshold range and the optical power of the second optical signal exceeds an upper limit of a first optical power threshold range, so that wavelength alignment of the filter and the laser is implemented. Correspondingly, embodiments of the present invention further provide a wavelength alignment apparatus, an optical transmitter and an optical network system.
摘要:
Embodiments of the present invention provide a method, an apparatus, and a system for processing an optical network signal. The method includes: receiving an optical signal sent by an optical line terminal, where the optical signal includes two polarization components perpendicular to each other, and downlink data is modulated on one of the polarization components; dividing the optical signal into two signals, where each signal is the optical signal; demodulating the downlink data from one optical signal and performing, for the other optical signal, vertical polarization rotation processing and processing of modulating uplink data onto two polarization components of the optical signal; sending the other optical signal on which the vertical polarization rotation processing and the uplink data modulation processing are performed to the optical line terminal, so that the optical line terminal demodulates the uplink data from the received optical signal. With the embodiments of the present invention, signal processing load of the optical network unit and the optical line terminal can be lowered, and hardware costs can be reduced.
摘要:
A material for blocking crosstalk, an optical assembly, and a method for preparing the material are provided. The material includes: a first layer of film (201), a substrate (202), and a second layer of film (203), where the first layer of film (201) and the second layer of film (203) are respectively plated on two sides of the substrate (202), the first layer of film (201) is non-hollowed-out, and alternately arranged grids and grid lines are disposed on a surface of the first layer of film (201). The optical assembly includes an optical receive assembly (901), where a periphery of the optical receive assembly (901) includes a transparent region (902) and a non-transparent region (903); the transparent region is made of the material, where a first layer of film (902a) is located on a side opposite to an optical receiving direction, and a second layer of film (902c) is located on a side opposite to the optical receive assembly (901); and the non-transparent region (903) is of an electrical-signal shielding structure. By using the foregoing material and optical assembly, it can be ensured that light and electricity are completely isolated, no electromagnetic leakage exists, and a better shielding effect is achieved, thereby improving receiving sensitivity and receive power.
摘要:
Embodiments of the present invention disclose an optical signal monitoring and control method, including: receiving a first optical signal, performing optical-to-electrical conversion on the first optical signal, and outputting a converted first electrical signal; monitoring the first electrical signal, and acquiring a monitored power of the first electrical signal; adjusting the monitored power of the first electrical signal according to a target monitored power of the first electrical signal, and outputting a second electrical signal, so that a monitored power of the second electrical signal is the target monitored power; and performing optical-to-electrical conversion on the second electrical signal according to a correspondence between the target monitored power of the first electrical signal and a target extinction ratio of the first optical signal, and outputting a converted second optical signal, where the second optical signal is an optical signal that has a target extinction ratio. Correspondingly, the embodiments of the present invention further disclose a related apparatus and system. The embodiments of the present invention can implement precise control on an extinction ratio of an optical signal.