Energy efficient non-road hybrid electric vehicles advanced modeling and control

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1. Verfasser: Unger, Johannes (VerfasserIn)
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Sprache:English
Veröffentlicht: [Cham] Springer International Publishing [2016]
Schriftenreihe:SpringerBriefs in applied sciences and technology
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Datensatz im Suchindex

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adam_text ENERGY EFFICIENT NON-ROAD HYBRID ELECTRIC VEHICLES / UNGER, JOHANNES : 2016 ABSTRACT / INHALTSTEXT ANALYZING THE MAIN PROBLEMS IN THE REAL-TIME CONTROL OF PARALLEL HYBRID ELECTRIC POWERTRAINS IN NON-ROAD APPLICATIONS, WHICH WORK IN CONTINUOUS HIGH DYNAMIC OPERATION, THIS BOOK GIVES PRACTICAL INSIGHT IN TO HOW TO MAXIMIZE THE ENERGETIC EFFICIENCY AND DRIVABILITY OF SUCH POWERTRAINS. THE BOOK ADDRESSES AN ENERGY MANAGEMENT CONTROL STRUCTURE, WHICH CONSIDERS ALL CONSTRAINTS OF THE PHYSICAL POWERTRAIN AND USES NOVEL METHODOLOGIES FOR THE PREDICTION OF THE FUTURE LOAD REQUIREMENTS TO OPTIMIZE THE CONTROLLER OUTPUT IN TERMS OF AN ENTIRE WORK CYCLE OF A NON-ROAD VEHICLE. THE LOAD PREDICTION INCLUDES A METHODOLOGY FOR SHORT TERM LOADS AS WELL AS FOR AN ENTIRE LOAD CYCLE BY MEANS OF A CYCLE DETECTION. A MAXIMIZATION OF THE ENERGETIC EFFICIENCY CAN SO BE ACHIEVED, WHICH IS SIMULTANEOUSLY A REDUCTION IN FUEL CONSUMPTION AND EXHAUST EMISSIONS. READERS WILL GAIN A DEEP INSIGHT INTO THE NECESSARY TOPICS TO BE CONSIDERED IN DESIGNING AN ENERGY AND BATTERY MANAGEMENT SYSTEM FOR NON-ROAD VEHICLES AND THAT ONLY A COMBINATION OF THE MANAGEMENT SYSTEMS CAN SIGNIFICANTLY INCREASE THE PERFORMANCE OF A CONTROLLER DIESES SCHRIFTSTUECK WURDE MASCHINELL ERZEUGT.
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author Unger, Johannes
author_GND (DE-588)136175775
author_facet Unger, Johannes
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dewey-ones 621 - Applied physics
dewey-raw 621.042
dewey-search 621.042
dewey-sort 3621.042
dewey-tens 620 - Engineering and allied operations
discipline Energietechnik
doi_str_mv 10.1007/978-3-319-29796-5
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spellingShingle Unger, Johannes
Energy efficient non-road hybrid electric vehicles advanced modeling and control
Engineering
Renewable energy resources
Electronic circuits
Automotive engineering
Engines
Machinery
Renewable energy sources
Alternate energy sources
Green energy industries
Renewable and Green Energy
Circuits and Systems
Electronic Circuits and Devices
Automotive Engineering
Engine Technology
Ingenieurwissenschaften
title Energy efficient non-road hybrid electric vehicles advanced modeling and control
title_auth Energy efficient non-road hybrid electric vehicles advanced modeling and control
title_exact_search Energy efficient non-road hybrid electric vehicles advanced modeling and control
title_full Energy efficient non-road hybrid electric vehicles advanced modeling and control Johannes Unger, Marcus Quasthoff, Stefan Jakubek
title_fullStr Energy efficient non-road hybrid electric vehicles advanced modeling and control Johannes Unger, Marcus Quasthoff, Stefan Jakubek
title_full_unstemmed Energy efficient non-road hybrid electric vehicles advanced modeling and control Johannes Unger, Marcus Quasthoff, Stefan Jakubek
title_short Energy efficient non-road hybrid electric vehicles
title_sort energy efficient non road hybrid electric vehicles advanced modeling and control
title_sub advanced modeling and control
topic Engineering
Renewable energy resources
Electronic circuits
Automotive engineering
Engines
Machinery
Renewable energy sources
Alternate energy sources
Green energy industries
Renewable and Green Energy
Circuits and Systems
Electronic Circuits and Devices
Automotive Engineering
Engine Technology
Ingenieurwissenschaften
topic_facet Engineering
Renewable energy resources
Electronic circuits
Automotive engineering
Engines
Machinery
Renewable energy sources
Alternate energy sources
Green energy industries
Renewable and Green Energy
Circuits and Systems
Electronic Circuits and Devices
Automotive Engineering
Engine Technology
Ingenieurwissenschaften
url https://doi.org/10.1007/978-3-319-29796-5
http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=028840666&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
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