Radio frequency identification (RFID) technology is witnessing a recent explosion of development in both industry and academia. A number of applications include supply chain management, electronic payments, RFID passports, environmental monitoring and control, office access control, intelligent labels, target detection and tracking, port management, food production control, animal identification, and so on. RFID is also an indispensable foundation to realize the pervasive computIng paradigm—“Internet of things.” It is strongly believed that many more scenarios will be identified when the principles of RFID are thoroughly understood, cheap components available, and when RFID security is guaranteed.
标签: Architectures NETWORKS SENSOR RFID AND
上传时间: 2020-06-08
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Radio frequency identification (RFID) is gaining in popularity, especially as we find ourselves in this communications age and headed towards a ubiquitous computIng world. Automatic identification systems become an important aspect not just in today’s technology but also as part of our daily life. We need RFID in our cars, transportation systems, access points, and even simple transactions; we also acknowledge the need for RFID in our logistics systems, healthcare, and tracking and locating applications.
标签: RFID-Enabled Appications Design Sensor and
上传时间: 2020-06-08
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We are in the era of ubiquitous computIng in which the use and development of Radio Frequency Iden- tification (RFID) is becoming more widespread. RFID systems have three main components: readers, tags, and database. An RFID tag is composed of a small microchip, limited logical functionality, and an antenna. Most common tags are passive and harvest energy from a nearby RFID reader. This energy is used both to energize the chip and send the answer back to the reader request. The tag provides a unique identifier (or an anonymized version of that), which allows the unequivocal identification of the tag holder (i.e. person, animal, or items).
上传时间: 2020-06-08
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This book was written by Michael Margolis with Nick Weldin to help you explore the amazing things you can do with Arduino. Arduino is a family of microcontrollers (tiny computers) and a software creation envi- ronment that makes it easy for you to create programs (called sketches) that can interact with the physical world. Things you make with Arduino can sense and respond to touch, sound, position, heat, and light. This type of technology, often referred to as physical computIng, is used in all kinds of things, from the iPhone to automobile elec- tronics systems. Arduino makes it possible for anyone—even people with no program- ming or electronics experience—to use this rich and complex technology.
上传时间: 2020-06-09
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Human Factors and Systems Interaction aims to address the main issues of concern within systems interface with a particular emphasis on the system lifecycle development and implementation of interfaces and the general implications of virtual, augmented and mixed reality with respect to human and technology interaction. Human Factors and Systems Interaction is, in the first instance, affected by the forces shaping the nature offuture computIng and systems development
标签: Interactions Advances Factors System Human and in
上传时间: 2020-06-10
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Although state of the art in many typical machine learning tasks, deep learning algorithmsareverycostly interms ofenergyconsumption,duetotheirlargeamount of required computations and huge model sizes. Because of this, deep learning applications on battery-constrained wearables have only been possible through wireless connections with a resourceful cloud. This setup has several drawbacks. First, there are privacy concerns. Cloud computIng requires users to share their raw data—images, video, locations, speech—with a remote system. Most users are not willing to do this. Second, the cloud-setup requires users to be connected all the time, which is unfeasible given current cellular coverage. Furthermore, real-time applications require low latency connections, which cannot be guaranteed using the current communication infrastructure. Finally, wireless connections are very inefficient—requiringtoo much energyper transferredbit for real-time data transfer on energy-constrained platforms.
标签: Embedded_Deep_Learning Algorithms
上传时间: 2020-06-10
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Computer science as an academic discipline began in the 1960’s. Emphasis was on programming languages, compilers, operating systems, and the mathematical theory that supported these areas. Courses in theoretical computer science covered finite automata, regular expressions, context-free languages, and computability. In the 1970’s, the study of algorithms was added as an important component of theory. The emphasis was on making computers useful. Today, a fundamental change is taking place and the focus is more on a wealth of applications. There are many reasons for this change. The merging of computIng and communications has played an important role. The enhanced ability to observe, collect, and store data in the natural sciences, in commerce, and in other fields calls for a change in our understanding of data and how to handle it in the modern setting. The emergence of the web and social networks as central aspects of daily life presents both opportunities and challenges for theory.
标签: Foundations Science Data of
上传时间: 2020-06-10
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The 9th International Conference on Large-Scale Scientific Computations (LSSC 2013) was held in Sozopol, Bulgaria, during June 3–7, 2013. The conference was organized and sponsored by the Institute of Information and Communication Technologies at the Bulgarian Academy of Sciences.
