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A Systematic Approach of Improving Reliability Process through Development and Application of On-Board Diagnostics System, for Commercial Vehicle

机译:通过开发和应用载于车载诊断系统的可靠性过程的系统方法,用于商用车

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This paper describes a methodology for design and development of On-Board Diagnostic system (OBD) with an objective to improve current reliability process in order to ensure design & quality of the new system as per requirement of commercial vehicle technology. OBD is a system that detects failures which adversely affect emissions and illuminates a MIL (Malfunction Indicator Lamp) to inform the driver of a fault which may lead to increase in emissions. OBD provides standard and unrestricted access for diagnosis and repair. Below given Figure 1 shows the working principle of OBD system. The exhaust emission of a vehicle will be controlled primarily by Engine Control Unit (ECU) and Exhaust Gas After Treatment Control (EGAS CU). These two control units determine the combined operating strategies of the engine and after treatment device. Figure 1Modern Control Architecture for OBD System in Commercial vehicle [1]
机译:本文介绍了一种设计和开发车载诊断系统(OBD)的方法,其目的是提高电流可靠性过程,以确保新系统的设计和质量根据商用车辆技术的要求。 OBD是一种检测失败的系统,这会对排放产生不利影响,并阐明MIL(故障指示灯)以通知驾驶员可能导致排放量增加。 OBD提供标准和不受限制的诊断和维修。下面给出了图1,显示了OBD系统的工作原理。车辆的废气发射将主要由发动机控制单元(ECU)和处理后的废气(EGAS Cu)控制。这两个控制单元确定发动机和处理装置后的组合操作策略。图1在商用车中的OBD系统控制架构[1]

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