Results 171 to 180 of about 1,866,673 (365)
Multiple-description vector quantization with lattice codebooks: design and analysis [PDF]
Vinay A. Vaishampayan+2 more
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ABSTRACT We investigate the effects of a minimal measurable length on neutron stars, within the quantum hadrodynamics (QHD‐I) model modified by the Generalized Uncertainty Principle (GUP). Working in a deformed Poisson algebra framework, we incorporate GUP effects via a time‐invariant transformation of the phase space volume, effectively reducing the ...
João Gabriel Galli Gimenez+2 more
wiley +1 more source
Maximal subalgebras of vector fields for equivariant quantizations [PDF]
F. Boniver, Pierre Mathonet
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Upstream Allocation of Bidirectional Load Demand by Power Packetization
This paper presents a packet‐based approach for including renewables and batteries in a small and independent power supply system. The proposed method comprises dynamic allocations of bidirectional load demand in a packetized form to sources or sinks. ABSTRACT The power packet dispatching system has been studied for power management with strict tie to ...
Shiu Mochiyama+2 more
wiley +1 more source
Non‐Markovian Quantum Kinetic Simulations of Uniform Dense Plasmas: Mitigating the Aliasing Problem
ABSTRACT Dense quantum plasmas out of equilibrium are successfully modeled using quantum kinetic equations, such as the quantum Boltzmann, Landau, or Balescu–Lenard equation. However, these equations do not properly take into account correlation effects, which require the use of generalized non‐Markovian kinetic equations.
C. Makait, M. Bonitz
wiley +1 more source
The topic discussed was the intelligent design of network multimedia using BD and virtual AI technology. First of all, the authors gave a brief overview of its relevant research background, and then comprehensively analysed the advantages and disadvantages of previous scholars' research on network multimedia.
Xin Zhang
wiley +1 more source
K-tree: a height balanced tree structured vector quantizer [PDF]
Shlomo Geva
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Predicting the Uniform Electron Gas Stopping Power at Moderate and Strong Coupling
ABSTRACT This paper presents a detailed study of the stopping power of a homogeneous electron gas in moderate and strong coupling regimes using the self‐consistent version of the method of moments as the key theoretical approach capable of expressing the dynamic characteristics of the system in terms of the static ones, which are the moments.
Saule A. Syzganbayeva+8 more
wiley +1 more source