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Biometric Analytics & Internet of Things
IoT or Internet of Things is a rage in today’s world with smart devices being connected
noted Bahaa Abdul Hadi. IoT devices are growing and are being used in different areas.
Smart homes have become a reality thanks to IoT. Security, however, remains a key
concern. The use of biometrics can help enhance security of IoT.
Biometrics and IoT
Biometrics refers to the use of systems to identify people based on their physical
characteristics or behavioral traits. Most commonly, fingerprint identification is used for
identification. Iris scanning and face scanning are other common methods. Biometrics
technology has advanced and as a result is a highly fool-proof system. Apart from its use in
other applications, biometrics is highly valuable in IoT.
IoT calls for smart devices to be connected. The devices exchange data in order to work
well. A security risk is possible if an authorized person gains access to the system. It is
important to ensure only the authorized person has access to IoT devices. Access control
can be made secure by using biometrics.
Another issue here is about how the biometric data is stored. If a hacker gets access to the
biometric data, they can then compromise the system. It is vital to ensure the biometric data
is protected and is secure. It should be ensured that the original biometric data is secured,
so it cannot be access. Any data stored in the system must be protected to prevent
unauthorized access.
How biometrics works in IoT
At the first stage, enrolment is done where data of the users is recorded for storage on the
database. The fingerprint or face is scanned and the features are converted to a pattern.
This is saved as the biometric template. The system may be single-modal or multi-modal. In
single modal, a single trait is used. In multi-modal, two or more traits are used ensuring that
security is enhanced.
The second stage is authentication. Whenever a user tries to access an IoT device, the
biometric data is collected and a pattern identified. This pattern is compared with the
database and if it matches access is granted. A predefined threshold value is used to ensure
that the two patterns are similar. Liveness detection features can be used to prevent
spoofing attacks, thereby making the system fool-proof.
Conclusion
Biometrics is secure and fool-proof allowing IoT devices to authenticate users. The
effectiveness of biometric technology ensures that only authorized users are given access to
IoT devices. Biometrics thus makes IoT secure and helps prevent security risks. Thank you
for your interest in Bahaa Abdul Hadi blogs. For more information, please visit
www.bahaaabdulhadi.com
Voice
Bahaa Abdul Hadi discusses the increasing prevalence of the Internet of Things (IoT) and its
integration into areas like smart homes, emphasizing the accompanying security concerns.
IoT devices, which connect and exchange data, are vulnerable to unauthorized access,
making robust security measures essential. Biometrics offers a solution by utilizing physical
or behavioral traits for identification, such as fingerprint, iris, and facial recognition.
Advanced biometrics technology is now a crucial tool in enhancing IoT security.
In IoT systems, ensuring that only authorized individuals can access connected devices is
key to maintaining security. Biometrics provides a reliable method of access control,
preventing unauthorized use. However, the security of the biometric data itself is a critical
concern. It is essential to protect the original biometric data from unauthorized access and
ensure that any stored data within the system is secure against potential hacking attempts.
The process of integrating biometrics into IoT involves two main stages: enrolment and
authentication. During enrolment, users’ biometric data, like fingerprints or facial features,
is captured and converted into a digital template, which is then stored in a database. This
system can be either single-modal, using one type of biometric trait, or multi-modal,
employing multiple traits for enhanced security.
In conclusion, biometrics plays a vital role in making IoT devices secure and foolproof. By
ensuring that only authorized users have access, biometrics effectively mitigates security
risks associated with IoT devices. The use of biometrics in IoT not only enhances user
authentication but also contributes to the overall safety and reliability of these increasingly
prevalent smart systems. This integration of biometrics into IoT represents a significant
step forward in securing our increasingly connected world.
