In Part I the authors introduce elementary net synthesis. In Part II they explain variations of elementary net synthesis and the unified theory of net synthesis. The first three chapters of Part III address the linear algebraic structure of regions, synthesis of P/T-nets from finite initialized transition systems, and the synthesis of unbounded P/T-nets. Finally, the last chapter inPart III and the chapters in Part IV cover more advanced topics and applications: P/T-nets with the step firing rule, extracting concurrency from transition systems, process discovery, supervisory control, and the design of speed-independent circuits.
Most chapters conclude with exercises, and the book is a valuable reference for both graduate students of computer science and electrical engineering and researchers and engineers in this domain.
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"This book provides an impressive in-depth account of a wide range of the results and techniques for Petri net synthesis. It covers both theory and algorithms and provides a good insight into applications. It is valuable for novices as well as for researchers as a rich and reliable reference as well as a source of relevant research problems." (Jörg Desel, zbMATH 1351.68003, 2017)