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出版社:高等教育出版社

以下为《Frontiers of Information Technology&Electronic Engineering十周年论文精粹》的配套数字资源,这些资源在您购买图书后将免费附送给您:
  • 高等教育出版社
  • 9787040644579
  • 1版
  • 47265640-4
  • 16开
  • 260
  • 通用
  • 本科 研究生及以上
内容简介

本书精选收录了Frontiers of Information Technology & Electronic Engineering(《信息与电子工程前沿(英文)》)近十年发表过的10篇具有代表性的高质量论文,内容涵盖通信技术、人工智能、信号处理、密码学、控制工程等多个领域。这些论文由期刊编委会遴选,通过原汁原味地呈现,回顾了信息与电子工程领域这十年间的发展成就,同时期待以新的出版形式,吸引该领域更多专家学者及从业者的关注和参与,激发更多的创新思维和研究热情,共同推动我国信息与电子工程的创新发展。

目录
目录
 前辅文
 Using Kinect for real-time emotion recognition via facial expressions
 Resampling methods for particle filtering: identical distribution, a new method, and comparable study
 Real-time road traffic state prediction based on ARIMA and Kalman filter
 Recognition of walking environments and gait period by surface electromyography
 Classification of EEG-based single-trial motor imagery tasks using a B-CSP method for BCI
 Efficient construction of a substitution box based on a Mordell elliptic curve over a finite field
 Multi-UAV obstacle avoidance control via multi-objective social learning pigeon-inspired optimization
 FlowDNN: a physics-informed deep neural network for fast and accurate flow prediction
 Phase synchronization and energy balance between neurons
 Model division multiple access for semantic communications
 前辅文
 Using Kinect for real-time emotion recognition via facial expressions
 Resampling methods for particle filtering: identical distribution, a new method, and comparable study
 Real-time road traffic state prediction based on ARIMA and Kalman filter
 Recognition of walking environments and gait period by surface electromyography
 Classification of EEG-based single-trial motor imagery tasks using a B-CSP method for BCI
 Efficient construction of a substitution box based on a Mordell elliptic curve over a finite field
 Multi-UAV obstacle avoidance control via multi-objective social learning pigeon-inspired optimization
 FlowDNN: a physics-informed deep neural network for fast and accurate flow prediction
 Phase synchronization and energy balance between neurons
 Model division multiple access for semantic communications