Social
Exploring how #Biometrics enhances #IoT security: safeguarding smart devices with
advanced identification technologies.
https://bahaaabdulhadi.com/biometric-analytics-internet-of-things/
#SmartHomeSecurity #TechTrends #CyberSecurity #InnovationInTech

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Biometric Analytics & Internet of Things

  • 1. Biometric Analytics & Internet of Things IoT or Internet of Things is a rage in today’s world with smart devices being connected noted Bahaa Abdul Hadi. IoT devices are growing and are being used in different areas. Smart homes have become a reality thanks to IoT. Security, however, remains a key concern. The use of biometrics can help enhance security of IoT. Biometrics and IoT Biometrics refers to the use of systems to identify people based on their physical characteristics or behavioral traits. Most commonly, fingerprint identification is used for identification. Iris scanning and face scanning are other common methods. Biometrics technology has advanced and as a result is a highly fool-proof system. Apart from its use in other applications, biometrics is highly valuable in IoT. IoT calls for smart devices to be connected. The devices exchange data in order to work well. A security risk is possible if an authorized person gains access to the system. It is important to ensure only the authorized person has access to IoT devices. Access control can be made secure by using biometrics. Another issue here is about how the biometric data is stored. If a hacker gets access to the biometric data, they can then compromise the system. It is vital to ensure the biometric data is protected and is secure. It should be ensured that the original biometric data is secured, so it cannot be access. Any data stored in the system must be protected to prevent unauthorized access. How biometrics works in IoT At the first stage, enrolment is done where data of the users is recorded for storage on the database. The fingerprint or face is scanned and the features are converted to a pattern. This is saved as the biometric template. The system may be single-modal or multi-modal. In single modal, a single trait is used. In multi-modal, two or more traits are used ensuring that security is enhanced. The second stage is authentication. Whenever a user tries to access an IoT device, the biometric data is collected and a pattern identified. This pattern is compared with the database and if it matches access is granted. A predefined threshold value is used to ensure that the two patterns are similar. Liveness detection features can be used to prevent spoofing attacks, thereby making the system fool-proof. Conclusion Biometrics is secure and fool-proof allowing IoT devices to authenticate users. The effectiveness of biometric technology ensures that only authorized users are given access to IoT devices. Biometrics thus makes IoT secure and helps prevent security risks. Thank you for your interest in Bahaa Abdul Hadi blogs. For more information, please visit www.bahaaabdulhadi.com
  • 2. Voice Bahaa Abdul Hadi discusses the increasing prevalence of the Internet of Things (IoT) and its integration into areas like smart homes, emphasizing the accompanying security concerns. IoT devices, which connect and exchange data, are vulnerable to unauthorized access, making robust security measures essential. Biometrics offers a solution by utilizing physical or behavioral traits for identification, such as fingerprint, iris, and facial recognition. Advanced biometrics technology is now a crucial tool in enhancing IoT security. In IoT systems, ensuring that only authorized individuals can access connected devices is key to maintaining security. Biometrics provides a reliable method of access control, preventing unauthorized use. However, the security of the biometric data itself is a critical concern. It is essential to protect the original biometric data from unauthorized access and ensure that any stored data within the system is secure against potential hacking attempts. The process of integrating biometrics into IoT involves two main stages: enrolment and authentication. During enrolment, users’ biometric data, like fingerprints or facial features, is captured and converted into a digital template, which is then stored in a database. This system can be either single-modal, using one type of biometric trait, or multi-modal, employing multiple traits for enhanced security. In conclusion, biometrics plays a vital role in making IoT devices secure and foolproof. By ensuring that only authorized users have access, biometrics effectively mitigates security risks associated with IoT devices. The use of biometrics in IoT not only enhances user authentication but also contributes to the overall safety and reliability of these increasingly prevalent smart systems. This integration of biometrics into IoT represents a significant step forward in securing our increasingly connected world. Social Exploring how #Biometrics enhances #IoT security: safeguarding smart devices with advanced identification technologies. https://bahaaabdulhadi.com/biometric-analytics-internet-of-things/ #SmartHomeSecurity #TechTrends #CyberSecurity #InnovationInTech