Active Nodal Task Seeking for High-Performance, Ultra-Dependable Computing

Abstract

The Active Nodal Task Seeking(ANTS) approach to the design of multicomputer systems is named for its basic component: an Active Nodal Task- Seeker(ANT). In this system, there is no load balancing or load sharing, instead, each ANT computing node is actively finding out how it can contribute to the execution of the needed tasks. A run-time partition is established such that some of the ANT computing nodes are under exhaustive diagnosis at any given time. An ANTs multicomputer system can achieve a mean time to failure of more than 20 years with just 8 computing nodes and 3 buses, while the minimum requirements are 3 computing nodes and 1 bus, and with a worst case computing node failure rate of 5 x 0.0001 per hour. This work has been motivated by the need to develop high-performance multicomputer systems for radar, active and passive sonar, and electronic warfare that can provide ultra-dependable performance for more than 20 years without field repairs. We argue that high performance is also an attribute of an ANTS computing system, because the overhead of dynamic task scheduling is reduced and because efficient use is made of the available processing resources.

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Document Details

Document Type
Technical Report
Publication Date
Jul 01, 1994
Accession Number
ADA282924

Entities

People

  • Donald W. Tufts
  • James W. Cooley
  • Jien-chung Lo

Organizations

  • University of Rhode Island

Tags

Communities of Interest

  • Electronic Warfare
  • Space

DTIC Thesaurus Topics

  • Algorithms
  • Communication Systems
  • Computer Programming
  • Computers
  • Control Systems
  • Detection
  • Electronic Warfare
  • Engineering
  • Failure Mode And Effect Analysis
  • Fault Tolerance
  • Passive Sonar
  • Probability
  • Radar
  • Reliability
  • Scheduling (Production)
  • Sonar
  • Time Intervals

Fields of Study

  • Computer science

Readers

  • Agent-Based Social Robotics and Mobile-Assisted Learning in Virtual Environments.
  • Parallel and Distributed Computing.

Technology Areas

  • Microelectronics
  • Microelectronics - Microelectromechanical Systems