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1 Chapter 1Figure 1.1. Proposed architecture for a context aware IoT device/object. For a c...Figure 1.2. General context of decision-makingFigure 1.3. Transmission of video from the scene of an accident in VANET network...Figure 1.4. Score variation in VANET networks for transmission of a video messag...Figure 1.5. Entertainment service on a highway in CR-VANET networksFigure 1.6. Variation of the scores of intelligent radio channels for the entert...

2 Chapter 2Figure 2.1. Impact on performance of the number of IoT devices simultaneously at...Figure 2.2. NB-IoT deployment modesFigure 2.3. Structure of a preamble sequence. For a color version of this figure...Figure 2.4. Random access procedureFigure 2.5. System model. For a color version of this figure, see www.iste.co.uk...Figure 2.6. System for regulating arrivalsFigure 2.7. Access probability with the adaptive controllerFigure 2.8 Access probability with the controller using TD3Figure 2.9. Average latency of the terminals with the adaptive controllerFigure 2.10. Average latency of the terminals with the controller using TD3Figure 2.11. The average recompense with the adaptive controllerFigure 2.12. The average recompense with the controller using TD3Figure 2.13. Access attempts (blue) and abandonments (red) with the adaptive con...Figure 2.14. Access attempts (blue) and abandonments (red) with the controller u...

3 Chapter 3Figure 3.1. The four visions of the IoT (Akinyoade and Eluwole 2019)Figure 3.2. Cloud, Fog and Edge. For a color version of this figure, see www.ist...Figure 3.3. Features for spectrum management in intelligent radio. For a color v...Figure 3.4. Integration of multiple technologies in the IoT. For a color version...

4 Chapter 4Figure 4.1. Architecture of the Internet of Things (Khalil et al. 2018). For a c...Figure 4.2. MAPE-K Control loopFigure 4.3. MAPE-K loop from the IoT energy self-optimization framework. For a c...Figure 4.4. Membership functions of the “distance” parameter. For a color versio...Figure 4.5. Membership functions of the “residual energy” parameter. For a color...Figure 4.6. Membership functions of the “precision” parameter. For a color versi...Figure 4.7. Membership functions of the output parameter. For a color version of...Figure 4.8. Decision-making algorithmFigure 4.9. Lifespan of the IoT system for scenarios 1 and 2Figure 4.10. Lifespan of the IoT system for scenario 3Figure 4.11. Average precision of the information recorded in scenario 4. For a ...Figure 4.12. Selection of IoT objects over time in scenario 4. For a color versi...

5 Chapter 5Figure 5.1. Example of star topology and mesh topology in an IoT network. For a ...Figure 5.2. Example of a size 6 slotframe, for a 4-node network and a coordinato...Figure 5.3. Example of TSCH schedule and topology showing Replication, Overheari...

6 Chapter 6Figure 6.1. Architecture of an energy-harvesting sensor node. For a color versio...Figure 6.2. Energy buffer thresholds. For a color version of this figure, see ww...Figure 6.3. Periodic execution of the EM. For a color version of this figure, se...Figure 6.4. Architecture of energy managers with and without prediction. For a c...Figure 6.5. Fuzzyman architectureFigure 6.6. Membership functions used by the fuzzing unitFigure 6.7. Performance of Fuzzyman and P-FREEN depending on PAVG for different ...Figure 6.8. Global RLMan architecture. For a color version of this figure, see w...Figure 6.9. Average packet generation rate and energy efficiency depending on th...Figure 6.10. Architecture of harvesting multisource energy for LoRa standard. Fo...Figure 6.11. Performance of different EMs over 7 days of execution. For a color ...

7 Chapter 7Figure 7.1. XACML components and modules (XACML 2019)Figure 7.2. Integrating XACML and SAML (OASIS 2019c)Figure 7.3. Security architecture for the Internet of Things. For a color versio...Figure 7.4. IoT access control environment. For a color version of this figure, ...Figure 7.5. IoT-MAAC-MAAC access control architecture. For a color version of th...Figure 7.6. DPS notation system. For a color version of this figure, see www.ist...Figure 7.7. DSL notation system. For a color version of this figure, see www.ist...Figure 7.8. DOT notation system. For a color version of this figure, see www.ist...Figure 7.9. DPS, DSL and DOT membership functions. For a color version of this f...Figure 7.10. IoT-MAAC decision-making algorithm. For a color version of this fig...Figure 7.11. SAML assertion of the IoT object. For a color version of this figur...Figure 7.12. XACML authorization request from the LL-Gw in IoT-MAAC. For a color...Figure 7.13. XACML response from the HL-Gw in IoT-MAAC. For a color version of t...

8 Chapter 8Figure 8.1. Biometric techniques (Cabra et al. 2018)Figure 8.2. The evolution of authentication methods from simple authentication t...Figure 8.3. Registration phase of Sammoud et al. (2020c). For a color version of...Figure 8.4. Login phase of Sammoud et al. (2020c). For a color version of this f...Figure 8.5. a) Authentication phase of Sammoud et al. (2020c); b) Protocol authe...Figure 8.6. An ECG sequence (Sammoud et al. 2020a). For a color version of this ...Figure 8.7. Overall structure of an authentication system based on ECGFigure 8.8. Acquiring an ECG signal. For a color version of this figure, see www...

9 Chapter 9Figure 9.1. Blockchain architecture (Che et al. 2019). For a color version of th...Figure 9.2. a) Traditional intelligent identity and access management; b) Blockc...

10 Chapter 10Figure 10.1. Lifecycle of a context. For a color version of this figure, see www...Figure 10.2. Example of implementing context-aware security (Sylla et al. 2021).Figure 10.3. CASPaaS architecture (Sylla et al. 2020). For a color version of th...

11 Chapter 11Figure 11.1. Number of scientific publications per year with “Moving Target Defe...Figure 11.2. MTD taxonomies and network layers (with a reference to the section ...Figure 11.3. Components of the proposed MTD framework. For a color version of th...

Intelligent Security Management and Control in the IoT

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