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Univ. Of Toyama Toyama‐shi Jpn | 論文
- Ultra-Short Pulse Generators Using Resonant Tunneling Diodes and Their Integration with Antennas on Ceramic Substrates
- Affinity Based Lateral Interaction Artificial Immune System(Human-computer Interaction)
- Avoiding the Local Minima Problem in Backpropagation Algorithm with Modified Error Function(Neural Networks and Bioengineering)
- Dual-Wavelength High-Power Laser Diodes Fabricated by Selective Fluidic Self-Assembly
- Dual wavelength high power laser diodes fabricated by Selective Fluidic Self-Assembly technique
- An Improved Maximum Neural Network with Stochastic Dynamics Characteristic for Maximum Clique Problem
- An Artificial Immune System with Feedback Mechanisms for Effective Handling of Population Size
- Fabricated on a GaAs-based Semiconductor-on-Insulator Substrate Using a Spin-On Low-k Dielectric Film
- Large Gate Leakage Current in AlGaN/GaN High Electron Mobility Transistors
- Electroluminescence in AlGaN/GaN High Electron Mobility Transistors under High Bias Voltage (Short Note)
- Temperature Distribution Measurement in AlGaN/GaN High-Electron-Mobility Transistors by Micro-Raman Scattering Spectroscopy : Semiconductors
- Quantum Interference Crossover-Based Clonal Selection Algorithm and Its Application to Traveling Salesman Problem
- An Improved Local Search Learning Method for Multiple-Valued Logic Network Minimization with Bi-objectives
- An Expanded Lateral Interactive Clonal Selection Algorithm and Its Application
- Improved Clonal Selection Algorithm Combined with Ant Colony Optimization
- An Improved Clonal Selection Algorithm and Its Application to Traveling Salesman Problems(Neural Networks and Bioengineering)
- A Novel Clonal Selection Algorithm and Its Application to Traveling Salesman Problem(Neural Networks and Bioengineering)
- A stochastic dynamic local search method for learning Multiple-Valued Logic networks
- An Improved Artificial Immune System (AIS) by Considering Different Affinities among Th Cells and Antigens
- High-Speed Operation of a Novel Frequency Divider Using Resonant Tunneling Chaos Circuit