Self Healing Key Distribution With Revocation
标签: Distribution Revocation Healing Self
上传时间: 2014-01-27
上传用户:xuan‘nian
Abstract-In this paper, simple autonomous chaotic circuits coupled by resistors are investigated. By carrying out computer calculations and circuit experiments, irregular self-switching phenomenon of three spatial patterns characterized by the phase states of quasi-synchronization of chaos can be observed from only four simple chaotic circuits. This is the same phenomenon as chaotic wandering of spatial patterns observed very often from systems with a large number of degrees of freedom. Namely, one of spatial-temporal chaos observed from systems of large size can be also generated in the proposed system consisting of only four chaotic circuits. A six subcircuits case and a coupled chaotic circuits networks are also studied, and such systems are confirmed to produce more complicated spatio-temporal phenomena.
标签: investigated Abstract-In autonomous resistors
上传时间: 2014-06-09
上传用户:h886166
All New Electronics Self-Teaching Guide (2008)
标签: Self-Teaching Electronics Guide 2008
上传时间: 2014-11-22
上传用户:xuanjie
A BIST (BUILT-IN SELF-TEST) STRATEGY FOR MIXED-SIGNAL INTEGRATED CIRCUITS
标签: MIXED-SIGNAL INTEGRATED SELF-TEST BUILT-IN
上传时间: 2013-12-03
上传用户:xzt
Aodv for NS-2. A mobile ad-hoc network (MANET) is a kind of wireless ad-hoc network, and is a self-configuring network of mobile routers connected wirelessly. MANET may operate in a standalone fashion, or may be connected to the larger Internet. Many routing protocols have been developed for MANETs over the past few years. This project evaluated three specific MANET routing protocols which are Ad-hoc On-demand Distance Vector (AODV), Dynamic Source Routing (DSR) and Dynamic MANET Ondemand routing protocol (DYMO) to better understand the major characteristics of these routing protocols. Different performance aspects were investigated in this project including packet delivery ratio, routing overhead, throughput and average end-to-end delay.
标签: network ad-hoc wireless mobile
上传时间: 2014-01-12
上传用户:zsjzc
This is a very good book on self learning electronics from Wiley publications and is very useful to understand basics of electronics for some one shifting from computer science to embedded system development
标签: very publications electronics learning
上传时间: 2017-09-24
上传用户:playboys0
随着电力电子技术的发展,高压换流设备在工业应用中日益广泛。其核心元件晶闸管(SCR)的电压与电流越来越高(已达到10KV/10KA以上),应用场合要求也越来越高。在国际上,晶闸管的光控技术发展日益成熟。根据对国内晶闸管技术发展前景和需求的展望,本文采用自供电驱动技术与光控技术相结合,研发光控自供电晶闸管驱动控制板,然后与晶闸管本体相结合即形成光控晶闸管工程化实现模型,其可作为光控晶闸管的替代技术。 在工程应用中,光控晶闸管的典型应用场合为四象限高压变频器和国家大型直流输变电系统等。随着国家节能工程的实施,高压变频器的应用范围越来越广泛,已成为工业节能中的重要环节。高压直流换流系统难度大,技术复杂,要求高,本论文研究的光控晶闸管替代技术只作为其储备技术之一。本论文以电流源型高压变频器作为该光控晶闸管替代技术的应用背景重点阐述。 电流源型高压变频器为了提高单机容量,通常是数个SCR串联使用。随着系统容量越来越大,装置对高压开关器件的要求也越来越高。如果一组串联SCR中某一个SCR该导通时没有导通,那么加在该组SCR上的电压都将加到该SCR上形成过电压,造成该器件的击穿损坏,甚至于一组串联SCR都被烧坏。