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• Abstract:
• Introduction:
• Literature Survey:
• System Analysis:
• Existing System:
• Disadvantages:
• Proposed System:
• Advantages:
• System Requirements:
• Block Diagram:
• Working Flow Diagram:
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RELIABILITY EVALUATION OF CONVENTIONAL AND
INTERLEAVED DC–DC BOOST CONVERTERS
TITLE
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ABSTRACT
Obviously for the correct operation of conventional boost converters, all
components should work correctly. Interleaved boost converters having several stages, can be
used to increase the reliability. So in this paper, a reliability comparison is done between the
conventional boost converter and the interleaved structure. Two different operation modes
are defined for the interleaved boost converter: half-power and full-power operation modes.
The reliability calculation is based on the Markov model of the converters. The power loss
effect of converter components on their failure rates, and therefore, on the reliability of
converter has been assessed. For the first time different failure rates have been considered
for different operation modes. Also a laboratory prototype of a two-stage interleaved boost
dc–dc converter has been built up and the failure rate of components in different operation
modes are calculated practically. Results show that in addition to other benefits, interleaved
structure has higher reliability and as the power increases, there will be a decrease in the
reliability.
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Reliability evaluation of conventional and interleaved dc–dc boost converters

  • 1. OUR OFFICES @ CHENNAI / TRICHY / KARUR / ERODE / MADURAI / SALEM / COIMBATORE /BANGALORE / HYDRABAD CELL: +91 99436 99916 / 99436 99926 / 99436 99936
  • 2. DOCUMENT FORMAT • Abstract: • Introduction: • Literature Survey: • System Analysis: • Existing System: • Disadvantages: • Proposed System: • Advantages: • System Requirements: • Block Diagram: • Working Flow Diagram: • Circuit Diagram: • Implementation: • Modules Description: • System Study: • System Testing: • Software Description: • Sample code: • Conclusion: • Future Enhancement: • References: OUR OFFICES @ CHENNAI / TRICHY / KARUR / ERODE / MADURAI / SALEM / COIMBATORE /BANGALORE / HYDRABAD CELL: +91 99436 99916 / 99436 99926 / 99436 99936
  • 3. RELIABILITY EVALUATION OF CONVENTIONAL AND INTERLEAVED DC–DC BOOST CONVERTERS TITLE OUR OFFICES @ CHENNAI / TRICHY / KARUR / ERODE / MADURAI / SALEM / COIMBATORE /BANGALORE / HYDRABAD CELL: +91 99436 99916 / 99436 99926 / 99436 99936
  • 4. ABSTRACT Obviously for the correct operation of conventional boost converters, all components should work correctly. Interleaved boost converters having several stages, can be used to increase the reliability. So in this paper, a reliability comparison is done between the conventional boost converter and the interleaved structure. Two different operation modes are defined for the interleaved boost converter: half-power and full-power operation modes. The reliability calculation is based on the Markov model of the converters. The power loss effect of converter components on their failure rates, and therefore, on the reliability of converter has been assessed. For the first time different failure rates have been considered for different operation modes. Also a laboratory prototype of a two-stage interleaved boost dc–dc converter has been built up and the failure rate of components in different operation modes are calculated practically. Results show that in addition to other benefits, interleaved structure has higher reliability and as the power increases, there will be a decrease in the reliability. OUR OFFICES @ CHENNAI / TRICHY / KARUR / ERODE / MADURAI / SALEM / COIMBATORE /BANGALORE / HYDRABAD CELL: +91 99436 99916 / 99436 99926 / 99436 99936
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