Method for encrypting communication by adopting dynamic vector matrix
A technology of dynamic vector and encrypted communication, which is applied in the field of encryption, can solve problems such as inability to know each other, achieve the effect of strengthening confidentiality, solving information security problems, and eliminating security threats
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[0031] Such as figure 1 As shown, when the communication starts, the sender first translates the password into ciphertext by using the first set of keys and XOR operation, and sends the ciphertext S1 encrypted with the first set of keys, and the receiver accepts the information , translate it into plaintext S2 with the first set of keys, encrypt the plaintext password with the second set of keys into ciphertext, and send it to the sender S3, the sender receives the ciphertext and translates it into plaintext S4 with the second set of keys, and judges whether Consistent with the issued password S6, if yes, confirm that it is correct, start communication S7, otherwise terminate communication, check the problem S5.
[0032] Take the 16-bit password as an example:
[0033] Set the first set of keys to
[0034] 110100101100011111010010110001111101001011000111,
[0035] The second set of key is 0110011100011010011001100110001101001100110000011010, the password is 1222423631254322...
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