ISAC Simulator – 6G Communication Module
Original price was: ₹750.00.₹250.00Current price is: ₹250.00.
In StockISAC Simulator – 6G Communication Module (ITU-R M.2160 Compliant) is an advanced simulation solution for 6G wireless communication and Integrated Sensing and Communication (ISAC) research. Designed for researchers, universities, engineers, and R&D teams, it supports simulation and analysis of emerging IMT-2030/6G communication and sensing technologies with Python-oriented research workflows. Ideal for academic projects, thesis work, algorithm development, wireless research, performance evaluation, and next-generation network experimentation.
Description
ISAC Simulator – 6G Communication Module
The ISAC Simulator – 6G Communication Module is an advanced simulation solution designed for researchers, engineers, academics, and wireless communication professionals working on next-generation 6G networks. Based on the principles of Integrated Sensing and Communication (ISAC), this module provides a powerful environment for studying how communication and sensing capabilities can be integrated into a unified 6G wireless system.
Designed with alignment to the ITU-R M.2160 framework for IMT-2030, the 6G Communication Module can support research, algorithm development, performance evaluation, and simulation studies involving emerging 6G communication technologies. It is suitable for universities, R&D laboratories, telecommunications researchers, technology developers, and organizations exploring the future of intelligent wireless connectivity.
What Is Integrated Sensing and Communication (ISAC)?
Integrated Sensing and Communication (ISAC) is one of the important research directions in future wireless networks. Traditional wireless systems primarily focus on transmitting and receiving information, while sensing systems are designed to detect objects, estimate positions, measure movement, and understand the surrounding environment.
ISAC combines these capabilities within a common wireless infrastructure. This enables a communication system to simultaneously provide data transmission and sensing functionality.
The ISAC Simulator – 6G Communication Module is intended to help users investigate this convergence through simulation. Researchers can explore communication performance alongside sensing-related parameters, making it useful for studies involving 6G wireless communication, radar-communication integration, localization, environment sensing, intelligent transportation, smart infrastructure, and future connected systems.
Designed for 6G Wireless Communication Research
The transition from 5G to 6G communication introduces new requirements for capacity, latency, reliability, intelligence, sensing, connectivity, and spectrum utilization. Simulation plays an important role in understanding these technologies before practical deployment.
This module provides a research-oriented environment for investigating concepts associated with next-generation wireless networks. Depending on the configured simulation model, users can study parameters such as signal behavior, channel characteristics, transmission performance, sensing performance, and communication-sensing trade-offs.
The simulator can be incorporated into academic research projects, laboratory experiments, thesis work, research papers, demonstrations, and proof-of-concept studies related to IMT-2030 and 6G technologies.
Key Features
The ISAC Simulator – 6G Communication Module can be used as a foundation for a wide range of wireless communication and sensing experiments.
Key capabilities include:
- 6G communication simulation for next-generation wireless research.
- Integrated Sensing and Communication (ISAC) modeling and analysis.
- Simulation-oriented support for research aligned with the ITU-R M.2160 / IMT-2030 framework.
- Evaluation of communication and sensing performance within an integrated system.
- Support for developing and testing research algorithms.
- Flexible experimentation for different communication and sensing scenarios.
- Useful simulation environment for academic and industrial R&D.
- Suitable for performance analysis, comparative studies, and proof-of-concept development.
- Research support for emerging 6G wireless technologies.
- Python-based workflows can be used where supported by the implementation.
Python-Based Research and Simulation
Python has become a widely used programming language for scientific computing, data analysis, artificial intelligence, and wireless communication research. The ISAC Simulator can be particularly useful for researchers who want to integrate simulation workflows with Python-based analysis and algorithm development.
Python can help researchers process simulation results, visualize performance metrics, automate experiments, compare different configurations, and implement custom research algorithms. This makes the module suitable for projects where wireless communication simulation needs to be combined with numerical analysis, machine learning, optimization, or data-driven approaches.
Researchers can use Python-based workflows to analyze parameters such as throughput, latency, signal quality, sensing accuracy, detection performance, resource utilization, and other application-specific metrics, depending on the simulator configuration.
Applications of the ISAC 6G Simulator
The module can support research and experimentation across several emerging application areas.
- 6G Wireless Communication
Study concepts and performance characteristics associated with future 6G wireless communication networks and IMT-2030 research.
- Integrated Sensing and Communication
Investigate how a common wireless system can support both data communication and sensing functions.
- Wireless Sensing
Explore sensing-related concepts such as object detection, movement analysis, positioning, localization, and environmental awareness.
- Intelligent Transportation
ISAC technology has potential applications in connected vehicles, intelligent transportation systems, road monitoring, and vehicular environments. Simulation can help researchers investigate communication and sensing requirements in these scenarios.
- Smart Infrastructure
Researchers can explore future wireless systems capable of supporting connected infrastructure, environmental awareness, monitoring, and intelligent services.
- Academic Research and Thesis Projects
The module is suitable for 6G research papers, master’s projects, PhD research, dissertations, laboratory assignments, demonstrations, and experimental studies.

Why Use an ISAC Simulator for 6G Research?
Physical experimentation with future wireless technologies can require expensive hardware, specialized equipment, and controlled test environments. Simulation provides researchers with a practical way to investigate concepts before moving to hardware implementation.
With an ISAC simulation environment, researchers can modify system parameters, repeat experiments, compare scenarios, evaluate algorithms, and analyze results in a controlled environment. This can significantly simplify early-stage research into integrated communication and sensing technologies.
The ISAC Simulator – 6G Communication Module is therefore useful for organizations looking to explore the technical possibilities of 6G communication and sensing convergence through software-based experimentation.
Suitable for Researchers, Universities, and R&D Teams
This module is designed for users working in areas such as:
- Wireless communication research
- 5G and 6G technology
- Integrated sensing and communication
- Signal processing
- Wireless channel modeling
- Radar and communication systems
- Artificial intelligence for wireless networks
- Machine learning for 6G
- Telecommunications engineering
- Academic and industrial R&D
Whether you are developing a new algorithm, evaluating a research hypothesis, preparing a thesis, or studying future wireless architectures, the simulator provides a foundation for experimentation with 6G ISAC technologies.
Explore the Future of 6G Communication
The convergence of communication, sensing, artificial intelligence, and intelligent infrastructure is expected to play an important role in future wireless systems. Integrated Sensing and Communication (ISAC) provides a pathway toward wireless networks that can do more than simply transmit information.
The ISAC Simulator – 6G Communication Module (ITU-R M.2160 Compliant) provides a research-focused platform for exploring these emerging concepts through simulation. With support for 6G communication research, ISAC experimentation, Python-oriented workflows, and performance analysis, it can be a valuable addition to a wireless communications research toolkit.
If you are working on 6G, IMT-2030, ISAC, wireless sensing, next-generation networks, or intelligent communication systems, this module can help accelerate simulation-based research and experimentation.








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