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You can’t optimize NTN the same way you optimize a terrestrial network. In NTN, KPI shifts
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You can’t optimize NTN the same way you optimize a terrestrial network.
In NTN, KPI shifts often come from satellite-dependent conditions—not just the device or the network. That’s why our XCAP’s new NTN Visualization feature brings satellite geometry and visibility into the analysis, and visualizes your measurement results on a 3D map.
With XCAP NTN Visualization, you can interpret results with the “above-the-sky” context, including:
▶️ TLE-based orbit visualization
▶️Coverage footprint and visibility context
▶️Serving-satellite line at the time of measurement
▶️Satellite-aware indicators such as Doppler, elevation/azimuth, slant range, and AOS/LOS
🔗 If you’d like to see the 3D view in action, contact us for a demo.
https://lnkd.in/gQVeghjg
#NTN #Satellite #5G #NetworkAnalytics #Visualization #TelecomTesting #TLE #RootCauseAnalysis #XCAP #Accuver #XCAP #Postprocessing
In NTN, KPI shifts often come from satellite-dependent conditions—not just the device or the network. That’s why our XCAP’s new NTN Visualization feature brings satellite geometry and visibility into the analysis, and visualizes your measurement results on a 3D map.
With XCAP NTN Visualization, you can interpret results with the “above-the-sky” context, including:
▶️ TLE-based orbit visualization
▶️Coverage footprint and visibility context
▶️Serving-satellite line at the time of measurement
▶️Satellite-aware indicators such as Doppler, elevation/azimuth, slant range, and AOS/LOS
🔗 If you’d like to see the 3D view in action, contact us for a demo.
https://lnkd.in/gQVeghjg
#NTN #Satellite #5G #NetworkAnalytics #Visualization #TelecomTesting #TLE #RootCauseAnalysis #XCAP #Accuver #XCAP #Postprocessing