05199nam 2200673Ia 450 991045440010332120200520144314.01-281-95179-X9786611951795981-281-028-5(CKB)1000000000538063(EBL)1679364(OCoLC)815754731(SSID)ssj0000225568(PQKBManifestationID)11197668(PQKBTitleCode)TC0000225568(PQKBWorkID)10233105(PQKB)11763771(MiAaPQ)EBC1679364(WSP)00004612(Au-PeEL)EBL1679364(CaPaEBR)ebr10255648(CaONFJC)MIL195179(EXLCZ)99100000000053806320010814d2001 uy 0engur|n|---|||||txtccrPractical applications of soft computing in engineering[electronic resource] /editor, Sung-Bae ChoSingapore ;River Edge, NJ World Scientificc20011 online resource (439 p.)FLSI soft computing series ;4Description based upon print version of record.981-02-4523-8 Includes bibliographical references and index.Contents ; Series Editor's Preface (To Yoon-Bin and Joon-Hee) ; Volume Editor's Preface ; Chapter 1 Automatic Detection of Microcalcifications in Mammograms Using a Fuzzy Classifier ; 1.1 Introduction ; 1.2 Background Study ; 1.3 Object classification1.4 Uncertainty in medical imaging and fuzzy set theory 1.5 Applications of fuzzy theory in image understanding ; 1.6 Fuzzy microcalcification detector ; 1.7 Overview of the fuzzy method ; 1.8 Fuzzy detection ; 1.9 Validation of the fuzzy microcalcification detector1.10 Experimental results 1.11 Conclusions ; Chapter 2 Software Deployability Control System: Application of Choquet Integral and Rough Sets ; 2.1 Introduction ; 2.2 Basic Approach to Controlling Software Cost ; 2.3 Fuzzy Sets: Basic Concepts ; 2.4 Rough Sets: Basic Concepts2.5 Petri Net Model of Cost Estimation Process 2.6 Example Software Cost Estimation ; 2.7 Concluding Remarks ; Chapter 3 Predictive Fuzzy Model for Control of an Artificial Muscle ; 3.1 Introduction ; 3.2 APM Analytical Model and Control Law synthesis ; 3.3 APM Predictive Fuzzy Model3.4 Computer Simulation 3.5 Conclusions ; References ; Chapter 4 Fuzzy Supervisory Control with Fuzzy-PID Controller and its Application to Petroleum Plants ; 1.1 Introduction ; 1.2 Process Description and Control Problems ; 1.3 Proposed Hierarchical Control System1.4 Control Result of Fuzzy-PID Controller with Supervisor in Actual Plant Soft computing has been presented not only with the theoretical developments but also with a large variety of realistic applications to consumer products and industrial systems. Application of soft computing has provided the opportunity to integrate human-like vagueness and real-life uncertainty into an otherwise hard computer program. This book highlights some of the recent developments in practical applications of soft computing in engineering problems. All the chapters have been sophisticatedly designed and revised by international experts to achieve wide but in-depth coverage. <br><i>ConFLSI soft computing series ;4.Soft computingComputer-aided engineeringElectronic books.Soft computing.Computer-aided engineering.620.0042028563Cho Sung-Bae880444MiAaPQMiAaPQMiAaPQBOOK9910454400103321Practical applications of soft computing in engineering1966000UNINA02693nam 2200361z- 450 991102403840332120250812(CKB)5860000000691453(oapen)165471(EXLCZ)99586000000069145320250820c2025uuuu -u- -engurmn|---annantxtrdacontentcrdamediacrrdacarrierVehicle Design Processes, 2nd EditionMDPI - Multidisciplinary Digital Publishing Institute20251 online resource3-7258-3880-1 This Special Issue presents the current state of research activities concerning vehicle design processes. The design of vehicles is one of the most challenging tasks in engineering for several reasons. For example, high consumer expectations as well as intensive global competition impact vehicle design. Recent dramatic changes have influenced vehicle design, primarily due to the transition to electric drive systems and new vehicle application scenarios, especially in the Asian market. Cost-driven design is a necessity, and vehicles need to be economical in their production, operation, and recycling; in fact, sustainable design is also imperative for eco-friendly vehicles . The dynamics of vehicles must be considered in the design of all components, and lightweight design is of fundamental importance. Consumers expect strong functional performance, high product quality, an attractive appearance, high reliability, and interconnected functionality, as well as comprehensible and appealing user interfaces. More and more additional services are being integrated into vehicles. The strict requirements lead to the complex multi-domain design processes of vehicles, since most of the significant decisions are made in the design phase. Production optimization and intelligent operation are also important, but flaws and insufficiencies in the design stage lead to enormous expenditures in later stages and less-than-perfect products. The design processes of vehicles involve thousands of engineers spread across the globe who need to consider multiple product versions and variants, as well as multi-company product platforms.History of engineering and technologybicsscHistory of engineering and technologyStetter Ralfedt963303Pulm UdoedtTill MarkusedtStetter RalfothPulm UdoothTill MarkusothBOOK9911024038403321Vehicle Design Processes, 2nd Edition4826435UNINA