MCNS is participating in a research project with technology knowledge transfer in ETSI in Sophia-Antipolis, France on the 5G network cloudification in the forthcoming 6G era.
6G will evolve from 5G by leveraging cloudification and the flexible architecture of 5G Core (5GC). It will expand network virtualization and edge computing to deliver ultra-low latency and massive scalability.
MCNS has provided its expertise for the Swedish Patent and Registration Office (PRV) in Stockholm. 3GPP specifications and TDocs play a vital role in assisting patent offices and examiners by serving as authoritative references for mobile communication standards. They help identify prior art, ensuring that patents meet the criteria of novelty and inventiveness.
MCNS has provided its services as a subcontractor to Praxis Factor for a project related to 5G RAN feasibility preliminary analysis for 5G services.The preliminary design of a private 5G network for an industrial area in the area of Thessaloniki presents a compelling opportunity to leverage cutting-edge wireless technologies to meet the demanding requirements of Industry 4.0.
The evolution to 5G networks has introduced a dynamic and complex Radio Access Network (RAN) architecture that requires a meticulous approach to performance evaluation and optimization. Key Performance Indicators (KPIs) play a critical role in this process, serving as measurable metrics that reflect the efficiency, reliability, and overall performance of the RAN.
MCNS is a preferred and official sub-contractor representing and delegating Jio Reliance in 3GPP RAN3 meetings for Release 18 & 19 AI/ML standardization. 3GPP Releases 18 and 19 introduce significant advancements in AI/ML techniques within the RAN3 working group, focusing on how these technologies can be leveraged for network slicing, dynamic RAN algorithms, and end-to-end optimization.
MCNS has successfully undertaken and delivered a full customer premise project delivery for SS7 signaling network aspects related to national security and communications in hostile environments. SS7 (Signaling System No. 7) is an essential signaling protocol initially designed for managing calls and exchanging information in the circuit-switched networks of 2G and 3G.
MCNS is involved in a 5G RAN project with Jio-Reliance offices in India, as part of contractual agreement services for R&D Energy Efficiency algorithms.
MCNS has successfully undertaken and delivered a full project delivery for GSM, 3G, LTE and 5G security and authentication procedures to protect military equipment and soldiers’ handsets from SIM and fraud hacking.
MCNS is involved in a 5G NSA RAN optimization project visiting Rakuten offices in Japan, as part of contractual agreement services to Qualcomm.
MCNS has undertaken a consultancy project for the initial optical fiber network planning and technical specifications proposals on behalf of EYDAP in Attiki, Greece.
MCNS is involved in an ongoing RAN optimization project with full cluster optimization targets regarding optional features review, RAN cluster re-planning, RAN parameter configuration review, mobility and retainability performance enhancements.
MCNS has successfully undertaken and delivered a full planning project, named as “Rural Connect, Greece, Implementation and Support of Hybrid NGA”, for a Greek Telecom consortium named as “Rural Connect SA” in Greece. This consortium is the joined effort of Netcompany –Intrasoft SA, Intrakat SA, and MCNS .
MCNS has successfully undertaken and delivered a full planning project, named as “Rural Connect, Greece, Implementation and Support of Hybrid NGA”, for a Greek Telecom consortium named as “Rural Connect SA” in Greece. This consortium is the joined effort of Netcompany – Intrasoft SA, Intrakat SA, and MCNS .
LTE-TDD technology in 3.4-3.8 GHz is a new band deployment scenario for both Rural and Urban areas for Fixed Wireless Access (FWA) networks. Following international literature and books or papers, pathloss and propagation models in C-Band especially for FWA were not fully analysed and measured in different terrains and under different environmental conditions.
MCNS has successfully undertaken a Proof of concept (PoC) initial project phase, for a project named as “Rural Connect, Greece, Implementation and Support of Hybrid NGA” for a Greek Telecom consortium named as “Rural Connect SA” in Greece. This consortium is the joined effort of Νet Company – Intrasoft S.A, Intrakat SA, and MCNS.
This projects was related to the initial study of a preliminary sustainability and availability technical analysis for an overall radio network design for NB-IoT over LEO satellite services, under the restriction of having special category of small size satellites called cube satellites.
MCNS has successfully undertaken and delivered a full RAN redesign project, moving the frequency band of “Rural Connect, Greece, Implementation and Support of Hybrid NGA” network from 3.6-3.8 GHz band down to the lower spectrum of C-Band 3.4 GHz.
MCNS offers subcontracting services to Qualcomm for an optimization project in Japan, related to Rakuten network, based on ORAN architecture and Altio-Star vendor technology.