Site Logo E-PROJECTTOPICS

DEVELOPMENT OF A MODIFIED BACTERIAL FORAGING OPTIMIZATION ALGORITHM BASED BLACK HOLE ATTACK MITIGATION MODEL FOR WIRELESS SENSOR NETWORKS


πŸ“


Presented To


Engineering Department

πŸ“„ Pages: 85       🧠 Words: 10353       πŸ“š Chapters: 5 πŸ—‚οΈοΈ For: PROJECT

πŸ‘οΈβ€πŸ—¨οΈοΈοΈ Views: 462      

⬇️ Download (Complete Report) Now!

ABSTRACT
This study is aimed at the development of a mechanism for black hole attack mitigation in Wireless Sensor Network (WSN) using a modified Bacterial Foraging Optimization Algorithm (BFOA). A total of 200 randomly generated bacterial sensor nodes with a communication range of 20m were deployed in a 100mx100m network coverage area, consisting of four base stations. The radii 20m, 30m and 40m were chosen for the black hole region. The algorithm was implemented in MATLAB R2015b. In all tests carried out, the results obtained at 40m radius showed the effect of the black hole attack better than those at 20m and 30m. Successful packet delivery probabilities of 83.52%, 95.78%, 97.26% and 99.78% respectively were achieved at 40m radius for one, two, three and four base stations respectively. Significant reduction in false positive was observed when the base stations were increased. A negligible value of about 0.003% false positive was observed with four base stations using 40m radius of black hole region. Average delivery times of 31sec, 37sec, 43sec and 49sec were achieved at 40m radius for one, two, three and four base stations respectively. The times indicated that the routing complexity increased as the number of base stations increased. The performance of the modified BFOA based method showed packet delivery probability improvement of 5.48%, 9.67%, 0.18% and 1.01% over the standard BFOA based method as the base stations were increased from one to four respectively. As the base stations were increased to five, six, seven and eight, successful packet delivery probabilities of 99.39%, 99.69%, 99.79% and 99.82% respectively were achieved using 40m radius of black hole region. The trend observed for packet delivery showed that optimum efficiency is achieved with quadrant placement of base stations. The results obtained indicated that optimal placement of the base stations minimized the effect of black hole attack and ensured successful packet delivery.

PLEASE NOTE

This material is a comprehensive and well-written project, structured into Chapter (1 to 5) for clarity and depth.


To access the full material click the download button below


OR


Contact our support team via Call/WhatsApp: 09019904113 for further inquiries.

Thank you for choosing us!

πŸ“„ Pages: 85       🧠 Words: 10353       πŸ“š Chapters: 5 πŸ—‚οΈοΈ For: PROJECT

πŸ‘οΈβ€πŸ—¨οΈοΈοΈ Views: 462      

⬇️ Download (Complete Report) Now!

πŸ”— Related Topics

STABILIZATION OF BLACK COTTON SOIL WITH LOCUST BEAN WASTE ASH THE EFFECT OF ELAPSED TIME AFTER MIXING ON THE PROPERTIES OF MODIFIED LATERITE TOWARDS SIMPLIFIED COMPUTER-BASED ANALYSIS OF SKEWED-BRIDGES DEVELOPMENT OF A SHUNT ACTIVE POWER FILTER FOR HARMONIC REDUCTION USING SYNCHRONOUS REFERENCE FRAME WITH SPACE VECTOR PULSE WIDTH MODULATION THE EFFECT OF ELAPSE TIME ON THE GEOTECHNICAL PROPERTIES OF LIME-BAGASSE ASH STABILIZED BLACK COTTON SOIL DESIGN AND DEVELOPMENT OF AN OPTIMIZED FLUXGATE MAGNETOMETER FOR IMPROVED EARTH’S MAGNETIC FIELD STUDIES DEVELOPMENT AND CHARACTERIZATION OF RECYCLED HIGH DENSITY POLYETHYLENE (RHDPE)/NATURAL FIBRE COMPOSITES DEVELOPMENT AND PERFORMANCE EVALUATION OF AN AGITATED QUENCHING TANK/BATH DEVELOPMENT OF A ROBUST DIGITAL IMAGE WATERMARKING TECHNIQUE IN DISCRETE ORTHONORMAL STOCKWELL TRANSFORM DOMAIN BASED ON PHOTON POLARIZATION QUICK RESPONSE TRAVEL DEMAND MODELLING DEVELOPMENT OF CANNY OPERATOR BASED GUI FOR THE MEASUREMENT OF OPTICAL RETURN LOSS MODELING AND SIMULATION OF COMPACT FLUORESCENT LAMP FOR THE ANALYSIS AND MITIGATION OF HARMONICS INJECTION INTO POWER DISTRIBUTION NETWORK DEVELOPMENT OF AN IMPROVED ERGODIC CAPACITY OF UNDERLAY COGNITIVE RADIO WITH IMPERFECT CHANNEL STATE INFORMATION DESIGN AND ENVIRONMENTAL - BEHAVIOUR MODELLING OF A BLUETOOTH CONTROLLED PLANTER ROBOT DESIGN, DEVELOPMENT AND PERFORMANCE EVALUATION OF A MULTIPLE SANDCRETE BLOCKS MOULDING MACHINE DEVELOPMENT OF AN IMPROVED ALGORITHM FOR POWER LINE DETECTION IN OPTICAL IMAGES USING FRANGI FILTER AND FIRST ORDER DERIVATIVE OF GAUSSIAN DESIGN AND DEVELOPMENT OF A CARBONATOR FOR CARBON DIOXIDE CAPTURE USING LOCALLY PRODUCED LIME DEVELOPMENT AND CHARACTERISATION OF EPOXY/BORASSUS PALM (Borassus aethiopum Mart.) LEAF STALK FIBRE REINFORCED COMPOSITE DEVELOPMENT OF A MODEL FOR INTERNAL NETWORK INTRUSION DETECTION SYSTEM FOR MULTI DISCIPLINARY CAMPUS NETWORK DEVELOPMENT OF A DISTRIBUTED BIG DATA FUSION ARCHITECTURE FOR MACHINE-TO-MACHINE COMMUNICATION USING ENSEMBLE LEARNING

click on whatsapp