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Short Distance Telemetry for Piston Monitoring. Design and Development of Short Distance Telemetry for Engine Condition Monitoring.

机译:用于活塞监控的短距离遥测。用于发动机状态监测的短距离遥测技术的设计与开发。

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摘要

Piston telemetry research involves monitoring the temperatures at specific internal location points within a combustion engine piston. The temperatures are detected with type K thermocouples as voltages and processed to convert them into temperatures using cold junction compensation methods.udThe present system uses a specific sensor designed to operate in the high temperature environment within the piston, reading multiple thermocouples. Because of the reciprocating motion of the piston, power generation is intermittent and available only when the piston reaches near bottom dead centre, using inductive coupling to power the sensors and transmit data to an evaluation unit for data processing.udThe planned system involves designing and building a prototype telemetry unit using ¿off the shelf¿ components that integrate the reading of thermocouple outputs, signal processing and cold junction compensation. Wireless telemetry is adopted for data transmission with an integrated Bluetooth and microcontroller module. The data acquisition module can be adapted for other sensors by adapting the firmware uploaded to the microcontroller. The hardware electronics are envisaged to be encased in thermal insulation to enable operation in high temperature environments.udThe considered system requires a power supply for the integrated components in the form of a power generator and that it should meet two criteria: to be located within confined spaces and to be permanently available, without having to dismantle systems to change batteries. The selected method is an induction generator constructed from a coil stator connected to the piston connection rod big end and a permanent magnet rotor connected to the crankshaft.udThe suggested mechatronic system is validated against the present system by comparing both systems to determine whether wireless telemetry can perform within acceptable tolerances and limits for the specified task. Then, for acceptable performances, reduce costs and include flexibility to operate in multiple environments. Bench testing shows that the power generator is capable of driving the sensors and the Bluetooth integrated DAQ system.
机译:活塞遥测研究涉及监视内燃机活塞内特定内部位置点的温度。用K型热电偶作为电压检测温度,并使用冷端补偿方法对其进行处理,以将其转换为温度。 ud本系统使用专门设计用于在活塞内的高温环境中运行的特定传感器,读取多个热电偶。由于活塞的往复运动,发电是间歇性的,并且仅当活塞到达下止点附近时才可用,通过感应耦合为传感器供电并将数据传输到评估单元进行数据处理。 ud计划的系统包括设计和使用“现成的”组件来构建原型遥测单元,这些组件集成了热电偶输出,信号处理和冷端补偿的读取功能。无线遥测技术通过集成的蓝牙和微控制器模块进行数据传输。通过调整上传到微控制器的固件,数据采集模块可以适用于其他传感器。设想将硬件电子设备封装在热绝缘中,以使其能够在高温环境下运行。 ud所考虑的系统需要以发电机形式为集成组件供电,并且应满足两个条件:位于密闭空间并永久可用,而无需拆卸系统来更换电池。选择的方法是由连接到活塞连杆大端的线圈定子和连接到曲轴的永磁转子构成的感应发电机。 ud通过比较两个系统以确定是否进行无线遥测,对本机电系统进行了验证可以在可接受的公差范围内执行指定任务。然后,为了获得可接受的性能,降低成本并包括在多种环境中运行的灵活性。基准测试表明,发电机能够驱动传感器和蓝牙集成DAQ系统。

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  • 作者

    Lewalski A.;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 en
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