[Documentation Research Center-4] Be the Designer of the Next-generation Information Tool-The activity is ended, congratulations to the winners!
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Task1: Product type-->product NE NAME-->Version-->>Config mngt-->impact--> troubleshooting guideline |
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Task:2 Network Mode--> roduct-->Solution Version--> roduct Version-->Basic Features-->Optional Features-->Multi-mode features(New features, Modified features and Deleted features)--Main contents of Impact Report-->Impacts of version-level changes on the network--> Impact of a new feature on the network-->Impact of changes in an enhanced feature on the network Task:1 Network Mode--> roduct-->Solution Version--> roduct Version-->Feature ID -->Feature Name-->License Control Item ID--> License Control Item Name-->Supported NE Type. |
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Task 2: (Scenario 1/Personal Experience): We have a networked OSN 8800 (T16 & T32), for 100G wavelengths, specifically, we have a Link A, having distance 125km, where RAU boards installed. One day, OA_LOW_GAIN alarm was reported at Line Port (RAU) of Site B, although the alarm was not service-affective, then I executed following steps on the support website to get the required solution: Prologue: I had a complete information of available tools on the support website. Step 1 : I chose Info-Finder tool from the support website. Step 2 : Clicked 'Alarm' tab. Step 3 : Then Product Name (OSN 8800 T16), Version (any) and Keyword (OA_LOW_GAIN). Step 4 : Although, it showed all the results to resolve the OA_LOW_GAIN alarm on the OAU, but i need to clear the alarm on the RAU board of the OSN 8800 T16. Step 5 : Then, I put a keyword, "OA_LOW_GAIN RAU", still i didnt get satisfactory information to rectify the alarm. Step 6 : Then I send an Email to my Local Huawei representative, asking for rectification steps for OA_LOW_GAIN alarm on the RAU. Step 7 : Response i got: "Please check Line Fiber Quality via Fiber Doctor on the U2000, and check for any high-loss within the span of 30km from the Origin/Site B". Step 8 : I checked and analyzed, the 30km span via Fiber Doctor, and there appeared an event having 1.2db loss, at 16km from the Origin/Site B. Upon rectification of the 1.2db high loss on the line fiber, the OA_LOW_GAIN alarm cleared. |
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Task 1: Aggregate all information tools on the task basis is Good option, will provide ease to each user.. Task 2: just open up Hedex and search what ever is needed. |
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Task 2: (Scenario 2): When new 100G network was deployed, i needed to learn new features and architectures of all the installed boards. Prologue: I had a complete information of available tools on the support website. Step 1 : I choose Info-Finder tool from the support website. Step 2 : Clicked 'Board' tab. Step 3 : Then Product Name OSN 8800 Step 4 : Then "Board Type", Optical transponder Unit, OTN Line board, etc Step 5 : Then, "Board Name", WSMD4, WSMD9, NS4, etc Conclusion: It gave me all the required information to learn details of these boards, thus helping me to learn different features, architecture and different scenarios |
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Task 1 Yes, I am agreed to aggregate all these useful informative tools can be combined on a single page and I would also recommend to add each useful tool with its working principle/ troubleshooting scenarios. So the users will get information about running/operating these tools easily on the task basis. |
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Task 1 Yes, I am agreed to aggregate all these useful informative tools can be combined on a single page and I would also recommend to add each useful tool with its working principle/ troubleshooting scenarios. So the users will get information about running/operating these tools easily on the task basis. |
sorry, the same with before...
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Task 2 (Scenario 1/Personal Experience): In OSN7500 SDH node, HSC_UNAVAIL alarm was reported on standby cross connect board As this alarm was not a service affecting, then I execute following steps to resolve this issue. Huawei Tools are very useful to provide every required info regarding on site technical issues. Step 1 : I selected Info finder tool from Online Tools on support website. Step 2 : I clicked on Alarm tab. Step 3 : Selected Product Name (OSN7500), typed keyword (HSC_UNAVAIL) and selected Severity of the alarm reported. Step 4 : Followed the results displayed to resolve the HSC_UNAVAIL alarm on standby cross connect board ( EXCSA ). Solution provided by Huawei info finder Tool : The BD_STATUS is an alarm indicating that the physical board is not inserted into the relevant slot. This alarm occurs when the user adds a board on the NMS, but the physical board is not inserted into the relevant slot. |
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Task 2 (Scenario 2): OSN8800 is deployed to provide LTE services in the region, When I wanted to learn about its board hardware information with features. Then I looked into Huawei Online Tools to check the required data. Here is the way to find info for the specific hardware boards of OSN8800. Step 1: I selected Transport Product information tool from online tools on support website. Step 2 : I clicked on Board in Hardware tab. Step 3 : Selected Product Name (OSN8800). Step 4 : selected “ Universal Line Board” in Board type. Step 5: Board name “ HUNQ2 “ will be selected to get the information about board’s description, Functions and Features, working principle and signal flow etc. Conclusion: Proactively. This Tool can provide all the required knowledge to learn about Transport Products Information. |
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T1: it is nice to aggregate all information tools on one web page or app but i think it would be better to be on the node type basis instead of the task basis |
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roduct-->Solution Version-->
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