<p><span>The IoT topology defines the way various components communicate with each other within a network. Topologies can vary greatly in terms of security, power consumption, cost, and complexity. Optimizing the IoT topology for different applications and requirements can help to boost the networkβ
Robustness Optimization for IoT Topology
β Scribed by Tie Qiu; Ning Chen; Songwei Zhang
- Publisher
- Springer Nature
- Year
- 2022
- Tongue
- English
- Leaves
- 224
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
The IoT topology defines the way various components communicate with each other within a network. Topologies can vary greatly in terms of security, power consumption, cost, and complexity. Optimizing the IoT topology for different applications and requirements can help to boost the networkβs performance and save costs. More importantly, optimizing the topology robustness can ensure security and prevent network failure at the foundation level. In this context, this book examines the optimization schemes for topology robustness in the IoT, helping readers to construct a robustness optimization framework, from self-organizing to intelligent networking. The book provides the relevant theoretical framework and the latest empirical research on robustness optimization of IoT topology. Starting with the self-organization of networks, it gradually moves to genetic evolution. It also discusses the application of neural networks and reinforcement learning to endow the node with self-learning ability to allow intelligent networking. This book is intended for students, practitioners, industry professionals, and researchers who are eager to comprehend the vulnerabilities of IoT topology. It helps them to master the research framework for IoT topology robustness optimization and to build more efficient and reliable IoT topologies in their industry.
π SIMILAR VOLUMES
<span>The book focuses on the topology optimization method for nano-optics. Both principles and implementing practice have been addressed, with more weight placed on applications. This is achieved by providing an in-depth study on the major topic of topology optimization of dielectric and metal stru
<p><p></p><p>This book presents a novel framework, known as Active Robust Optimization, which provides the tools for evaluating, comparing and optimizing changeable products. Since any product that can change its configuration during normal operation may be considered a βchangeable product,β the fra
<p><i>Topology Design Methods for Structural Optimization</i> provides engineers with a basic set of design tools for the development of 2D and 3D structures subjected to single and multi-load cases and experiencing linear elastic conditions. Written by an expert team who has collaborated over the p
</header><div itemprop="description" class="collapsable text"><P><EM>Topology Design Methods for Structural Optimization</EM> provides engineers with a basic set of design tools for the development of 2D and 3D structures subjected to single and multi-load cases and experiencing linear elastic condi
<p><i>Probabilistic Design for Optimization and Robustness</i>:</p><ul><li>Presents the theory of modeling with variation using physical models and methods for practical applications on designs more insensitive to variation.</li><li>Provides a comprehensive guide to optimization and robustness for p