Tabla de Contenidos:
  • VLSI AND COMPUTERARCHITECTURE
  • VLSI AND COMPUTER ARCHITECTURE
  • CONTENTS
  • PREFACE
  • DESIGN CONSIDERATIONS AND ALGORITHMSFOR BROADBAND FIXED WIMAX SYSTEMS
  • Abstract
  • 1. Introduction
  • 1.1. Introduction
  • 1.2. Orthogonal Frequency Division Multiplexing (OFDM)
  • 1.2.1. Non-iterative OFDM Scheme
  • 1.2.2. Iterative OFDM Scheme
  • 1.3. SC-FDE
  • 1.4. Quantitative Results
  • 2. Time-Domain Solutions
  • 2.1. Time-Domain Turbo Equalization for SISO System
  • 2.1.1. Initial stage
  • 2.1.2. Subsequent Stages
  • 2.1.3. Complexity Comparison
  • 2.2. Time-Domain Turbo Equalization for MIMO Systems2.2.1. Initial Stage
  • 2.2.2. Subsequent Stages
  • 2.3. Performance Comparison
  • 3. Conclusions
  • References
  • VLSI INTERCONNECTS AND THEIR DELAYPERFORMANCE
  • Abstract
  • 1. Introduction
  • 2. Modeling Interconnect as RC & RLC Circuits
  • 2.1. Lumped and Distributed Models
  • 3. Extraction of Interconnect Parasitics
  • 4. Propagation Delay through Driver Interconnect Load Model
  • 4.1. Driver Delay Models
  • 4.2. Interconnect Delay Models
  • 4.3. Composite Driver-Interconnect-Load Model-A Case Study
  • 4.3.1. Effect of Short-Circuit Current on Propagation Delay4.3.2. Fifty Percent Propagation Delay Evaluation
  • 5. Delay Minimization Techniques
  • 6. Conclusion
  • References
  • DEVELOPMENT, VALIDATION AND EVALUATION OF ASPACE QUALIFIED LONG-LIFE FLIGHTCOMPUTER SERVER
  • Abstract
  • 1. Introduction
  • 2. Single Board Microcomputers
  • 3. Fault Protections For Single Board Microcomputers
  • 3.1 Protections Against Seu Events
  • 3.2 Latch-Up Protection
  • 3.3 Other Protections
  • 4. Sqllcs Integration And Validation
  • 4.1 Hardware And Software Tools Developed For Sqllcs Validation4.2 Satellite Simulator
  • 4.3 SOFDEVO Software
  • 4.4 Earth Station Software
  • 5. Reliability Study Of Sqllcs Hardware
  • 5.1 SQLLCS Maintenance
  • 5.2 Reliability of an SQLLCS Assembled with Three SBMs
  • 5.3 Reliability for a Single SBM
  • 5.4 Reliability for a SQLLCS Assembled with Two SBMs
  • 6. Conclusion
  • Acknowledgments
  • References
  • NUMERICAL SIMULATION OF QUANTUMWAVEGUIDES
  • Abstract
  • 1. Introduction
  • 2. Transparent Boundary Conditions for the Two DimensionalSchrÂ?odinger Equation3. Discrete Transparent Boundary Conditions for the Two DimensionalSchrÂ?odinger Equation
  • 3.1. The Difference Equations
  • 3.2. Derivation of DTBCs for the Two Dimensional SchrÂ?odinger Equation
  • 3.3. Approximation of the DTBCs by Sums of Exponentials
  • 3.4. Fast Evaluation of the Discrete Convolution
  • 3.5. Implementation of the DTBCs
  • 4. Numerical Results
  • 4.1. Travelling GaussianWave Functions
  • 4.2. QuantumWaveguide Simulation
  • Conclusion
  • Acknowledgements