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161
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162
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163
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164
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165
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166
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167
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168
Original test images: (a) Hailstones image; (b) Flowers image; (c) Chair image; (d) Bride image.
منشور في 2025الموضوعات: -
169
Images after decryption: (a) Hailstones image; (b) Flowers image; (c) Chair image; (d) Bride image.
منشور في 2025الموضوعات: -
170
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171
Example of byte substitution Process.
منشور في 2025"…Experimental results show that the proposed algorithm reduces encryption time to 2.2369 s for a 256256 grayscale image, representing an 87.08% improvement over traditional AES (17.3090 s) and a 48.41% improvement over other AES-based chaotic encryption algorithms (4.3360 s). …"
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172
Example of S-box.
منشور في 2025"…Experimental results show that the proposed algorithm reduces encryption time to 2.2369 s for a 256256 grayscale image, representing an 87.08% improvement over traditional AES (17.3090 s) and a 48.41% improvement over other AES-based chaotic encryption algorithms (4.3360 s). …"
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173
Example of addroundkey process.
منشور في 2025"…Experimental results show that the proposed algorithm reduces encryption time to 2.2369 s for a 256256 grayscale image, representing an 87.08% improvement over traditional AES (17.3090 s) and a 48.41% improvement over other AES-based chaotic encryption algorithms (4.3360 s). …"
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174
Bifurcation diagram analysis results.
منشور في 2025"…Experimental results show that the proposed algorithm reduces encryption time to 2.2369 s for a 256256 grayscale image, representing an 87.08% improvement over traditional AES (17.3090 s) and a 48.41% improvement over other AES-based chaotic encryption algorithms (4.3360 s). …"
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175
Information entropy analysis results.
منشور في 2025"…Experimental results show that the proposed algorithm reduces encryption time to 2.2369 s for a 256256 grayscale image, representing an 87.08% improvement over traditional AES (17.3090 s) and a 48.41% improvement over other AES-based chaotic encryption algorithms (4.3360 s). …"
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176
Lyapunov exponent of different chaotic maps.
منشور في 2025"…Experimental results show that the proposed algorithm reduces encryption time to 2.2369 s for a 256256 grayscale image, representing an 87.08% improvement over traditional AES (17.3090 s) and a 48.41% improvement over other AES-based chaotic encryption algorithms (4.3360 s). …"
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177
Cartesian histogram of Hailstones image: (a) Plaintext image; (b) Cipher image.
منشور في 2025الموضوعات: -
178
Polar histogram analysis of Hailstones image: (a) Plain image; (b) Cipher image.
منشور في 2025الموضوعات: -
179
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180