为了克服上述问题,保证高压变频器中串联晶闸管能够安全可靠的工作,提高系统可靠性,有必要为晶闸管配备后备驱动系统。本文提出了给SCR驱动电路增设自供电驱动系统——SPDS (Self—Powered Drive System)的解决办法。SPDS基本功能是通过高位取能电路利用RC缓冲电路中的能量为监测电路和后备触发电路提供正常工作所需要的能量。它的优点是由于缓冲电路与晶闸管同电位,自供电驱动系统要求的电压隔离水平可以从几千伏降低到几百伏,节省了高压隔离变压器,节省了成本和体积,提高了系统可靠性。国外对相关内容已经有了深入研究,并将其应用在高压变频器产品中。在国内,目前还没有查到相关文献。本文为基于晶闸管的电流源型高压变频器设计了一种高压晶闸管自供电驱动系统,填补了国内空白,为自供电驱动系统的推广应用和其他高压开关器件自供电驱动系统的研制提供了参考。 本文详细介绍了串联高压晶闸管驱动系统的要求和RC缓冲电路的工作特 点,进而提出了SPDS的工作原理和具体实现方式,阐述了SPDS各部分组成及其功能。SPDS的核心技术是取能回路和触发方式的设计。本文在比较各种高压取能方式和触发方式优缺点的基础上,选择采用RC缓冲取能方式和光纤触发方式。 论文基于Multisim10仿真软件,结合高压晶闸管自供电驱动系统取能电路的原理,对高压晶闸管自供电驱动系统的核心部分——SPDS取能电路进行了仿真。通过搭建带SPDS取能电路的单相晶闸管仿真电路和电流源型高压变频器前侧变流电路的仿真模型,详细讨论了影响RC取能回路正常工作的各种因素。同时,通过设定仿真电路的参数,分析了其工作状况。根据得到的仿真波形图,证明了高压晶闸管自供电驱动系统可以达到有效触发晶闸管导通的设计目标,具有可行性。 为考察SPDS的实际工作性能,本文搭建了简易的SPDS低压硬件实验平台,为其高压条件下的工程化应用打好了基础。 在论文的最后,对高压晶闸管自供电驱动系统的发展方向进行了展望。 关键词:高压变频器;晶闸管驱动;自供电系统;高压换流;光控晶闸管
上传时间: 2013-05-26
上传用户:riiqg1989
光纤水听器自问世以来,在巨大的军事价值和民用价值推动下得到了迅速发展,已逐渐从实验室研究阶段走向工程应用。同时随着光纤水听器的不断发展,对水声信号的检测技术以及数字处理能力也提出了新的要求。论文在此背景下开展了一系列研究工作,并提出了利用FPGA(Field ProgrammableGate Array,现场可编程门阵列)实现光纤3×3耦合器解调算法的新思路。 目前干涉型光纤水听器的解调一般采用PGC(Phase Generated Carrier,相位生成载波技术)技术和基于3×3光纤耦合器干涉的解调技术。PGC技术在解调过程中引入了载波信号,它对采样率,激光器等的要求都较高,因此我们把目光投向3×3耦合器解调技术,文中对其解调原理进行了阐述,对采样率的确定进行了讨论,并对3×3耦合器三路输出不对称的情况进行了分析,最后在本文的结论部分提出了基于3×3耦合器解调的改良方案。 目前,光纤信号数字化解调的硬件实现采用DSP(Digital Signal Process,可编程数字信号处理器)信号处理机,与之相比,FPGA解调具有速度快、资源占用少、易于扩展等优势。本文对FPGA与DSP、ASIC(application-specificintegrated circuit,专用集成电路)实现方案进行了对比,分析了适合利用FPGA实现的算法所应具备的特征;介绍了3×3耦合器解调算法中各个模块的设计情况;分析了系统的工作情况,硬件的构造及芯片的选择,最后验证了利用FPGA可以实现3×3耦合器解调算法。
上传时间: 2013-07-03
上传用户:love1314
Abstract: A perfect voltage reference produces a stable voltage independent of any external factors. Real-world voltagereferences, of course, are subject to errors caused by many external factors. One causeof these major errors istemperature. Without care, it is easy to operate a voltage reference outside its operating temperature range. Thisapplication note describes how references respond to temperature changes, and how self-heating can cause a voltagereference to operate outside its recommended temperature range. Once understood, this knowledge can then be used toavoid making this design error.
上传时间: 2013-11-08
上传用户:xianglee
The purpose of this application note is to show an example of how a digital potentiometer can be used in thefeedback loop of a step-up DC-DC converter to provide calibration and/or adjustment of the output voltage.The example circuit uses a MAX5025 step-up DC-DC converter (capable of generating up to 36V,120mWmax) in conjunction with a DS1845, 256 position, NV digital potentiometer. For this example, the desiredoutput voltage is 32V, which is generated from an input supply of 5V. The output voltage can be adjusted in35mV increments (near 32V) and span a range wide enough to account for resistance, potentiometer and DCDCconverter tolerances (27.6V to 36.7V).
上传时间: 2014-12-23
上传用户:781354052