Multi-Access Edge Computing Explained: Bridging Fog, Edge, and Cloud
Explore how Multi-Access Edge Computing (MEC) bridges fog, edge, and cloud layers to deliver ultra-low latency, real-time analytics, and smarter IoT deployments.
Dedicated Local Private Networks Powering the Factory of the Future
Discover how dedicated local private networks are revolutionizing industrial automation by connecting devices, IIoT analytics, and enterprise systems with secure, low-latency communication.
Factory of the Future with Dedicated Local Private Networks for Industrial Automation
Learn how dedicated local private networks transform industrial automation by connecting devices, IIoT analytics, and enterprise systems with ultra-reliable communication.
Multi-Hop Mesh Topology in IoT: Sensor Devices & Gateways Explained
Discover how sensor devices in a mesh topology enable multi-hop connectivity to gateways via edge devices. Learn why this architecture powers scalable IoT and 5G applications.
3GPP RAN3 Release 17: Enhancements for QoE, NTN, and Network Architecture
3GPP Release 17 RAN3 introduces key improvements like NR QoE, NB-IoT over NTN, IAB enhancements, and SON/MDT upgrades, shaping 5G networks for real-world efficiency.
3GPP RAN2 Release 17 introduces key protocol enhancements including NR multicast, sidelink relay, IoT for NTN, RAN slicing, and small data optimizations to strengthen 5G scalability and efficiency.
RAN1 Release 17 Explained: 5G Enhancements, Timeline, and Key Features
3GPP Release 17 RAN1 enhancements power 5G’s future with IoT over NTN, RedCap devices, URLLC, spectrum expansion, positioning, and energy-efficient innovations.
3GPP RAN Timeline: Release 16 & 17 Milestones Explained
Explore the 3GPP RAN timeline for Release 16 and 17. Learn about key freeze milestones, approvals, and performance completions shaping the future of 5G.
3GPP Release 17 Timeline & Features: Advancing 5G and Beyond
3GPP Release 17 introduces major enhancements in 5G including IoT expansion, satellite integration, and advanced spectrum use. Discover its timeline and milestones.
PDCP Duplication in 5G: Carrier Aggregation & Dual Connectivity
PDCP Duplication enhances reliability in 5G by transmitting duplicate data packets through carrier aggregation and dual connectivity. Learn how it boosts low-latency and ultra-reliable communication.