Progressing M2M Communications using Arduino Leonardo and 6G Technologies
Ali Ali Saber Mohammed, Pshtiwan Shakor, Salam Khalaf Abdullah, Marwan Aziz Mohammed, Saad Jabbar Abbas, Mohammed Abdulkreem Mohammed, Pardaz Kozhobekova · 2024
Background: As the digital age unfolds, the requirement for durable, high-throughput communication systems grows inexorably. The convergence of Machine-to-Machine Communication (M2M) with emerging sixth-generation (6G) technology provides novel solutions that can transform our communication landscapes. Objective: This research aims to clarify the capabilities and potentials of integrating Arduino Leonardo, a microcontroller platform with broad application, into 6G-enabled M2M communication systems. The goal is to identify the consequences of changing digital communication paradigms. Methods: Using a thorough experimental methodology, the study builds and evaluates M2M systems using the adaptability of the Arduino Leonardo inside a 6G network architecture. Data transmission latency, integrity, and security are all evaluated across various network situations. Protocols such as Cyclic Redundancy Check (CRC) and Advanced Encryption Standard (AES) ensure data integrity and protect against cybersecurity attacks. Results: The results show a considerable increase in data transmission rates and a decrease in latency within the 6G framework. Concurrently, CRC and AES methods provide effective data corruption prevention and a strong resistance against simulated cybersecurity attacks. However, geographical factors influence signal strength, showing difficulty in ensuring ubiquitous connection. Conclusion: Combining Arduino Leonardo and 6G technology in M2M communication systems offers interesting opportunities for optimizing digital communication. While the results indicate tremendous potential, the highlighted obstacles underline the need for continued refinement and study, creating a solid basis for future explorations in this sector.