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Bijective point maps, point-stationarity and characterization of Palm measures
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Year: 2006 Publisher: [Place of publication not identified] : KIT Scientific Publishing,

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In the theory of stationary spatial point processes, Palm distributions are used to describe the point process seen from one of its points. Such an intrinsic frame of reference is not only interesting for theoretical considerations, but also useful in related fields such as queuing theory and stochastic geometry.


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Bijective point maps, point-stationarity and characterization of Palm measures
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Year: 2006 Publisher: [Place of publication not identified] : KIT Scientific Publishing,

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In the theory of stationary spatial point processes, Palm distributions are used to describe the point process seen from one of its points. Such an intrinsic frame of reference is not only interesting for theoretical considerations, but also useful in related fields such as queuing theory and stochastic geometry.


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Reliability Calculations with the Stochastic Finite Element
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ISBN: 9811485534 9789811485534 Year: 2020 Publisher: Singapore Bentham Science Publishers

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Book
Bijective point maps, point-stationarity and characterization of Palm measures
Author:
Year: 2006 Publisher: [Place of publication not identified] : KIT Scientific Publishing,

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Abstract

In the theory of stationary spatial point processes, Palm distributions are used to describe the point process seen from one of its points. Such an intrinsic frame of reference is not only interesting for theoretical considerations, but also useful in related fields such as queuing theory and stochastic geometry.

Statistical analysis of microstructures in materials science
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ISBN: 0471974862 Year: 2000 Publisher: Chichester ; New York, NY : John Wiley,

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Stochastic geometry. Part I : Mazara del Vallo, May 24-29, 1999
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Year: 2000 Publisher: Palermo : Circolo matematico di Palermo,

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First international conference on stochastic geometry, convex bodies and empirical measures : Palermo, Italy, 25 April-2 May 1993
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Year: 1994 Volume: ser. 2, no. 35 Publisher: Palermo : Sede della Società,

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Factorization calculus and geometric probability
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ISBN: 1139881795 1107102596 1107087899 1107100070 1107094127 1139086561 9781107087897 9781139086561 9781107094123 0521345359 9780521345354 0521361249 9780521361248 9780521089784 Year: 1990 Volume: v. 33 Publisher: Cambridge New York Cambridge University Press

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This unique book develops the classical subjects of geometric probability and integral geometry, and the more modern one of stochastic geometry, in rather a novel way to provide a unifying framework in which they can be studied. The author focuses on factorisation properties of measures and probabilities implied by the assumption of their invariance with respect to a group, in order to investigate non-trivial factors. The study of these properties is the central theme of the book. Basic facts about integral geometry and random point process theory are developed in a simple geometric way, so that the whole approach is suitable for a non-specialist audience. Even in the later chapters, where the factorisation principles are applied to geometrical processes, the prerequisites are only standard courses on probability and analysis. The main ideas presented here have application to such areas as stereology and tomography, geometrical statistics, pattern and texture analysis. This book will be well suited as a starting point for individuals working in those areas to learn about the mathematical framework. It will also prove valuable as an introduction to geometric probability theory and integral geometry based on modern ideas.


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Computing algorithms for solutions of problems in applied mathematics and their standard program realization.
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ISBN: 1634637151 9781634637152 9781634636841 Year: 2015 Publisher: New York : Nova Publishers,

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Stochastic geometry analysis of cellular networks
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ISBN: 1108340857 1108340504 1316677338 Year: 2018 Publisher: Cambridge : Cambridge University Press,

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Achieve faster and more efficient network design and optimization with this comprehensive guide. Some of the most prominent researchers in the field explain the very latest analytic techniques and results from stochastic geometry for modelling the signal-to-interference-plus-noise ratio (SINR) distribution in heterogeneous cellular networks. This book will help readers to understand the effects of combining different system deployment parameters on key performance indicators such as coverage and capacity, enabling the efficient allocation of simulation resources. In addition to covering results for network models based on the Poisson point process, this book presents recent results for when non-Poisson base station configurations appear Poisson, due to random propagation effects such as fading and shadowing, as well as non-Poisson models for base station configurations, with a focus on determinantal point processes and tractable approximation methods. Theoretical results are illustrated with practical Long-Term Evolution (LTE) applications and compared with real-world deployment results.

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