With the advent and development of radio communication systems, security and data protection is highly exposed to challenges, threats and abuse. To reduce the damage of abusing radio communications and enhance their security, they should be used encrypted. Generally, encrypted communications used in the field are of conventional type and thus unreliable. One of the encryption algorithms currently used in radio communication systems is the AES cipher algorithm. The use of this algorithm in radio communications has recently become popular. Different ways to implement the AES algorithm are presented, three of which are explored in this paper and finally a new method for the AES algorithm on hardware of the department is recommended. To check the results of the implementation of three architectural styles, three different hardware systems have been employed in two optimized modes for speed and capacity. Architectures studied in this article include iterative, single-phase pipeline and four-phase pipeline architectures. Finally, a new method is proposed for iterative architecture and examined. AES cipher implementation result of the proposed method is required increased causeway, economy in hardware and energy.
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rafiee yekta,H , mazloum,J and zavvar torbati,A . (2014). Optimal Design of AES encryption for radio repeaters. Military Science and Tactics, 10(29), 139-158.
MLA
rafiee yekta,H , , mazloum,J , and zavvar torbati,A . "Optimal Design of AES encryption for radio repeaters", Military Science and Tactics, 10, 29, 2014, 139-158.
HARVARD
rafiee yekta H, mazloum J, zavvar torbati A. (2014). 'Optimal Design of AES encryption for radio repeaters', Military Science and Tactics, 10(29), pp. 139-158.
CHICAGO
H rafiee yekta, J mazloum and A zavvar torbati, "Optimal Design of AES encryption for radio repeaters," Military Science and Tactics, 10 29 (2014): 139-158,
VANCOUVER
rafiee yekta H, mazloum J, zavvar torbati A. Optimal Design of AES encryption for radio repeaters. Military Science and Tactics. 2014;10(29):139-158 (In Persian).