Fault-tolerant node architecture for distributed systems

A distributed architecture system including a plurality of nodes (24, 26) operatively coupled together by a bus (28). Each node (24, 26) includes a main controller (42) configured to provide data to the bus (28) and to an actuator (22), and a supervisory controller (44) configured to provide data to...

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Main Authors DISSER, ROBERT J, DEGOUL, PAUL
Format Patent
LanguageEnglish
French
German
Published 04.11.2009
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Abstract A distributed architecture system including a plurality of nodes (24, 26) operatively coupled together by a bus (28). Each node (24, 26) includes a main controller (42) configured to provide data to the bus (28) and to an actuator (22), and a supervisory controller (44) configured to provide data to the bus (28) and to the actuator (22). Each node (24, 26) is configured such that during normal operations the main controller (42) provides data (54) to the actuator (22) that controls the actuator (22) and the supervisory controller (44) generally does not provide data to the actuator (22) that controls the actuator (22). Each node (24, 26) is configured such that if it is determined that the main controller (42) is providing improper data, the supervisory controller (44) provides data (58) to the actuator (22) that controls the actuator (22) and the main controller (42) does not provide data to the actuator (22) that controls the actuator (22).
AbstractList A distributed architecture system including a plurality of nodes (24, 26) operatively coupled together by a bus (28). Each node (24, 26) includes a main controller (42) configured to provide data to the bus (28) and to an actuator (22), and a supervisory controller (44) configured to provide data to the bus (28) and to the actuator (22). Each node (24, 26) is configured such that during normal operations the main controller (42) provides data (54) to the actuator (22) that controls the actuator (22) and the supervisory controller (44) generally does not provide data to the actuator (22) that controls the actuator (22). Each node (24, 26) is configured such that if it is determined that the main controller (42) is providing improper data, the supervisory controller (44) provides data (58) to the actuator (22) that controls the actuator (22) and the main controller (42) does not provide data to the actuator (22) that controls the actuator (22).
Author DISSER, ROBERT J
DEGOUL, PAUL
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DocumentTitleAlternate Bremssystem mit einer fehlertoleranten Kommunikationsknoten-Architektur
Système de freinage avec une architecture de n?ud de communication a tolérance d'erreur
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Snippet A distributed architecture system including a plurality of nodes (24, 26) operatively coupled together by a bus (28). Each node (24, 26) includes a main...
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SubjectTerms ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL
BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL
PERFORMING OPERATIONS
PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OFVEHICLES
TRANSPORTING
VEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF
VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
VEHICLES IN GENERAL
Title Fault-tolerant node architecture for distributed systems
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