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Arsalan Saleem and Secure Techware

We will start this course by understanding LimeSDR and its frequency range then we will setup LimeSDR and update its library and firmware.

After getting the grip on our SDR tools we will dive into GSM network and try to grasp the core concepts of GSM network we will discuss the main components of GSM network like After getting an idea of GSM core components we will create virtual GSM network and once we are comfortable then we will start the actual GSM network with our LimeSDR device. We will also learn and program our own SIM cards and then we will make connection with our own GSM network using these SIM cards.

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We will start this course by understanding LimeSDR and its frequency range then we will setup LimeSDR and update its library and firmware.

After getting the grip on our SDR tools we will dive into GSM network and try to grasp the core concepts of GSM network we will discuss the main components of GSM network like After getting an idea of GSM core components we will create virtual GSM network and once we are comfortable then we will start the actual GSM network with our LimeSDR device. We will also learn and program our own SIM cards and then we will make connection with our own GSM network using these SIM cards.

After Creating our own network and connecting phones with this network we will call from one phone to another and do SMS from one phone to another. We will also capture and analyze GSM network packets using Wireshark.

After GSM network we will move to LTE based network and create our own LTE network using same LimeSDR device. Then we will also understand the core concept of LTE networks and start our own LTE network.

We will program LTE SIM cards as well and connect these LTE SIM cards with our LTE network using our LTE based phone. At last, we will also capture and analyze LTE network packets using Wireshark.

So, in this course you will get a very good idea of GSM and LTE network and at the end of the course To create your own GSM or LTE network

2. To program your own SIM cards for your own networks

3. To Connect your phone with your own network and do call and SMS

4. To get your own 4G LTE network

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What's inside

Learning objectives

  • Core concepts of gsm & lte network
  • How gsm and lte network operates
  • Create your own gsm & lte network
  • Packet analyzation of gsm & lte based network
  • Sim programming for gsm and lte networks
  • Role of sdr in gsm & lte network

Syllabus

Introduction
01-Other SDR Courses
02-Requirements
01-DragonOS Setup
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Activities

Coming soon We're preparing activities for SDR for Ethical Hackers and Security Researchers 4.0. These are activities you can do either before, during, or after a course.

