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== NOVIKOV == The NOVIKOV Heavy Construction System (HCS) represents the latest development in large-scale construction automation from Russia's Ural Heavy Industries. This formidable platform stands as a testament to Russian engineering's focus on robust, versatile industrial machinery. * '''Technical Overview''' The NOVIKOV system consists of a massive hexapedal platform measuring 12 meters in height when fully extended, with a maximum operational weight of 45 metric tons. Its signature feature is the incorporation of six hydraulically-powered legs that allow stable positioning even on unstable terrain or partially completed structures. * '''Construction Capabilities''' The primary construction array consists of three independently operating manipulator arms, each capable of lifting 15 metric tons. These arms utilize advanced haptic feedback systems and real-time stress analysis to handle delicate operations despite their immense power. The system's central torso can rotate 360 degrees, allowing for comprehensive coverage of the work area without repositioning the entire unit. * '''Power Systems''' NOVIKOV units operate on a hybrid power system combining advanced hydrogen fuel cells with a compact anti-matter battery for extended operations. This dual-power approach ensures continuous operation for up to six months without refuelling, making them particularly valuable for remote construction projects in Siberia and the Arctic regions. * '''Control Architecture''' The system employs a sophisticated AI control system that can operate autonomously or under direct human supervision. Multiple redundant quantum processors manage the complex calculations required for maintaining stability while performing heavy construction tasks. The control interface supports both traditional remote operation and neural-link systems for enhanced operator control. * '''Environmental Adaptation''' NOVIKOV units are specifically engineered for operation in extreme conditions, with operating parameters ranging from -60Β°C to +50Β°C. The system's legs incorporate ground-penetrating radar to assess terrain stability, while the main body features active thermal management systems to maintain optimal operating temperatures.
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