homerpaponFebruary 23, 2026 Smarter antennas for smarter networks The 6G Flagship programme is advancing adaptive antenna systems that utilize massive MIMO to form real-time adjustable beams for…
homerpaponFebruary 23, 2026 Rethinking IoT The SUPERIOT project, coordinated by a professor and funded by the EU Smart Networks & Services Joint Undertaking, aims to address the…
homerpaponFebruary 23, 2026 When Electronics Vanish: Designing for a Zero-Waste 6G Ecosystem The article outlines a vision for a zero-waste 6G ecosystem where electronics are embedded into materials and structures using biodegradable…
homerpaponFebruary 23, 2026 RF Wireless Energy Transfer driving Sustainable IoT RF wireless energy transfer (WET) offers a sustainable solution for powering massive IoT networks by addressing the limitations of small…
homerpaponFebruary 23, 2026 Mobile networks demand resilience As mobile networks transition toward 6G, ensuring resilience against power outages, geopolitical disruptions, and economic pressures is…
homerpaponFebruary 23, 2026 The age of industrial metaverses is coming – but what will it require to interconnect them? The industrial metaverse requires a robust interconnection fabric to link disparate private 3D environments across global supply chains while…
homerpaponFebruary 23, 2026 Sustainability – Still Our Shared Priority Sustainability has evolved from a buzzword into a core design principle for 6G, formally adopted in the ITU-R IMT-2030 framework and European…
homerpaponFebruary 23, 2026 How does a radio channel change with frequency? As wireless systems expand from sub-6 GHz to millimeter-wave and sub-THz bands, the propagation channel exhibits distinct frequency-dependent…
homerpaponFebruary 23, 2026 6G meets IoT: Machine-type communications in the 6G era The 6G era will revolutionize machine-type communications by integrating distributed intelligence and satellite connectivity to support…