标签: Large-Scale Scientific computIng
上传时间: 2020-06-10
上传用户:shancjb
1.1.概述Advanced TCA(Advanced Telecom computIng Architecture,简称ATCA)标准是由Compact PCI标准进一步发展而来,由于在高性能和高稳定性上有了很大的提升,因此,可以满足未来几年电信领域技术发展的需求。目前,ATCA标准已在公司某些产品线提出需求和引用,为配合硬件平台和产品线即将对ATCA标准展开的全面的产品研发,结构系统部提出对ATCA标准的结构提前预研设计,避免发生类似前期产品设计中在新标准的引用上时间紧、对标准理解不透、产品缺乏实际应用检验就批量生产等现象而导致的一系列问题。ATCA标准中对机械结构部分的相关接口、尺寸和形式等作了详细描述。由于本项目为结构预研项目,所以本方案仅涉及插箱部分关键结构形式方面的内容描述,不对实际产品应用中的结构形式作分析。1.2.目标1、对目前市场上的ATCA类产品的结构性能做对比分析;2、插箱总体结构上体现整机结构功能模块的布局和性能实现,单板结构方面重点对起拔器性能做分析;3、满足ATCA际准对设备散热能力的要求;4、满足设备在EMCESD方面的性能要求;5、体现局部功能单元的方案实现细节。
标签: ATCA标准
上传时间: 2022-07-04
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Matlab_2016a 完整破解版下载 使用增强的设计环境和 UI 组件集开发 MATLAB 应用。深度学习用于图像分类问题。访问模板、最新模型以及精选示例。创建包含事件操作和新模块的离散事件模型和调度程序。使用标准座舱仪器显示飞行条件。在线编辑器,用于:开发包含结果和图形以及相关代码的实时脚本创建用于分享的交互式描述,包括代码、结果和图形以及格式化文本、超链接、图像及方程式MATLAB应用设计器,使用增强的设计环境和扩展的 UI 组件集构建带有线条图和散点图的 MATLAB®应用全新多 y-轴图、极坐标图和等式可视化暂停、调试和继续 MATLAB 代码执行Neural Network Toolbox使用 Parallel computIng Toolbox™ 中的 GPU 加速深入学习图像分类任务的卷积神经网络 (CNN)Symbolic Math Toolbox与 MATLAB 在线编辑器集成,以便编辑符号代码和可视化结果,并将 MuPAD® 笔记本转换为实时脚本Statistics and Machine Learning ToolboxClassification Learner 应用,可以自动培训多个模型,按照级别标签对结果进行可视化处理,并执行逻辑回归分类Control System Toolbox新建及重新设计的应用,用于设计 SISO 控制器、自动整定 MIMO 系统和创建降阶模型Image Acquisition Toolbox支持 Kinect® for Windows® v2 和 USB 3 VisionComputer Vision System Toolbox光学字符识别 (OCR) 训练程序应用、行人侦测和来自针对 3-D 视觉的动作和光束平差的结构体Trading Toolbox对交易、灵敏性和交易后执行的交易成本分析Simulink 产品系列Simulink通过访问模板、最近模型和精选示例更快开始或继续工作的起始页自动求解器选项可更快速地设置和仿真模型针对异构设备的系统模型仿真,例如 Xilinx®和 Altera® SoC 架构Simulink® 单位,可在 Simulink、Stateflow® 和 Simscape™ 组件的接口指定单位、对其进行可视化处理并检查变量源和接收器模块,用于定义变量条件并使用生成代码中的编译器指令将其传播至连接的功能Aerospace Blockset标准座舱仪器,用于显示飞行条件SimEvents全新离散事件仿真和建模引擎,包括事件响应、MATLAB 离散事件系统对象制作以及 Simulink 和 Stateflow 自动域转换Simscape全新方程简化和仿真技术,用于生成代码的快速仿真和运行时参数调整Simscape FluidsThermal Liquid 库,用于对属性随温度而变化的液体的系统建模Simulink Design Optimization用于实验设计、Monte Carlo 仿真和相关性分析的灵敏度分析工具Simulink Report Generator三向模型合并,以图形方式解决 Simulink 项目各修订版之间的冲突信号处理和通信Antenna Toolbox电介质建模,用于分析天线和有限天线阵列中的基质效果RF ToolboxRF Budget Analyzer,用于为级联的射频组件计算增益、噪声系数和 IP3SimRF自动射频测试工作台生成Audio System Toolbox一款用于设计和测试音频处理系统的新产品WLAN System Toolbox一款用于对 WLAN 通信系统的物理层进行仿真、分析和测试的新产品代码生成Embedded Coder编译器指令生成,将信号维度作为 #define 进行实施HDL Coder针对 HDL 优化的 FFT 和 IFFT,支持每秒 G 字节采样 (GSPS) 设计的帧输入HDL VerifierPCIe FPGA 在环,用于通过 PCI Express® 接口仿真 Xilinx® KC705/VC707 和 Altera®Cyclone® V GT/Stratix V DSP 开发板上的算法验证和确认Polyspace Code Prover支持 long-double 浮点,并且改进了对无穷大和 NaN 的支持Simulink Design Verifier对 C 代码 S-function 自动生成测试IEC Certification Kit对 Simulink Verification and Validation™ 提供 IEC 62304 医学标准支持Simulink Test使用 Simulink Real-Time™ 制作和执行实时测试
上传时间: 2013-07-09
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