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crc
- crc循环冗余检验的原理,很详细,可供学习和编程参考。
crc校验
- CRC C语言实现
CRC校验原理
- 关于CRC校验的原理介绍
CRC校验编程和硬件快速校验探讨
- CRC原理
CRC C
- CRC error correction, C language coding and decoding
stx_cookbook.zip
- Altera公司高端FPGA高级综合指导手册,包括:算术运算单元,浮点处理技巧,数据编码格式转换,视频处理,仲裁逻辑,多路选择,存储逻辑,计数器,通信逻辑,循环冗余校验,随机和伪随机函数,加密和同步等编码风格和技巧;,advanced synthesis cookbook for Altera high-end FPGA(Stratix),incuding coding style and design tricks for arithmetic,floating points oper
CRC
- CRC算法原理及实例-CRC algorithm and examples
CRCcheck
- crc检验生成详解详细说明了crc16 crc32 crc8的原理-crc check
CRC8
- it is a crc on 8 bytes
DNP3_CRC_Calculation
- SAMPLE CRC CALCULATIONS This document contains ‘C’ language coding examples that illustrate how to compute the DNP3 CRC.-SAMPLE CRC CALCULATIONS This document contains ‘C’ language coding examples that illustrate how to compute the DNP3 CRC.
CRCM
- CRC MATLAB 源程序,包括了CRC添加功能,输出直接为已添加CRC的数据,CRC8,16,24!-CRC MATLAB source code, including CRC add functionality, the output directly to the CRC of the data has been added, CRC8, 16,24!
crc16
- Calculate CRC-8 Values. Uses The CCITT-8 Polynomial, Expressed As X^8 + X^5 + X^4 + 1 -Calculate CRC-8 Values. Uses The CCITT-8 Polynomial, Expressed As X^8+ X^5+ X^4+ 1
CRC(1)
- CRC检错 内有详细信息提供您参考哦,很好用-Very good
crc_explain
- 循环冗余校验 CRC 的算法分析和程序实现。通信的目的是要把信息及时可靠地传送给对方,因此要求一个通信系统传输消息必须可靠与快速,在数字通信系统中可靠与快速往往是一对矛盾。为了解决可靠性,通信系统都采用了差错控制。本文详细介绍了循环冗余校验CRC(Cyclic Redundancy Check)的差错控制原理及其算法实现-Cyclic Redundancy Check
crc
- Various calculation algorithms for crc
crc
- a brief introduction of crc algorithm and there are three different program to implate crc algozithm
crc
- crc for any one to use it
W607
- 本文首先介绍了两种协作方式与OFDM框架,并结合OFDM技术进行了系统仿真,对比分析了OFDM系统与CRC编码OFDM系统与卷积码编码OFDM系统仿真性能。-two methods to realize cooperative diversity in OFDM systems are proposed simulations using OFDM techniques are performed and the performance of the CRC coding OFDM syst
error_detection_reliability_of_lte_crc_coding
- error detection reliability of lte crc coding
CRC-calculation-principle
- 这是一篇论文,通用并行CRC计算原理及其硬件实现方法-CRC calculation principle of universal parallel hardware implementation