Security issues in mobile wireless body area network with secured solutions
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Abstract
When a Body Sensor Network (BSN) that is linked to the
newlinebackbone via a wireless network interface roams from one
newlinecoverage zone to another then in between wireless-body-areanetworks (WBAN) interference created, which can cause
newlineserious throughput degradation and energy waste. When a
newlinewireless body area network become mobile then problem arises
newlineof inter process interference A necessity appears for efficient
newlineWBAN monitoring information extraction, high spatial reuse,
newlinedynamically fine tuning the monitoring process to suit the data
newlinequality, provision for allowing the translation of high-level
newlinerequirements of medical officers to low-level sensor
newlinereconfiguration. Issues related to security and possible
newlinesolutions must be taken in the research. Study brings out that
newlinethe current proposed solutions in security are still having
newlinelimitations needing further research. This thesis proposes an
newlineoptimized BSN handover strategy. RASS (Real-time Accurate
newlineand Scalable System) and VMISO(Virtual Multiple Input Single
newlineOutput) system implementation in WBAN, and procedure to
newlinemaximize the network throughput by jointly selecting stable
newlineroutes and assigning channels avoiding inter- and intra-flow
newlineinterferences based on mobility prediction.
newlineSome of the issues are addressed in WBANs, in which the
newlinecritical issues need to be solved are energy saving and security
newlinealong with inter-WBANs interference. To evade the interWBANs interference along with the control the transmissionxi
newlinepower on WBAN system, this paper presents a cooperative
newlinebased power control game algorithm which is utilized with the
newlinesocial interaction information model. In order to manage the
newlineWBAN with the security measures to transmit the patient data
newlinethroughout the system an Elliptic Curve Cryptography (ECC)
newlinealgorithm is used for authentication before initiating the
newlinetransmission. The performance of the proposed approach is
newlineevaluated along with the increased number of nodes while the
newlineoccurrence of an interference problem is also rigorous. The
newlineproposed approach provides the better results where the power
newlineis increased to maximize the system life time of WBAN
newlinecommunication through power game approach, which also
newlinemitigates the interference problem efficiently. The WBAN
newlinesystem uses ECC algorithm to perform authentication,
newlineencryption and decryption, which yield better security of
newlinepatient data to establish the communication between the
newlinenumbers of WBAN.
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