Testability of Distributed Real-Time Systems, Hardcover by Schutz, Werner, Br...

$ 68.66

Subject: Systems Architecture / General, Software Development & Engineering / General, General, Data Processing Publisher: Springer Book Title: Testability of Distributed Real-Time Systems Item Length: 9.2 in Type: Textbook Author: Werner Schütz Language: English ISBN: 9780792393863 Series: The Springer International Series in Engineering and Computer Science Ser. width: 6.1 in Format: Hardcover Publication Name: Testability of Distributed Real-Time Systems Item Weight: 32.1 Oz Number of Pages: Xvi, 144 Pages Item Width: 6.1 in Publication Year: 1993 Subject Area: Computers

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Testability of Distributed Real-Time Systems, Hardcover by Schutz, Werner, Br.... Testability of Distributed Real-Time Systems, Hardcover by Schutz, Werner, ISBN 0792393864, ISBN-13 9780792393863, Brand New, Free shipping in the US For readers with some general knowledge of testing both distributed and real-time systems, focuses on the operational aspect of testing such systems. Identifies the principal problems that must be kept in mind, such as organization, observability, and environment simulation; argues that, even more than for ordinary software, the testing is highly influenced by the particular architecture; and derives a test methodology for the time-triggered system MARS, explaining how the method exploits the particular characteristics of the architecture. Annotation copyright Book News, Inc. Portland, Or. Testability of Distributed Real-Time Systems, Hardcover by Schutz, Werner, ISBN 0792393864, ISBN-13 9780792393863, Brand New, Free shipping in the US For readers with some general knowledge of testing both distributed and real-time systems, focuses on the operational aspect of testing such systems. Identifies the principal problems that must be kept in mind, such as organization, observability, and environment simulation; argues that, even more than for ordinary software, the testing is highly influenced by the particular architecture; and derives a test methodology for the time-triggered system MARS, explaining how the method exploits the particular characteristics of the architecture. Annotation copyright Book News, Inc. Portland, Or.