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Soft Input Decryption

机译:软输入解密

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摘要

This paper presents an approach to integrate decryption into the decoding process, and also gives an example to prove its advantages. The general idea considers the decryptor as a decoding component and not as an isolated unit in the decoding path between the channel and the source decoder. A decryptor produces useless output, if only one bit of its input, compared to the output of the encryptor, is modified. Therefore, it is important to improve the capability to correct input errors by the decryptor in case the channel decoder does not deliver correct bits. The presented solution supports the decryptor with soft output of the channel decoder. As far as known today, soft output has never been used by cryptographic mechanisms before. The example of a decryptor, which provides data origin authentication, proves that after decryption the error rate can drastically be reduced by using soft output from a Convolutional or Turbo Decoder as soft input to the decryptor. Results are given for digital signature verification based on elliptic curve cryptography transmitted over channels with a wide range of Signal-to-Noise Ratios.
机译:本文介绍了一种将解密集成到解码过程中的方法,并且还给出了证明其优点的示例。常规思想认为解密器作为解码组件,而不是作为信道和源解码器之间的解码路径中的隔离单元。解密器产生无用的输出,如果与加密器的输出相比只有一位输入,则被修改。因此,在信道解码器不提供​​正确的比特的情况下,可以通过解密器提高解密器来校正输入误差的能力是重要的。呈现的解决方案支持具有通道解码器的软输出的解密器。如今已知,软输出以前从未被密码机制使用过。提供数据原始身份验证的解密器示例证明,在解密后,通过使用从卷积或涡轮解码器作为解密器的软输入来减少错误率可以大大降低。基于椭圆曲线加密的数字签名验证给出了基于椭圆曲线的数字签名验证,其通过广泛的信噪比传输。

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