POTENTIAL AND MEMORY PROFICIENT REPLICATE DISCLOSURE IN WIRELESS SENSOR NETWORKS
| Author(s) | : | S Ravi Kumar, Dr D Sreenivasa Rao |
| Institution | : | Associate Professor, Electronics and Communication Engineering, St Martin’s Engineering College, Dhulapally, Secunderabad, India |
| Published In | : | Vol. 5, Issue 1 — January 2018 |
| Page No. | : | 434-438 |
| Domain | : | Engineering |
| Type | : | Research Paper |
| ISSN (Online) | : | 2348-4470 |
| ISSN (Print) | : | 2348-6406 |
Using the clone recognition protocol, we are designed for maximizing the clone recognition probability. Ourobjective would be to propose a distributed clone recognition protocol with random witness selection to be able to increasethe clone recognition probability as the negative impact of network lifetime and the advantages of data buffer storage oughtto be minimized. The ring structure facilitates energy-efficient data forwarding across the path for the witnesses and also thesink. We theoretically prove the suggested protocol is capable of 100 % clone recognition probability with trustful witnesses.Particularly, we exploit the place information of sensors and at random select witnesses situated in a diamond ring place toverify the authenticity of sensors and also to report detected clone attacks. Furthermore, in many existing clone recognitionprotocols with random witness selection plan, the needed buffer storage of sensors is generally determined by the nodedensity. Extensive simulations show our suggested protocol is capable of lengthy network lifetime by effectively disbursingthe traffic load over the network. The present system doesn't make certain that a minimum of one from the witnessescan look into the identity from the sensor nodes to find out whether there's a clone attack or otherwise. Theperformance from the ERCD protocol is evaluated when it comes to clone recognition probability, power consumption,network lifetime, and knowledge buffer capacity. Extensive simulation results show our suggested ERCD protocol is capableof superior performance with regards to the clone recognition probability and network lifetime with reasonable data buffercapacity.
S Ravi Kumar, Dr D Sreenivasa Rao, “POTENTIAL AND MEMORY PROFICIENT REPLICATE DISCLOSURE IN WIRELESS SENSOR NETWORKS”, International Journal of Advance Engineering and Research Development (IJAERD), Vol. 5, Issue 1, pp. 434-438, January 2018.