Career center

Learners who complete SDR for Ethical Hackers and Security Researchers 4.0 will develop knowledge and skills that may be useful to these careers:
Wireless Security Engineer
A Wireless Security Engineer is crucial for protecting an organization's wireless communication infrastructure from cyber threats. This course, "SDR for Ethical Hackers and Security Researchers 4.0", directly addresses the core competencies needed for this specialized field. By learning the fundamental concepts of GSM and LTE networks, including how to create and analyze them, you gain invaluable insight into potential vulnerabilities. The practical experience with LimeSDR, SIM card programming, and packet analysis using Wireshark equips you with the hands-on skills to identify, assess, and mitigate security risks specific to mobile and radio frequency communication. This detailed understanding of network operations helps build a foundation in detecting and preventing sophisticated wireless attacks.
Security Research Engineer
A Security Research Engineer investigates new security threats, vulnerabilities, and defensive technologies. For someone aspiring to this role, "SDR for Ethical Hackers and Security Researchers 4.0" offers an exceptional platform. The course's focus on understanding, building, and analyzing GSM and LTE networks from the ground up, including SIM programming and packet analysis, provides the specific knowledge vital for researching weaknesses in cellular communication protocols and implementations. The hands-on use of SDR tools like LimeSDR allows for experimentation and the development of new attack or defense methodologies. This deep technical insight facilitates groundbreaking security discoveries.
Mobile Security Analyst
A Mobile Security Analyst focuses on identifying vulnerabilities and protecting mobile devices and the cellular networks they connect to. The "SDR for Ethical Hackers and Security Researchers 4.0" course is particularly relevant, offering an in-depth exploration of GSM and LTE network mechanics. Learners gain the ability to create their own mobile networks, program SIM cards, and capture and analyze network packets with Wireshark. This practical knowledge is essential for understanding how mobile communications function, how they can be exploited, and how to defend against such attacks. The course can help build a foundation for analyzing mobile threats and developing robust security strategies.
Penetration Tester
A Penetration Tester simulates cyberattacks to find security weaknesses in systems, applications, and networks. The "SDR for Ethical Hackers and Security Researchers 4.0" course provides invaluable practical experience for those focused on wireless and mobile network penetration testing. By learning to create and manipulate GSM and LTE networks, program SIM cards, and analyze network traffic using Wireshark, you develop a profound understanding of how these systems can be exploited. This expertise is crucial for identifying vulnerabilities in cellular infrastructure, enabling you to effectively test and report on potential security gaps. The course helps build a foundation for specialized offensive security roles.
Radio Frequency Engineer
A Radio Frequency Engineer designs, develops, and tests equipment that uses radio waves for communication. This course, "SDR for Ethical Hackers and Security Researchers 4.0", provides a deep understanding of software defined radio technology, which is central to modern RF engineering. By creating your own GSM and LTE networks using LimeSDR, you gain practical experience with RF hardware configuration, signal generation, and network operation. The course's focus on understanding how GSM and LTE networks operate, along with packet analysis, can help build a strong foundation for optimizing network performance and troubleshooting RF issues. While a master's degree is often beneficial, the hands-on SDR and cellular network knowledge is highly relevant.
Software Defined Radio Developer
A Software Defined Radio Developer designs and implements software to control radio hardware, creating flexible and adaptable communication systems. The "SDR for Ethical Hackers and Security Researchers 4.0" course focuses heavily on practical SDR application, specifically using LimeSDR to build and operate GSM and LTE networks. This involves setting up SDR tools, interacting with firmware, and configuring software like OsmoBTS and srsLTE. The hands-on experience in creating and programming these complex communication systems provides direct, relevant skills for developing new SDR applications and understanding the interplay between software and radio frequency hardware.
Telecommunications Engineer
A Telecommunications Engineer designs, implements, and maintains communication systems and networks. This course, "SDR for Ethical Hackers and Security Researchers 4.0", offers an in-depth practical exploration of core mobile communication technologies, specifically GSM and LTE. By learning to create virtual and physical GSM and LTE networks using LimeSDR, understanding their components (like BTS, BSC, MSC, HLR), and performing packet analysis, you gain a comprehensive grasp of cellular network architecture and operation. This detailed knowledge can help build a foundation for roles involving network planning, optimization, and troubleshooting in the telecommunications industry.
Communications Systems Engineer
A Communications Systems Engineer designs, develops, and integrates complex communication systems. The "SDR for Ethical Hackers and Security Researchers 4.0" course provides an exceptional, hands-on understanding of modern cellular communication systems. By learning the core concepts of GSM and LTE, including their architecture, operational principles, and how to build functional networks with LimeSDR, you develop a comprehensive perspective. The ability to program SIM cards and analyze network packets using Wireshark further develops the practical skills needed for system design, integration, and troubleshooting. This course helps build a foundation for a career focused on various communication technologies.
Network Security Engineer
A Network Security Engineer designs, implements, and monitors security measures for protecting computer networks and systems. While broad, "SDR for Ethical Hackers and Security Researchers 4.0" is particularly valuable for those specializing in the security of wireless and mobile communication networks within a larger infrastructure. The course's deep dive into GSM and LTE network operations, including practical network creation and comprehensive packet analysis with Wireshark, helps build a foundation for understanding network vulnerabilities and designing robust defenses in a cellular context. This specific expertise can enhance a Network Security Engineer's ability to secure critical communication pathways.
Spectrum Analyst
A Spectrum Analyst monitors, analyzes, and manages radio frequency spectrum usage. The "SDR for Ethical Hackers and Security Researchers 4.0" course, with its detailed exploration of software defined radio and the operational specifics of GSM and LTE networks, offers relevant background for this role. Understanding how these networks utilize specific frequency ranges, as well as the practical experience of setting up and analyzing signals with devices like LimeSDR, can help build a foundation for identifying interference, ensuring regulatory compliance, and optimizing spectrum allocation. This course provides direct exposure to the practicalities of RF signal interaction within defined bands.
Technical Trainer
A Technical Trainer develops and delivers educational programs on specialized technical subjects to various audiences. Given the in-depth, practical nature of "SDR for Ethical Hackers and Security Researchers 4.0", a strong grasp of its content would make one exceptionally qualified as a Technical Trainer focusing on wireless security, software defined radio, or cellular network technologies. The course covers complex topics like GSM and LTE network creation, SIM programming, and packet analysis in a structured manner. This comprehensive understanding and practical experience helps build a foundation to effectively teach others about these intricate communication systems and their security implications.
Cybersecurity Consultant
A Cybersecurity Consultant advises organizations on security strategies, risk management, and compliance across various technological domains. For consultants specializing in telecommunications or critical infrastructure, "SDR for Ethical Hackers and Security Researchers 4.0" may be particularly useful. The course provides a detailed understanding of GSM and LTE network architectures and their operational nuances, including the ability to build and analyze these systems. This practical expertise in mobile networks allows a consultant to offer informed advice on securing cellular communications, assessing unique vulnerabilities, and developing specialized security policies for clients operating in this space.
Internet of Things Security Engineer
An Internet of Things Security Engineer focuses on securing interconnected devices and their communication pathways. The "SDR for Ethical Hackers and Security Researchers 4.0" course may be useful, especially when IoT devices rely on cellular connectivity (LTE-M, NB-IoT which are variants of LTE). By understanding the core concepts of LTE networks, learning to create them, and analyzing their packets, one gains crucial insights into the security posture of cellular-connected IoT ecosystems. This knowledge helps build a foundation for identifying vulnerabilities in device-to-network communication and implementing robust security measures for the vast array of IoT endpoints.
Digital Forensic Investigator
A Digital Forensic Investigator collects and analyzes electronic data to uncover evidence for legal cases or incident response. For investigations involving mobile devices or cellular network activity, "SDR for Ethical Hackers and Security Researchers 4.0" may be useful. The course's emphasis on packet capturing and analysis with Wireshark for both GSM and LTE networks, alongside an understanding of SIM programming and network operations, helps build a foundation for interpreting mobile network traffic. This expertise can be crucial for reconstructing events, analyzing communication patterns, and identifying malicious activity across cellular infrastructures during a forensic examination.
Embedded Systems Engineer
An Embedded Systems Engineer designs and develops specialized computer systems that are part of a larger device, often including communication modules. The "SDR for Ethical Hackers and Security Researchers 4.0" course may be useful for those whose work involves wireless communication within embedded contexts. While the course doesn't focus on embedded hardware design, its deep dive into GSM and LTE network protocols, SIM programming, and the use of SDR hardware like LimeSDR can help build a foundation for understanding how embedded systems interact with cellular networks. This knowledge is important for designing secure and efficient communication capabilities for IoT devices or other specialized hardware.

