Improvement of Automotive Sensors by Migrating AUTOSAR End-to-End Communication Protection Library into Hardware

Author:

Caprita Horia V.ORCID,Selisteanu DanORCID

Abstract

This paper explores new methods to increase the level of safety of data transfer between sensors and electronic control units (ECUs) in automotive communication. A new model of basic sensors to be used in automotive electronics is proposed. This model contains hardware modules that implement the end-to-end communication protection (E2E) mechanism, as defined by the Automotive Open System Architecture (AUTOSAR) standard. By adding this feature inside the sensors, it is possible that, in addition to increasing the safety level, these sensors can be directly connected to the network ECUs via standard communication buses (e.g., Local Interconnect Network (LIN), Controller Area Network (CAN), Flexray, etc.). This paper describes the model, design, and mapping (in a Field Programmable Gate Array device (FPGA)) of the hardware E2E module capable of generating the Cyclic Redundancy Code (CRC) and counter signal for a customized message. This message represents the output of the new sensor E2E module used in a safety communication as requested by the automotive E2E standard. The model is validated also by comparing the data output of the E2E hardware with the data output of the AUTOSAR software E2E library. Finally, future needs and directions are suggested in this area.

Publisher

Kaunas University of Technology (KTU)

Subject

Electrical and Electronic Engineering

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A Novel Configurable End-to-End Communication Protection Hardware Module for Automotive Sensors;IEEE Sensors Journal;2024-03-15

2. Safety automotive sensors and actuators with end-to-end protection (E2E) in the context of AUTOSAR embedded applications;Modeling, Identification, and Control for Cyber- Physical Systems Towards Industry 4.0;2024

3. Integrating AUTOSAR End-to-End Communication Protection Library Inside Automotive Actuators;2023 IEEE 28th International Conference on Emerging Technologies and Factory Automation (ETFA);2023-09-12

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