handshake protocol
- 网络握手协议;握手协定
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Implementation of Asynchronous Handshake Protocol Based Power Randomization Technique
基于异步握手协议的功耗随机技术实现
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The performance of the handshake protocol affects the security of the C / S system .
握手协议的设计好坏,直接影响着C/S通信的安全性。
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This paper introduces a fast handshake protocol for TLS .
介绍了一种快速的TLS握手协议。
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It can be divided into the record protocol and the handshake protocol .
它分为记录层协议和握手协议。
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For example : handshake protocol , session key , the production of key in RSA algorithm .
比如:握手协议,会话密钥,RSA公开密钥加密算法中密钥的产生等。
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The protocol is compatible with the standard TLS handshake protocol .
这种协议也提供对标准的TLS握手协议兼容。
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It also studied thoroughly the handshake protocol , basing on which to realize the asynchronous interface design .
重点讨论了异步接口的设计理论问题,深入研究了基于握手协议实现异步接口的方法。
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Attack Analysis of 4-way Handshake Protocol Based on 802.11i
基于802.11i的四次握手协议的攻击分析
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The interface module uses a four-phase handshake protocol to communicate with periphery synchronous circuits .
本文还设计实现了外围接口模块,采用四段握手协议的方式与外围同步电路进行交互。
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The bandwidth expenses of the standard SSL handshake protocol are big , and its network data communications efficiency is low .
标准安全套接层(SSL)握手协议带宽开销大且网络数据通信效率低。
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Finally it describes the selective encryption and the client / server 's handshake protocol before connection is really created .
最后描述了对消息进行选择性加密和用户/服务器之间建立连接握手协议交换会话密钥的过程。
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So this paper introduces the rate adaptive mechanism to improve the handshake protocol so that the entire network to achieve an optimal throughput .
因此本文引入速率自适应机制改进握手协议从而使整个网络达到一个最优的吞吐量。
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Inter-Connection Unit ( ICU ) use three-step handshake protocol to correctly transfer data and perform simple instructions .
互连单元(ICU)利用三步握手协议以较小的代价完成多路通道的数据传送,并可对数据进行简单处理。
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Design and analysis of IBC-based TLS handshake protocol
基于IBC的TLS握手协议设计与分析
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Cryptanalysis and improvement of a WTLS handshake protocol with user anonymity and forward secrecy
一种具有用户匿名性和前向安全性的WTLS握手协议的安全性分析及其改进
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This paper proposes a fast SSL handshake protocol with cache based on Elliptic Curve Cryptosystems ( ECC ) .
该文提出一种基于椭圆曲线密码体制、带缓存的快速SSL握手协议。
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To self-designed the dual port RAM handshake protocol for the gateway device , which provides a data buffering solution .
自行设计的双口RAM控制权握手协议,为网关设备的数据缓冲提供了了解决方案。
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A Fast Handshake Protocol for TLS
一种快速TLS握手协议分析与实现
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Authentication based on SSL authentication mechanism , it was accomplished by SSL handshake protocol , and it was Simple and effective .
身份认证功能基于SSL认证机制,通过封装SSL握手过程完成,简洁而有效。
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Analyse Handshake Protocol of SSL
解析SSL握手协议
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As a typical authentication and key exchange protocol , TLS handshake protocol could be analyzed under the framework of BR computational model .
用BR模型对TLS握手协议进行了计算分析与安全性证明。
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In order to perform secure transfer of information with SSL , a secure connection with SSL handshake protocol is to be created first .
在使用SSL进行信息的安全传输前,必须先使用SSL握手协议建立安全连接。
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Therefore , on the feasibility , this paper presents the solution as follows . ( 1 ) Using ECC to extend SSL handshake protocol .
因此就方案的可行性而言,本文给出如下的解决方案。1、利用ECC对SSL握手协议进行扩展。
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The asynchronous handshake protocol and the method of implementing asynchronous circuit are analyzed . The techniques of design asynchronous cell and related synthesis tools are also introduced .
论文分析了异步电路的握手协议和握手电路的实现方法,研究了异步单元电路的设计技术和相应的综合工具的使用。
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Synchronous function modules controlled by local clock have been encapsulated by asynchronous handshake protocol circuit , which have composed point to point GALS system .
将同步功能模块通过异步握手电路封装,构成了点对点的GALS系统。
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: This article briefly states the layer structure , the states , handshake protocol and cryptographic calculation of SSL V3.0 , and analyses its security .
文章简述了SSLV3.0的分层结构、协议状态、握手协议和加密参数计算,并对其安全性做出分析。
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The work we have done is : Firstly , require mastered asynchronous handshake protocol and LFSR to enlarge the power randomization are proposed .
本文所做的工作如下:1,提出了请求主导的异步握手协议,LFSR被创新性地运用于增加功耗随机化程度。
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In this article , a solution has been proposed to improve the handshake protocol and record protocol of SSL in order to implement the digital signature for SSL .
提出了一种改造SSL握手协议和记录协议实现SSL数字签名的解决方案。
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However , the transmission of control packets will consume bandwidth resources . When there are no hidden stations , using four-way handshake protocol lower channel utilization instead of improving .
然而控制报文的传输也会占用带宽资源,在不存在隐藏站点时候使用四次握手协议并不能提高信道利用率,反而使之降低。
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The private handshake protocol has been designed and implemented , with the help of which the client was equipped with an engine of application which let user can select applications freely .
借助于设计并实现了的私有握手协议,客户装备了一个应用层协议引擎,用户可以自由选择各种应用。