Communication cost analysis of the proposed Sample Clauses

Communication cost analysis of the proposed scheme In a constrained environment, we must seriously consider the impact of communication in the total energy cost of an authentication and key agreement scheme. In fact, transmission consumes more energy than computation, such as 1 bit transmitted equals an execution of about 900 CPU instructions (Xxxxxxxxx et al., 2013). In the proposed scheme, the nonce value and the secret key Xi are generated through a trusted platform module (TPM) (Xxxxxx, 2011). We consider that the length of the nonce value is 8 bytes, the identity of the sensor node is 8 bytes, and the masked identity is 16 bytes. However, each hash value sent in the different messages has 8 bytes instead of 16 bytes. We divide the result of the hash value An efficient authentication and key agreement scheme 29 (16 bytes) into two values of 8 bytes, and we apply an XOR operation between the two parts. Thus, the result of the XOR operation is sent as an hash value. In order to show the efficiency of the proposed scheme, we study the communication cost of the different exchanged messages (see Table 4). Then, we compare the sensor communication cost with Xxx et al.’s (2013) scheme, Xxxxx et al.’s (2015) scheme, Xxx’s (2016) scheme, Xxxxxx et al.’s (2016) scheme, and Xxxx et al.’s scheme (Xxxx and Xxxxx, 2016) (see Table 5). As a result from the communication cost analysis of proposed authentication and key agreement scheme, we deduce that the proposed scheme has a low communication cost on sensor nodes in both cases of authentication. Consequently, it offers a low energy cost on communication, which enhances the scheme performance. user@instant-contiki:~/Desktop$ avispa Case2.hlpsl --satmc SUMMARY SAFE DETAILS BOUNDED_NUMBER_OF_SESSIONS BOUNDED_SEARCH_DEPTH BOUNDED_MESSAGE_DEPTH PROTOCOL Case2.if GOAL %% see the HLPSL specification.. BACKEND SATMC COMMENTS STATISTICS ATTACK TRACE %% no attacks have been found..
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