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Titlebook: Nature Inspired Computing for Wireless Sensor Networks; Debashis De,Amartya Mukherjee,Nilanjan Dey Book 2020 Springer Nature Singapore Pte

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ckground.Clear organization.Ends with a interesting discussi.Quantization of physical systems requires a correct definition of quantum-mechanical observables, such as the Hamiltonian, momentum, etc., as self-adjoint operators in appropriate Hilbert spaces and their spectral analysis.  Though a “naïv
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Debashis De,Amartya Mukherjee,Santosh Kumar Das,Nilanjan Deystems need to adapt task scheduling and mapping to optimise for performance and energy under varying workloads and, increasingly important, for thermal and fault management and are thus relevant targets for self-aware computing. In this chapter, we take up the generic reference architecture for desi
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scuss issues to be considered when developing such systems, especially when going through phases 3 (selecting the best pattern) and 5 (determining primitives and alternatives), and possibly also phase 7 (score alternative primitives) of the methodology for designing and implementing self-aware and s
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Nabajyoti Mazumdar,Hari Omith dedicated services for self-awareness and self-expression can therefore support the development of SACS applications. In this chapter we show the advantages of using a middleware system as the basis for a self-aware computing system. We identify requirements for middleware systems to support the
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Kanhu Charan Gouda,Santosh Kumar Das,Om Prakash Dubey,Efrén Mezura Montesescription of how the concepts of self-awareness and self-expression can be implemented in a real network of smart cameras. In contrast to traditional cameras, smart cameras are able to perform image analysis on-board and collaborate with other cameras in order to analyse the dynamic behaviour of ob
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Meenakshi Panda,Bhabani Sankar Gouda,Trilochan Panigrahium-field theory is a perturbation-series expansion which is well organized by the use of the Feynman diagrams. However, from the beginning it is designed for weakly interacting quantum many-particle systems because the interaction between the particles is treated perturbatively. Thus, to consider st
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Santoshinee Mohapatra,Pabitra Mohan Khilare if the interaction is zero. A nonzero interaction then implies a complete or partial removal of the degeneracy so that the ground state is considerably changed. For this reason the interaction cannot be treated perturbatively. An important example of this kind is the two-dimensional electron syste
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