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Fault tolerant hypercube computer system architectureA fault-tolerant multiprocessor computer system of the hypercube type comprising a hierarchy of computers of like kind which can be functionally substituted for one another as necessary is disclosed. Communication between the working nodes is via one communications network while communications between the working nodes and watch dog nodes and load balancing nodes higher in the structure is via another communications network separate from the first. A typical branch of the hierarchy reporting to a master node or host computer comprises, a plurality of first computing nodes; a first network of message conducting paths for interconnecting the first computing nodes as a hypercube. The first network provides a path for message transfer between the first computing nodes; a first watch dog node; and a second network of message connecting paths for connecting the first computing nodes to the first watch dog node independent from the first network, the second network provides an independent path for test message and reconfiguration affecting transfers between the first computing nodes and the first switch watch dog node. There is additionally, a plurality of second computing nodes; a third network of message conducting paths for interconnecting the second computing nodes as a hypercube. The third network provides a path for message transfer between the second computing nodes; a fourth network of message conducting paths for connecting the second computing nodes to the first watch dog node independent from the third network. The fourth network provides an independent path for test message and reconfiguration affecting transfers between the second computing nodes and the first watch dog node; and a first multiplexer disposed between the first watch dog node and the second and fourth networks for allowing the first watch dog node to selectively communicate with individual ones of the computing nodes through the second and fourth networks; as well as, a second watch dog node operably connected to the first multiplexer whereby the second watch dog node can selectively communicate with individual ones of the computing nodes through the second and fourth networks. The branch is completed by a first load balancing node; and a second multiplexer connected between the first load balancing node and the first and second watch dog nodes, allowing the first load balancing node to selectively communicate with the first and second watch dog nodes.
Document ID
19900012211
Acquisition Source
Legacy CDMS
Document Type
Other - Patent
Authors
Madan, Herb S.
(California Inst. of Tech. Pasadena., United States)
Chow, Edward
(California Inst. of Tech. Pasadena., United States)
Date Acquired
August 14, 2013
Publication Date
September 19, 1989
Subject Category
Computer Operations And Hardware
Report/Patent Number
Patent Number: US-PATENT-4,868,818
Patent Application Number: US-PATENT-APPL-SN-113956
Patent Number: NASA-CASE-NPO-16859-1-CU
Accession Number
90N21527
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Patent
US-PATENT-4,868,818|NASA-CASE-NPO-16859-1-CU
Patent Application
US-PATENT-APPL-SN-113956
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