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Exact(14)
On receiving the ciphertext, the receiver can run the Decryption algorithm to decrypt the ciphertext with his private key.
The data signal is secured by using both the optical encryption key and optical address of the receiver before transmission, where finally the receiver who has the valid optical decryption key and optical address can decrypt the Ciphertext.
To decrypt, the ciphertext is processed with the same pin settings that were used to encrypt it but with the cyclical shift set to occur in the opposite direction.
The data user can decrypt the ciphertext only if A_o satisfies A_KP.
A user can decrypt the ciphertext correctly only if the access tree is satisfied by his attributes set.
computes the key with the knowledge of and, then decrypt the ciphertext to get msgb; guesses directly with correct probability.
Similar(46)
In this way, we ensure that the verifier cannot decrypt the ciphertexts alone, and the decryption is only performed by both the user and the verifier during the computation of Hamming distance of their corresponding inputs.
Once the above message is received by the server, it starts to decrypt the ciphertexts of Eqs.
The user (u_i) holds the public key (y_i) to encrypt the ratings and private key (x_i) to decrypt the ciphertexts.
All users jointly decrypt the ciphertexts of total ratings and flags [shown in Eqs. (15) and (16)] without revealing and individual's ratings.
Indeed, since usually signal samples assume only a limited range of values, an attacker will be easily able to decrypt the ciphertexts, or at least to derive meaningful information about them.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com