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Convolutional-Code-Specific CRC Code Design

机译:卷积码专用CRC码设计

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摘要

Cyclic redundancy check (CRC) codes check if a codeword is correctly received. This paper presents an algorithm to design CRC codes that are optimized for the code-specific error behavior of a specified feedforward convolutional code. The algorithm utilizes two distinct approaches to computing undetected error probability of a CRC code used with a specific convolutional code. The first approach enumerates the error patterns of the convolutional code and tests if each of them is detectable. The second approach reduces complexity significantly by exploiting the equivalence of the undetected error probability to the frame error rate of an equivalent catastrophic convolutional code. The error events of the equivalent convolutional code are exactly the undetectable errors for the original concatenation of CRC and convolutional codes. This simplifies the computation because error patterns do not need to be individually checked for detectability. As an example, we optimize CRC codes for a commonly used 64-state convolutional code for information length demonstrating significant reduction in undetected error probability compared to the existing CRC codes with the same degrees. For a fixed target undetected error probability, the optimized CRC codes typically require 2 fewer bits.
机译:循环冗余码校验(CRC)码检查是否正确接收到码字。本文提出了一种用于设计CRC码的算法,该算法针对指定的前馈卷积码的特定码错误行为进行了优化。该算法利用两种不同的方法来计算与特定卷积码一起使用的CRC码的未检测到的错误概率。第一种方法列举了卷积码的错误模式,并测试每个卷积码是否可检测。第二种方法通过利用未检测到的错误概率与等效灾难性卷积码的帧错误率的等价性,大大降低了复杂度。等效卷积码的错误事件恰好是CRC和卷积码的原始级联无法检测到的错误。由于不需要单独检查错误模式的可检测性,因此简化了计算。例如,我们针对信息长度的常用64状态卷积码优化了CRC码,与现有CRC码的相同程度相比,它显着降低了未检测到的错误概率。对于固定的目标未检测到的错误概率,优化的CRC码通常需要少2位。

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