Last edited by Zololmaran
Wednesday, July 8, 2020 | History

2 edition of Preliminary design analysis of the quasi-electric drive vehicle found in the catalog.

Preliminary design analysis of the quasi-electric drive vehicle

M. W. Schwartz

Preliminary design analysis of the quasi-electric drive vehicle

by M. W. Schwartz

  • 254 Want to read
  • 30 Currently reading

Published by Dept. of Energy, Lawrence Livermore Laboratory, for sale by the National Technical Information Service in Livermore, Calif, Springfield, Va .
Written in English

    Subjects:
  • Electric vehicles -- Evaluation.,
  • Automobiles, Electric -- Evaluation.

  • Edition Notes

    StatementM. W. Schwartz, E. Lorbeer.
    SeriesUCRL ; 52613
    ContributionsLorbeer, E., Lawrence Livermore Laboratory.
    The Physical Object
    Paginationiii, 27 p. :
    Number of Pages27
    ID Numbers
    Open LibraryOL17649446M

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    IV. Battery Testing, Analysis, and Design The Battery Testing, Analysis, and Design activity supports several complementary but crucial aspects of the battery development program. The activity’s goal is to support the development of a U.S. domestic advanced battery industry whose products can meet electric drive vehicle performance targets. Motor vehicle structures - concepts and fundamentals This textbook deals with the structural mechanics of the mass-produced integral passenger car body. It provides a concise explanation of load paths in the vehicle body-in-white, based on engineering first principles.

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Preliminary design analysis of the quasi-electric drive vehicle by M. W. Schwartz Download PDF EPUB FB2

Get this from a library. Preliminary design analysis of the quasi-electric drive vehicle. [M W Schwartz; E Lorbeer; Lawrence Livermore Laboratory.]. Electric Vehicle Machines and Drives: Design, Analysis and Application Book Abstract: This timely and comprehensive reference consolidates the research and development of electric vehicle machines and drives for electric and hybrid propulsions.

It covers an extensive range of drives and machine systems that being with existing typologies before. • Focuses on electric vehicle machines and drives • Covers the major technologies in the area including fundamental concepts and applications • Emphasis the design criteria, performance analyses and application examples or potentials of various motor drives and machine systems.

Krishnan-Electric Motor Drives Modeling, Analysis, and Control (). An updated approach to reference frame analysis of electric machines and drive systems.

Since the first edition of Analysis of Electric Machinery was published, the reference frame theory that was detailed in the book has become the universally accepted approach for the analysis of both electric machines and electric drive systems.

Now in its second edition, Analysis of Electric Machinery and Cited by: After explaining the fundamentals of structural theory in car body design, this book presents the analysis of commercial vehicle body and chassis.

Throughout the book, maximum use is made of line-drawings and concise textural presentation to provide the working designer with an easy assimilable account of automotive design analysis. @article{osti_, title = {Modeling the Performance and Cost of Lithium-Ion Batteries for Electric-Drive Vehicles, Third Edition}, author = {Nelson, Paul A.

and Ahmed, Shabbir and Gallagher, Kevin G. and Dees, Dennis W.}, abstractNote = {This Manual details the Battery Performance and Cost model (BatPaC) developed at Argonne National Laboratory for lithium-ion battery packs used in. °ux permanent-magnet (AFPM) motor suitable for direct drive of electric vehicle (EV) is presented.

It used sizing equation and Finite Element Analysis (FEA). AFPM motor is a high-torque-density motor easily mounted compactly onto a vehicle wheel, fltting the wheel rim perfectly. A preliminary design is a double-sided slotted AFPM.

Kim R. Fowler, in Developing and Managing Embedded Systems and Products, Preliminary design review. The Preliminary Design Review (PDR) closes the preliminary design phase of the project.

A PDR should present the basic system in terms of the software, mechanical, power distribution, thermal management, and electronic designs with initial assessments for loads, stresses, margins.

University. This is appropriate because Experimental Design is fundamentally the same for all fields. This book tends towards examples from behavioral and social sciences, but includes a full range of examples.

In truth, a better title for the course is Experimental Design and Analysis, and that is the title of this book. Electric Vehicle Machines and Drives: Design, Analysis, and Application is a handy and comprehensive text for graduate students of electrical engineering, as well as researchers and engineers working on electric vehicles.

The engineering design process is a common series of steps that engineers use in creating functional products and processes.

The process is highly iterative - parts of the process often need to be repeated many times before another can be entered - though the part(s) that get iterated and the number of such cycles in any given project may vary.

It is a decision making process (often iterative. This book starts from basic principles and builds up analysis procedures for all major aspects of vehicle and component design.

Extensive use of illustrations, examples, and case studies provides the reader with a thorough understanding of design issues and analysis methods.

pp., Paperbound $ List. 1 Introduction 1 What Is an Electric Vehicle. 1 Overview of EV Challenges 3 Pure Electric Vehicle 4 Hybrid Electric Vehicle 4 Gridable Hybrid Electric Vehicle 5 Fuel-Cell Electric Vehicle 5 Overview of EV Technologies 6 Motor Drive Technology 6 Energy Source Technology 9 Battery Charging.

Preliminary design studies were performed on four continuously variable transmission (CVT) concepts for use in advanced electric vehicles. A kg ( lb) vehicle with an energy storage flywheel was specified. Requirements of the CVTs were a maximum torque of N-m ( lb-ft), a maximum.

requirements analysis, functional analysis and allocation, design synthesis, and verification is explained in some detail. This part ends with a discussion of the documentation developed as the finished output of the systems engineering process.

Part three discusses analysis and control tools that provide balance to the process. Key activities. A vehicle platform with double wishbone suspension on each wheel and rear drive has been developed. Wishbone suspension provides maximum flexibility both with body design and ride height as wishbones give easy height adjustment and typically require lower.

This page states that the criteria contained in this Roadway Design Manual are applicable to all classes of highways from freeways to two-lane roads.

This page gives a brief description of each section by roadway classification. The page also discusses how the manual is formatted and gives a listing of external reference documents.

3 Electric motor and drive-controller design 56 Introduction 56 Electric truck motor considerations 56 Brushless DC motor design for a small car 58 Brushless motor design for a medium car 61 Brushless PM motor: design and FE analysis of a kW machine 64 High frequency motor characteristics Electrical Hazard Analysis 32 Shock Hazard Analysis 32 Approach Boundaries 32 Flash Hazard Analysis 34 Arc-Flash Calculations 35 Electrical Hazards 42 1.

Design a Safer System 42 2. Use and Upgrade to Current-limiting Overcurrent Protective Devices 43 3. Implement an Electrical Safety Program 45 4. Observe Safe Work Practices 45 5.

Use. Advertisement for Design Services (Email to [email protected]) Standard Form ; Standard Form “Attachment B” for Advance Planning of Sustainable, Energy-Efficient Public Buildings “Article ” for Design and Construction of Sustainable, Energy-Efficient Public Buildings; Design Build.

Design Build Construction Contract Forms and.Launch vehicle design is a complex, multidisciplinary engineering activity that requires making difficult compromises to achieve balance among competing objectives for the vehicle, including safety, reliability, performance, operability, and cost (ref.

3).Some preliminary calculations were carried out, along with analysis of challenges and potential solutions. Finally, this paper points out the future tasks and remaining issues for the concept.