Principles of formation of universal seamlessly programmable and cybersecure algorithmic space

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The problems and principles of formation in the resources of global networks seamlessly and universally programmable distributed computing environment are considered. The limitations of present computing environments, which heterogeneity is the cause of the combinatorial complexity of the problems of expansion distributed computing systems and providing of cybersecure are analyzed. For transition to universal, seamlessly programmable and cybersecure algorithmic space of distributed computing the mathematically closed form representation of data and programs is used. The requirements for the new element base (VLSI) — a network computer with nonmicroprocessor architecture with built — in hardware kernel functions of operating systems, providing cybersecure access to data and network routing are formulated.

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Cybersecurity, distributed computing, global networks, mathematical homogeneous algorithmic space, nonmicroprocessor architecture, seamless programming, smart memory, universal network computer

Короткий адрес: https://sciup.org/14335969

IDR: 14335969

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