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5G-Native Performance Analysis
Optimizing the Radio Access Network and 5G Core requires deep understanding of 3GPP standards. From Link Budget path loss to 5G Core Service-Based Architecture (SBA) scaling, these tools bridge the gap between theory and operational reality.
Use this hub for 5G NR peak throughput (TS 38.306), FR1/FR2 link budgets, PRACH planning, spectrum (ARFCN/GSCN/PRB), EN-DC aggregation, X2/Xn transport, and 5GC AMF/SMF/UPF dimensioning. Treat calculator peaks as engineering upper bounds, then apply cell load and contention factors for transport BOMs.
Estimate peak 5G NR user data rates and spectral efficiency based on 3GPP TS 38.306 standards.
Calculate Dual-stack 5G NSA Option 3X aggregated throughput for LTE MCG + 5G NR SCG.
Dimension user plane and control plane bandwidth for 4G/5G X2 and Xn handovers.
Calculate Maximum Allowable Path Loss and cell radius for Sub-6GHz and mmWave.
Dimension scaling for AMF, SMF, and UPF nodes in 5G Service-Based Architecture (SBA).
Estimate resource isolation for different SST profiles.
Map frequency bandwidth to NR Physical Resource Blocks (PRB).
Derive Zadoff-Chu sequences, N_cs, and required roots based on cell radius.
Analyze sample rates and tuning ranges for SDR hardware.
Estimate Peak-to-Average Power Ratio (PAPR) for 5G modulations and waveforms.
Estimate SNR improvement and spatial diversity gains for Massive MIMO systems.
Calculate Synchronization Raster (GSCN) and SSB center frequencies based on 3GPP TS 38.104.
Convert between NR-ARFCN and absolute frequency (MHz) based on 3GPP TS 38.101.
Analyze TDD Slot Format patterns and calculate DL/UL resource distribution.
Estimate 5G NR air interface latency components based on SCS and UE capabilities.
Calculate minimum guard bands and maximum resource utilization for NR channel bandwidths.