Abstract

A greater standard of network confidentiality and protection is generally accepted as a vital component of securing this data when employed by medical practitioners as well as during storage to guarantee that patient data are maintained safe from intruders. This paper develops block chain cryptography and bio-informatics verification architecture for WBANs implementations. As a result, there is a deep desire to solve security and privacy challenges with WBANs. WBANs confront a wide range of problems. Because of its versatility in a wide range of applications, WBAN is a favoured battleground for cybercriminals. This work also provides a blockchain integrity check and bio-informatics authentication framework for WBANs implementations. Hence there is an important interest to address security and privacy problems in WBANs.

Highlights

  • A body area network (BAN) is a network of wireless sensors mounted in, on and across the body that is shortrange

  • An EEG tracker, for instance, was intended for brain electric activity control. Another example is the electrical cardiogram (ECG) sensor developed for cardiac activity control [6]-[7]

  • WBAN collects health data from the observed bodily state using a network of biological sensors

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Summary

INTRODUCTION

A body area network (BAN) is a network of wireless sensors mounted in, on and across the body that is shortrange. It offers short distance data communication, limited to a few metres range. The basic concept is shown in figure 1 below This new network type uses electronically implanted and wearable circuits. It can be used in a range of other areas and technologies such as emissions monitoring, physiological and wellbeing monitoring, contact with human machine, education and entertainment

Various Utility of WBAN in Health Monitoring
METHODOLOGY
Comparative Performance Analysis
CONCLUSION
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