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Technical Paper

AUTOSAR Software Platform Adoption: Systems Engineering Strategies

2014-04-01
2014-01-0289
AUTOSAR(AUTomotive Open System ARchitecture) establishes an industry standard for OEMs and the supply chain to manage growing complexity to the automotive electronics domain. Increased focus on software based features will prove to be a key differentiator between vehicle platforms. AUTOSAR serves to standardize automotive serial data communication protocols, interaction with respect to hardware peripherals within an ECU and allow ECU implementer to focus on development of unique customer focused features that distinguish product offerings. Adoption strategy and impact assessment associated with leveraging AUTOSAR for an E/E Architecture and the potential challenges that need to be considered will be described in this publication. This publication will also illustrate development strategies that need to be considered w.r.t deploying AUTOSAR like data exchange, consistency to BSW software implementation, MCAL drivers etc.
Technical Paper

FlexRay Active Star Network Integration Strategies and Host Interface Implementation

2011-04-12
2011-01-1027
The FlexRay serial data protocol is being considered in automotive vehicle architectures as an enabler for active safety, time critical systems due to the advantages it provides for time-determinism, increased data bandwidth, and multiple data channels to support fault tolerance strategies. To improve the robustness/availability of the electrical/physical layer when used for these critical applications, a FlexRay Active Star device is available. The Active Star is part of the physical layer and facilitates the creation of robust, fault tolerant network systems by partitioning the network into individual branches connected to one or more ECUs. This partitioning allows fault confinements and isolation activities to be performed at individual branches with minimal disruption to network communication. This paper describes the investigation of Active Star capabilities and some complexities related to their network integration.
Journal Article

Use of AUTOSAR Framework to Assist Software Field Programming

2010-04-12
2010-01-0671
Field reprogramming of electronic control units (ECU) via the serial communication bus for feature upgrades, software fixes is an area which has potential cost impacts to the OEMs. Due to increasing software complexity, feature content, up-integration considerations for ECUs in next generation vehicle platforms the expectation is for flash memory requirements to increase significantly in the future. A reduced reprogramming cycle that builds on top of the existing system framework would be of interest from a cost and timing aspects. Additionally deployment of the next generation of telematics based remote programming techniques would also benefit from shorter reprogramming time in ECUs. An approach to address field reprogramming time would be to migrate to high baud rate communication protocols like FlexRay or Ethernet from the traditional CAN based systems currently in use.
Technical Paper

Exploring Application Level Timing Assessment in FlexRay based Systems

2010-04-12
2010-01-0456
One of the motivations to adopt the FlexRay communication protocol is the increased need to integrate active safety, time-critical features into the automotive domain. A deterministic communication protocol can only provide time bounds to guarantee data availability at the network level. Exploration of the timing analysis & function allocation options for application features need to consider effects due to software behaviors such as task preemptions and interrupts, which could skew the response times during execution in ECUs. The data processing and reaction time to network data in each ECU needs to be adjusted during the development phase to achieve real-time closed loop control in adherence with the timing requirements of the application. This paper provides an innovative approach in using FlexRay to harness the time synchronized nature of the protocol and apply its attributes to support timing assessment of distributed application functions in ECUs.
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