LTTS_Week4

LTTS_Week4

The number of attempts remaining is 1

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1. A team observes that a UE's QoS Flow is established, but packets never appear on the intended DRB. Which mapping boundary should be investigated particularly carefully?

2 / 30

2. Why are N3 and F1-U not interchangeable even though both commonly use GTP-U over UDP/IP?

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3. A 5G UE has completed authentication, but the CU-CP has not successfully established the required DU UE context through F1AP. Which statement is most accurate?

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4. Which statement best distinguishes a 5G logical channel, transport channel, and physical channel?

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5. A SIMD LDPC decoder passes static bit-exact tests but shows a BLER spike only at 256-QAM. Low-MCS RFsim works, while 256-QAM RFsim reproduces the fault. What is the strongest inference?

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6. An LTE eNB's MAC scheduler continues issuing grants, but UE uplink CRC indications never arrive from PHY. Which interpretation is most defensible?

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7. A distributed LTE implementation suffers intermittent service loss whenever fronthaul latency increases. Why can this happen even though LTE itself does not mandate a CU/DU architecture?

8 / 30

8. In LTE downlink user-plane processing, a packet arrives from the EPC through S1-U. Which sequence correctly represents its radio-side processing?

9 / 30

9. An LTE scheduler operates every 1 ms. A developer concludes that every LTE protocol layer must therefore execute exactly once every 1 ms. Why is this conclusion incorrect?

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10. A developer claims that because an OAI CU-UP process is running, the CU-UP can independently create all bearer contexts without CU-CP coordination. Which statement best corrects this claim?

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11. An OAI deployment is upgraded by changing the RAN tag but retaining an older RIC and Core version. The RAN starts, but E2 service-model interactions fail. Which architectural lesson best explains the problem?

12 / 30

12. In a 5G deployment, NAS authentication succeeds, but the engineer says the gNB must have decrypted and interpreted the NAS security state. What is the correct response?

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13. A developer claims that LTE user-plane PDCP and control-plane PDCP must have identical security behavior. Which statement identifies the flaw?

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14. Why can a fixed LLR saturation clip remain invisible during low-MCS testing but become harmful at 256-QAM?

15 / 30

15. In an integrated LTE eNB, which change would represent a deployment change rather than a change to the LTE protocol architecture?

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16. An OAI-based RAN shows healthy RF synchronization, but no UE can complete registration. Logs show the radio stack running normally, while the AMF connection is absent. Which conclusion is most appropriate?

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17. Which mapping correctly separates the 5G protocol responsibilities?

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18. A PHY troubleshooting team finds healthy timing/RF, then reproduces a failure using 256-QAM with RFsim, and finally discovers an optimized decoder differs from the reference implementation. Which validation strategy provides the strongest regression protection?

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19. A CU-CP successfully completes E1AP bearer setup, but the CU-UP retains stale bearer state after a scaling/rebalance event. What symptom is most consistent with this situation?

20 / 30

20. Which sequence best represents the conceptual 5G user-plane path for downlink traffic in a disaggregated gNB?

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21. An LTE engineer places the MME and S-GW inside the eNB because both appear adjacent to the eNB in an architecture diagram. Why is this interpretation incorrect?

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22. Two OAI deployments use the same nr-softmodem executable name, but one behaves as a CU-related process and another as an integrated RAN process. What is the most technically correct explanation?

23 / 30

23. A UE completes RRCReconfiguration successfully, but the newly created DRB carries zero packets. Which conclusion is strongest?

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24. An LTE cell broadcasts correctly, UEs establish RRC connections, but no UE can complete core registration. Which observation most strongly prevents the engineer from blaming PHY?

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25. A PHY decoder reports incorrect CRC results even though the received RF signal has high SNR. Which software-level issue becomes particularly suspicious?

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26. An LTE UE has excellent RF quality and successfully establishes RRC, but attachment fails because the eNB cannot establish its signaling association with the MME. Which layer/interface should be investigated first?

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27. MAC provides a PHY with a PDSCH transmission request containing resource allocation, MCS, and HARQ information. What does this interaction fundamentally represent?

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28. An engineer modifies a feature in an OAI RAN repository but discovers that the required functionality actually belongs to a sibling OAI project. What does this primarily demonstrate?

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29. Which statement correctly distinguishes LTE architecture from a 5G CU/DU architecture?

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30. Which component is primarily responsible for translating higher-level control decisions into RRC, F1AP, and E1AP configurations?

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