Data Driven System Engineering: Automotive ECU Development

Every computing system has two, and only two attributes: Data Value and Data timing, which represent fully the system functionalities from the system external behavior point of view.

The data driven system engineering is the approach to develop the system by focusing on the two attributes mentioned above, in which, the data values are derived by the system operation concept design, and the data timing is derived by the system latency design. Based on which, this book provides a full range of system and software engineering development activities:

    Requirement Elicitation

   Requirement Engineering

   System and Software Architecture Design

       System Operation Concept Design

       System and Software Structure Design

       Electronic Architect Design

       Functionality Allocation

       Failure Mode and Effect Analysis (FMEA)

       Safety

       Cybersecurity (full compliant with UN ECE 155/156)

   System and software Verification

       System and Software Integration and Verification

       System and Software Black Box Verification

each of which has its own clearly defined scope and approach, which is different from the conventional development, in some cases even different from some ISO standards, for example:

   Safety Development: the safety requirements for every part in a vehicle are cascaded from the vehicle safety requirements, which is different from the Concept Phase in the Part 3 of ISO 26262, and the functional safety development will be fully covered by (1) Reliability (2) Availability (3) Quality.

   Error Detection and Protection: there are only two types of errors to be detected in a computing system: Data Value error and Data Timing error, to detect which, there are only two aspects to be considered: (1) input data (2) middle data and output data in addition to the platform error detection. The approaches of detection and protection include (1) data transfer protocol check, (2) data range and reasonable value check, (3) execution time check and control.

   FMEA: this book provides the optimized approach by following the data relationships between the input data, middle data and output data, which will be both inductive and deductive.

   Cybersecurity: this book provides the full solution to cover the UN ECE 155 by implementing three aspects: (1) Trusted contents in the ECU (2) Authenticated access to the ECU (3) Authenticated communication with the ECU.

1140985899
Data Driven System Engineering: Automotive ECU Development

Every computing system has two, and only two attributes: Data Value and Data timing, which represent fully the system functionalities from the system external behavior point of view.

The data driven system engineering is the approach to develop the system by focusing on the two attributes mentioned above, in which, the data values are derived by the system operation concept design, and the data timing is derived by the system latency design. Based on which, this book provides a full range of system and software engineering development activities:

    Requirement Elicitation

   Requirement Engineering

   System and Software Architecture Design

       System Operation Concept Design

       System and Software Structure Design

       Electronic Architect Design

       Functionality Allocation

       Failure Mode and Effect Analysis (FMEA)

       Safety

       Cybersecurity (full compliant with UN ECE 155/156)

   System and software Verification

       System and Software Integration and Verification

       System and Software Black Box Verification

each of which has its own clearly defined scope and approach, which is different from the conventional development, in some cases even different from some ISO standards, for example:

   Safety Development: the safety requirements for every part in a vehicle are cascaded from the vehicle safety requirements, which is different from the Concept Phase in the Part 3 of ISO 26262, and the functional safety development will be fully covered by (1) Reliability (2) Availability (3) Quality.

   Error Detection and Protection: there are only two types of errors to be detected in a computing system: Data Value error and Data Timing error, to detect which, there are only two aspects to be considered: (1) input data (2) middle data and output data in addition to the platform error detection. The approaches of detection and protection include (1) data transfer protocol check, (2) data range and reasonable value check, (3) execution time check and control.

   FMEA: this book provides the optimized approach by following the data relationships between the input data, middle data and output data, which will be both inductive and deductive.

   Cybersecurity: this book provides the full solution to cover the UN ECE 155 by implementing three aspects: (1) Trusted contents in the ECU (2) Authenticated access to the ECU (3) Authenticated communication with the ECU.

29.99 In Stock
Data Driven System Engineering: Automotive ECU Development

Data Driven System Engineering: Automotive ECU Development

by James Wen
Data Driven System Engineering: Automotive ECU Development

Data Driven System Engineering: Automotive ECU Development

by James Wen

eBook

$29.99 

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Overview

Every computing system has two, and only two attributes: Data Value and Data timing, which represent fully the system functionalities from the system external behavior point of view.