Reading list

We've selected 16 books that we think will supplement your learning. Use these to develop background knowledge, enrich your coursework, and gain a deeper understanding of the topics covered in SDR for Ethical Hackers and Security Researchers 4.0.
Provides a high-level view of wireless security design, which helps students understand the enterprise context of the networks they are building. It valuable reference for security researchers who need to understand how private LTE or GSM networks fit into a larger security posture. It adds significant professional development value to the course.
Is the definitive entry-level guide for SDR enthusiasts and serves as a great prerequisite for the more advanced LimeSDR topics in the course. It covers many of the same software tools used in the course, such as Wireshark and various Linux-based SDR utilities. It is an excellent resource for building foundational knowledge of radio frequencies.
Provides the mathematical and algorithmic foundations of DSP that are necessary for high-level SDR work. While the course is practical, this book offers the prerequisite knowledge needed to understand how the LimeSDR processes signals. It useful textbook for those pursuing a more academic understanding of the field.
Practical guide that aligns perfectly with the hands-on nature of the course, specifically mentioning tools like DragonOS. It helps bridge the gap between theoretical radio concepts and actual hardware implementation using devices like the LimeSDR. It is an excellent prerequisite read for those new to the SDR ecosystem.
Includes updated sections on SDR and wireless security, making it highly relevant to the course's target audience. It provides the broader 'ethical hacker' context that the course title suggests. It is frequently used by industry professionals as a comprehensive guide to modern security research techniques.
Provides a comprehensive overview of the security architecture of LTE networks, which core focus of the course. It is an essential reference for security researchers looking to understand the vulnerabilities and protections within 4G systems. The text serves as both a technical deep-dive and a professional reference for those implementing or testing LTE networks.
Provides a detailed look at the physical layer of modern cellular networks, bridging the gap between LTE and 5G. It is useful for researchers who want to understand how SDR hardware like LimeSDR can be pushed to support newer standards. It adds significant breadth to the course's coverage of cellular protocols.
While the course focuses on GSM and LTE, this book prepares the student for the next step in their learning journey: 5G. It is written by authorities in the field and provides a forward-looking perspective that complements the course's LTE section. It is best used as additional reading for those looking to stay current with industry trends.
Provides context on how SIM cards and mobile networks are analyzed in forensic scenarios. It is useful for security researchers who want to understand the artifacts left behind on SIM cards after programming them as taught in the course. It adds a unique investigative breadth to the technical skills learned.
As a standard academic textbook, this book offers a rigorous look at the signal processing required for SDR. While it uses different hardware, the fundamental concepts of sampling, modulation, and RF front-ends are directly applicable to LimeSDR users. It provides the technical depth that supplements the course's practical demonstrations.
Since the course specifically includes modules on capturing and analyzing GSM/LTE packets with Wireshark, this book is an essential companion. It teaches the fundamentals of packet inspection that are necessary for the course's labs. It serves as a definitive reference tool for any security researcher working with network traffic.
The course includes a specific module on SIM programming for GSM and LTE networks; this book is the industry-standard reference for smart card technology. It explains the communication protocols between SIM cards and the network, which is crucial for the SIM programming labs. It highly valuable reference tool for security researchers.
Serves as an excellent introductory textbook for cellular concepts, covering the evolution from 1G to 4G. It explains the core network components like HLR, MSC, and BTS which are central to the course's GSM modules. It is helpful for providing the background knowledge required to follow the course's network setup tutorials.
Focuses on the simulation and prototyping of LTE, which complements the course's focus on creating virtual and real LTE networks. It provides a different perspective on LTE implementation that can help students troubleshoot their srsLTE setups. It valuable resource for those wanting to dive deeper into LTE modeling.
Specifically targets the security researcher audience and focuses on using Wireshark for threat hunting and protocol analysis. It aligns with the course's objective of analyzing GSM and LTE packets for security vulnerabilities. It practical, hands-on guide that enhances the course's packet analysis labs.

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