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  • The 16QAM Modem Simulator is a C++-based software application designed to simulate and analyze a 16-QAM digital communication system. It demonstrates the complete modulation and demodulation process, including symbol mapping, signal generation, transmission, and data recovery. The simulator helps users understand key concepts of digital communication and evaluate system performance under different channel conditions.

    Original price was: ₹750.00.Current price is: ₹250.00.
  • The 2G GSM Cell Simulator is a Python-based software project designed to simulate fundamental GSM cellular-network concepts. It provides a practical environment for understanding mobile stations, GSM cells, base stations, cellular coverage, mobility, communication channels, and basic network behavior. The project includes Python source code that can be studied, customized, and extended for academic projects, demonstrations, research, and learning. It is ideal for Electronics & Communication Engineering, Telecommunications, Computer Science, and related students looking to explore 2G GSM technology and cellular network simulation through a software-based implementation.

    Original price was: ₹750.00.Current price is: ₹250.00.
  • The 3G UMTS – WCDMA Simulator is a software-based simulation project designed to demonstrate the fundamental concepts of 3G Universal Mobile Telecommunications System (UMTS) and Wideband Code Division Multiple Access (WCDMA) technology. It provides a practical environment for studying cellular communication, spreading codes, signal transmission, mobile users, network connectivity, and WCDMA-based communication principles. The simulator is suitable for students, researchers, and developers working on telecommunications and wireless communication projects. It can be used for academic demonstrations, engineering projects, research, experimentation, and learning about 3G mobile communication and WCDMA network technologies.

    Original price was: ₹750.00.Current price is: ₹250.00.
  • A powerful simulation tool for analyzing and validating 3GPP mobile mobility and handover procedures. The simulator enables users to model mobile network scenarios, study handover behavior, and evaluate mobility performance under different network conditions.

    Key Features:

    • 3GPP-compliant mobility and handover simulation
    • Configurable network and mobility scenarios
    • Analysis of handover performance and behavior
    • Supports research, testing, and network optimization
    • Useful for telecom engineers, researchers, and academic projects

    Ideal for 5G/4G/3G mobility research, protocol testing, network planning, and academic simulation studies.

    Original price was: ₹750.00.Current price is: ₹250.00.
  • A Python-based 5G Core Network Simulator designed for studying, analyzing, and demonstrating 5G Core network architecture and procedures. Explore key 5G Network Functions such as AMF, SMF, UPF, AUSF, UDM, PCF, NRF, and NSSF, along with UE registration, authentication, session management, mobility, and signaling procedures.

    Ideal for 5G research, telecom engineering, academic projects, university laboratories, protocol development, and network simulation. Provides a flexible software environment for experimenting with 5G Core concepts without requiring a complete commercial 5G network infrastructure.

    Original price was: ₹750.00.Current price is: ₹250.00.
  • 5G Digital Twin

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    A Python-based 5G Digital Twin solution for creating a virtual representation of 5G network environments, components, and operational behavior. Designed for 5G research, network analysis, simulation, optimization, and academic projects, it enables users to model network scenarios, monitor virtualized network behavior, and experiment with different configurations in a controlled software environment.

    Ideal for telecom engineers, researchers, developers, students, and academic institutions working on 5G network planning, performance analysis, intelligent network management, and digital twin research.

    Original price was: ₹750.00.Current price is: ₹250.00.
  • A Python-based 5G Network Slicing and Resource Isolation Simulator designed to model and analyze how multiple logical network slices can share physical 5G infrastructure while maintaining resource isolation. The simulator enables users to study CPU, memory, bandwidth, network capacity, traffic allocation, and resource management across different 5G network slices.

    Ideal for 5G research, telecom engineering, academic projects, network optimization, resource allocation studies, and university laboratories.

    Original price was: ₹750.00.Current price is: ₹250.00.
  • 5G NR Beam Management Simulator is an advanced simulation solution designed to model, analyze, and optimize beam management procedures in 5G New Radio (NR) networks. It enables engineers and researchers to evaluate beam sweeping, beam measurement, beam selection, beam reporting, and beam recovery under diverse network and channel conditions. The simulator supports performance analysis of directional communication, helping users assess beamforming strategies, mobility scenarios, link reliability, and system-level performance before real-world deployment.

    Original price was: ₹750.00.Current price is: ₹250.00.
  • 5G NR HARQ Simulator

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    5G NR HARQ Simulator is an advanced simulation solution for modeling and analyzing Hybrid Automatic Repeat Request (HARQ) mechanisms in 5G New Radio networks. It enables users to study HARQ processes, ACK/NACK feedback, retransmissions, link adaptation, channel errors, and communication reliability under configurable network conditions. The simulator supports analysis of throughput, BLER, latency, retransmission rate, packet errors, spectral efficiency, and other key performance metrics, making it suitable for 5G NR research, algorithm development, academic projects, and wireless communication system optimization.

    Original price was: ₹750.00.Current price is: ₹250.00.
  • 5G NR LDPC Simulator

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    5G NR LDPC Simulator is an advanced simulation solution for modeling and analyzing Low-Density Parity-Check (LDPC) channel coding used in 5G New Radio systems. It enables users to simulate LDPC encoding and decoding, evaluate error correction performance, and analyze BER, BLER, SNR, coding rate, decoding iterations, throughput, and convergence under configurable channel conditions. The simulator is ideal for 5G NR channel coding research, algorithm development, academic projects, decoder performance analysis, and next-generation wireless communication system optimization.

    Original price was: ₹750.00.Current price is: ₹250.00.
  • 5G NR MAC Resource Scheduler Simulator is an advanced simulation solution for modeling and analyzing Medium Access Control (MAC) layer resource scheduling in 5G New Radio networks. It enables users to evaluate dynamic resource allocation, multi-UE scheduling, uplink and downlink resource management, QoS-aware scheduling, traffic conditions, and scheduling algorithms. The simulator supports analysis of throughput, latency, fairness, spectral efficiency, resource utilization, packet loss, and QoS performance, making it ideal for 5G NR research, scheduler algorithm development, academic projects, and wireless network optimization.

    Original price was: ₹750.00.Current price is: ₹250.00.
  • 5G NR Massive MIMO Simulator is an advanced simulation solution for modeling and analyzing Massive Multiple-Input Multiple-Output (MIMO) technologies in 5G New Radio networks. It enables users to study large-scale antenna arrays, beamforming, precoding, spatial multiplexing, multi-user MIMO, channel estimation, and interference under configurable channel conditions. The simulator supports analysis of throughput, spectral efficiency, SINR, BER, BLER, MIMO capacity, beamforming gain, and multi-user performance, making it ideal for 5G NR research, algorithm development, academic projects, and 5G/6G wireless system optimization.

    Original price was: ₹750.00.Current price is: ₹250.00.
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