The data driven system engineering is the approach to develop the system by focusing on the two attributes mentioned above, in which, the data values are derived by the system operation concept design, and the data timing is derived by the system latency design. Based on which, this book provides a full range of system and software engineering development activities:

    Requirement Elicitation

   Requirement Engineering

   System and Software Architecture Design

       System Operation Concept Design

       System and Software Structure Design

       Electronic Architect Design

       Functionality Allocation

       Failure Mode and Effect Analysis (FMEA)

       Safety

       Cybersecurity (full compliant with UN ECE 155/156)

   System and software Verification

       System and Software Integration and Verification

       System and Software Black Box Verification

each of which has its own clearly defined scope and approach, which is different from the conventional development, in some cases even different from some ISO standards, for example:

   Safety Development: the safety requirements for every part in a vehicle are cascaded from the vehicle safety requirements, which is different from the Concept Phase in the Part 3 of ISO 26262, and the functional safety development will be fully covered by (1) Reliability (2) Availability (3) Quality.

   Error Detection and Protection: there are only two types of errors to be detected in a computing system: Data Value error and Data Timing error, to detect which, there are only two aspects to be considered: (1) input data (2) middle data and output data in addition to the platform error detection. The approaches of detection and protection include (1) data transfer protocol check, (2) data range and reasonable value check, (3) execution time check and control.

   FMEA: this book provides the optimized approach by following the data relationships between the input data, middle data and output data, which will be both inductive and deductive.

   Cybersecurity: this book provides the full solution to cover the UN ECE 155 by implementing three aspects: (1) Trusted contents in the ECU (2) Authenticated access to the ECU (3) Authenticated communication with the ECU.


Product Details

ISBN-13: 9798985624915
Publisher: DDSE Consulting LLC
Publication date: 02/01/2022
Sold by: Barnes & Noble
Format: eBook
Pages: 258
File size: 8 MB

About the Author

40 years industrial electronic control development history including 20 years automotive ECU development in North AmericaInventor of Data Driven Reliability Development for Computing SystemFounder of DDSE Consulting, LLC (www.ddseconsulting.com)

Table of Contents

 3        Data Driven System Engineering,

  3.1        Concept,

  3.1.1        Data Driven Development,

  3.2        Requirement Elicitation,

  3.3        Requirement Engineering,

  3.4        System Architecture Design,

  3.4.1        System Operation Concept Design,

  3.4.1.1        Derivation,

  3.4.2        System Structure Design,

  3.4.2.1        Feature Function,

  3.4.2.2        Application Mode Manager,

  3.4.2.3        Serial Signal Manager,

  3.4.2.4        Diagnostic Service,

  3.4.2.5        Cybersecurity Function,

  3.4.3        Electronic Architect Design,

  3.4.3.1        Microcontroller Selection,

  3.4.3.2        Power Supply Component Selection,

  3.4.3.3        Communication Interface Component Selection,

  3.4.4        Functionality Allocation,

  3.4.4.1        Cybersecurity,

  3.4.4.2        Safety,

  3.4.4.3        Latency,

  3.4.5        FMEA,

  3.4.5.1        Conventional FMEA,

  3.4.5.2        Data Driven FMEA,

  3.4.6        Safety,

  3.4.6.1        Safety Concept,

  3.4.6.2        Safety Development,

  3.4.6.3        BSD Safety,

  3.4.6.4        ISO 26262 Compliance,

  3.4.7        Cybersecurity,

  3.4.7.1        Cybersecurity Threat Impact,

  3.4.7.2        Cybersecurity Development Content,

  3.4.7.3        Cryptography,

  3.4.7.4        Approach,

  3.4.7.5        UN ECE 155 / 156 compliance,

  3.5        System Verification,

  3.5.1        Test Case Setup,

  3.5.1.1        Minimum Test Cases Number Calculation,

  3.5.1.2        Test Case Content,

  3.5.2        System Integration and Verification,

  3.5.3        System Black Box Verification

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