METHOD OF ORGANIZING A SYSTEM NETWORK IN THE FORM OF A FAIL-SAFE NON-BLOCKING THREE-DIMENSIONAL SPARSE P-ARY HYPERCUBE Russian patent published in 2020 - IPC G06F15/00 

Abstract RU 2720553 C1

FIELD: methods of organizing a system network.

SUBSTANCE: invention relates to a method of arranging a system network in the form of a fail-safe non-blocking three-dimensional sparse p-ary hypercube for multiprocessor systems with hundreds of processors-subscribers. In the method, when constructing a network, the topology of a three-dimensional p-ary sparse hypercube is used, which is an originally organized three-dimensional composition of flat networks. At that, the method includes in a certain way organized arrangement of flat networks on facets of hypercube with further integration of commutators of these networks in nodes of hypercube, which together with additional channels between network nodes provides declared properties of invention.

EFFECT: high fault tolerance of the system network due to the presence of different direct channels between any processors.

1 cl, 19 dwg

Similar patents RU2720553C1

Title Year Author Number
NETWORK HAVING EXTENDED GENERALISED HYPERCUBE TOPOLOGY 2013
  • Karavaj Mikhail Fedorovich
  • Podlazov Viktor Sergeevich
  • Sokolov Vladimir Vladimirovich
RU2556458C2
METHOD OF ORGANIZING A SYSTEM NETWORK IN THE FORM OF A NON-BLOCKING SELF-ROUTABLE THREE-DIMENSIONAL P-ARY MULTI-RING 2018
  • Podlazov Viktor Sergeevich
  • Sokolov Vladimir Vladimirovich
RU2703351C1
METHOD FOR CONSTRUCTING SWITCHED CONTROL NETWORKS WITH QUASI-COMPLETE DIGRAPH TOPOLOGY 2023
  • Podlazov Viktor Sergeevich
  • Karavaj Mikhail Fedorovich
  • Sokolov Vladimir Vladimirovich
RU2815332C1
METHOD TO BUILD NON-BLOCKED SELF-ROUTED EXPANDED COMMUTATOR 2009
  • Podlazov Viktor Sergeevich
  • Karavaj Mikhail Fedorovich
  • Sokolov Vladimir Vladimirovich
RU2435295C2
METHOD FOR ORGANIZING OPTIMAL FAULT-TOLERANT MULTIDIMENSIONAL TORI BASED ON LOW-PORT ROUTERS AND DUPLEX CHANNEL SPLITTERS 2020
  • Karavaj Mikhail Fedorovich
  • Podlazov Viktor Sergeevich
  • Sokolov Vladimir Vladimirovich
RU2753147C1
GENERALIZED TWO-STAGE NON-BLOCKING CLOS NETWORK 2014
  • Podlazov Viktor Sergeevich
  • Sokolov Vladimir Vladimirovich
RU2580100C2
SCALABLE OPTICAL SWITCHES AND SWITCHING MODULES 2012
  • Ticknor Anthony J.
  • Vorobeichik Ilya
  • Way Winston
RU2608300C2
SYSTEM MESSAGE TRANSMISSION NETWORK OF MULTIDIMENSIONAL TORUS WITH CHORD LINKS 2015
  • Podlazov Viktor Sergeevich
  • Sokolov Vladimir Vladimirovich
RU2586835C1
MOBILE MULTIFUNCTIONAL COMMUNICATION NODE 2017
  • Anisimov Vladimir Georgievich
  • Grechishnikov Evgenij Vladimirovich
  • Belov Andrej Sergeevich
  • Skubev Aleksandr Vasilevich
  • Kolkunov Andrej Mikhajlovich
RU2645742C1
MULTI-PURPOSE MOBILE COMMUNICATION CENTRE 2009
  • Balitskij Vadim Stepanovich
  • Krivenkov Mikhail Viktorovich
  • Pjatnitsin Aleksandr Ivanovich
  • Nikolaenko Oleg Vladimirovich
  • Vergelis Nikolaj Ivanovich
RU2407150C1

RU 2 720 553 C1

Authors

Podlazov Viktor Sergeevich

Sokolov Vladimir Vladimirovich

Dates

2020-05-12Published

2019-10-18Filed