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Nokia Optical Networking Fundamentals Sample Questions (Q42-Q47):
NEW QUESTION # 42
Is it possible to select the fiber type independently for each segment while designing a network in EPT?
- A. No, a unique type is allowed per design for all segments
- B. Yes, during the segment creation phase or editing
- C. Yes, during the link creation through the wizard
- D. No, as the fiber type is selected for links only and it's one for whole design
Answer: B
Explanation:
Yes, during the segment creation phase or editing. It is possible to select the fiber type independently for each segment while designing a network in EPT. This can be done during the segment creation phase or when editing an existing segment. This allows for more flexibility when designing the network and allows for more efficient use of resources.
NEW QUESTION # 43
How does a Raman pump work in the 1830 specific implementation?
- A. The pump light travels in the opposite direction of the signal to be amplified, amplifying it while it arrives from the adjacent node.
- B. As the incoming signal power increase, the gain of the amplifier is reduced.
- C. The amplification is done simultaneously for all channels as they enter the board.
- D. The pump light travels in the same direction of the signal, amplifying it while it flows in the fiber towards the following node.
Answer: A
Explanation:
In Raman amplification, a pump laser is used to excite the Raman-active molecules in the fiber, which then amplifies the signal light as it travels in the opposite direction. In the 1830 specific implementation, the pump laser is typically a high-power laser that is launched into the fiber in the opposite direction to the signal. The pump light interacts with the Raman-active molecules in the fiber, which then amplifies the signal light as it travels in the opposite direction. This allows the Raman pump to provide a gain that increases with distance, which can be used to compensate for the loss of signal power as it travels through the fiber.
NEW QUESTION # 44
How does a Raman pump work in the 1830 specific implementation?
- A. The pump light travels in the opposite direction of the signal to be amplified, amplifying it while it arrives from the adjacent node.
- B. As the incoming signal power increase, the gain of the amplifier is reduced.
- C. The amplification is done simultaneously for all channels as they enter the board.
- D. The pump light travels in the same direction of the signal, amplifying it while it flows in the fiber towards the following node.
Answer: A
Explanation:
In Raman amplification, a pump laser is used to excite the Raman-active molecules in the fiber, which then amplifies the signal light as it travels in the opposite direction. In the 1830 specific implementation, the pump laser is typically a high-power laser that is launched into the fiber in the opposite direction to the signal. The pump light interacts with the Raman-active molecules in the fiber, which then amplifies the signal light as it travels in the opposite direction. This allows the Raman pump to provide a gain that increases with distance, which can be used to compensate for the loss of signal power as it travels through the fiber.
NEW QUESTION # 45
Which of the following statements about Wavelength Tracker monitoring points in CDC-F architecture is TRUE?
- A. Wavelength Tracker monitoring points are settled on IRDMxx and OTs line interfaces.
- B. Wavelength Tracker monitoring points are settled on IRDMxx line interfaces and on CWR CLS interfaces.
- C. Wavelength Tracker monitoring points are settled on ITL mux interfaces and on OTs line interfaces.
- D. Wavelength Tracker monitoring points are settled on IRDMxx line interfaces only.
Answer: B
Explanation:
Comprehensive and Detailed Explanation From Nokia Optical Networking Fundamentals:
In a CDC-F (Colorless, Directionless, Contentionless, Flex-grid) architecture, the placement of monitoring points is vital for end-to-end visibility of wavelengths. Nokia's Wavelength Tracker technology relies on these points to detect the unique "keys" or signatures associated with each wavelength. In a CDC-F node, the primary monitoring points are located on the IRDMxx (Intelligent Reconfigurable Demultiplexer/Mux) line interfaces and the CWR (Colorless Wavelength Router) CLS (Colorless) interfaces.
The IRDM monitoring points allow the system to verify the power and presence of wavelengths as they enter or leave the fiber spans (degrees). The CWR CLS monitoring points are critical because they provide visibility at the "Colorless" add/drop stage. By having monitoring at both locations, the WaveSuite Network Operations Center (WS-NOC) can pinpoint exactly where a signal loss or power degradation is occurring-whether it's in the external fiber plant or within the internal colorless switching fabric of the ROADM. This granular visibility is what allows Nokia's "Power Management" to automate balancing across complex mesh topologies.
NEW QUESTION # 46
Where can the user set the long-haul WT decoder parameter, when designing a network with EPT?
- A. In the audit menu
- B. In the optimization parameters
- C. In the network parameters
- D. In the NE parameters
Answer: D
Explanation:
The long-haul WT decoder parameter can be set in the NE parameters when designing a network with EPT. This parameter is used to adjust the sensitivity of the decoder and can help to improve the accuracy of the measurements for long-haul WTs.
The Network Element (NE) parameters in EPT (Element Planning Tool) are used to configure various settings and options for the network elements in the network. The long-haul WT decoder parameter is one such setting that can be configured in the NE parameters section. The user can access the NE parameters by navigating to the NE Parameters menu within the EPT interface. The user can then select the appropriate network element and modify the settings as needed. This information can be found in the Nokia guide for EPT.
NEW QUESTION # 47
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