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Real-Time Back Torque Measurement Using Contactless Telemetry on Electric Starter System of a Two-Wheeler Fired Engine

机译:使用非接触式遥测在两轮车发动机电动启动系统上使用非接触式遥测的实时后扭矩测量

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In a two-wheeler, electric starter system generally One way clutch is coupled with the magneto rotor. This allows the transfer of torque from the electric motor to the magneto rotor and finally to the crankshaft to start the internal combustion engine. After the electric starter, has started the internal combustion engine, one way clutch automatically goes into idling mode. In two-wheeler, internal combustion engine is susceptible to misfire due to variations in combustion behavior. This sometimes leads to knocking and unpredictably high back torque. This acts on the starter system and leads to failure of One way clutch, starter gears or the starter motor. It is not feasible to predict the back torque realistically. It is also very challenging to make real time measurement of back torque on the fired engine. In this paper, we are attempting to explain a unique testing methodology which was adopted to overcome this challenge and successfully measure the back torque accurately. The instrumented test vehicle was mounted on a chassis dynamometer. Back torque was simulated using specific test cycle. The measurement was carried out with the help of instrumented magneto rotor using strain gauges as torque sensing elements. For sensing the torque signal, telemetry system was used and for data logging Rotec system was used. Telemetry sensor was fixed onto the extended crankshaft and the receiver was mounted onto a housing. Torque signal was measured from instrumented magneto rotor with Strain gauges. Signals received from strain gauges were amplified and logged into Rotec DAC system and were further analyzed with Rotec software. The crankshaft speed was also measured with the help of optical speed sensor. Back torque was analyzed with respect to the crankshaft speed. Thus, this measurement resulted in thorough understanding of the back torque in two-wheeler internal combustion engine.
机译:在两个载体中,电动启动系统通常是一种方式离合器与磁转子联接。这允许从电动机转移到磁转子,最后在曲轴上启动内燃机。电动启动器后,开始内燃机,一种方式离合器自动进入空转模式。在两轮车中,由于燃烧行为的变化,内燃机易受失火的影响。这有时会导致敲击和不可预测的高背扭矩。这在起动系统上起作用,并导致一个方式离合器,起动齿轮或起动电动机的失效。现实地预测后扭矩是不可行的。在燃烧发动机上实时测量后扭矩的实时测量也是非常具有挑战性的。在本文中,我们试图解释一种独特的测试方法,该方法被采用来克服这一挑战,并准确地成功测量后扭矩。仪器测试车辆安装在底盘测功机上。使用特定的测试循环模拟后扭矩。使用应变仪作为扭矩传感元件,在仪器磁转子的帮助下进行测量。为了传感扭矩信号,使用遥测系统,使用数据记录ROTEC系统。将遥测传感器固定在延伸的曲轴上,并将接收器安装到壳体上。从仪表磁转子用应变仪测量扭矩信号。从应变仪接收的信号被放大并登录到Rotec DAC系统中,并用Rotec软件进一步分析。还通过光学速度传感器的帮助测量曲轴速度。相对于曲轴速度分析后扭矩。因此,该测量导致对两轮车内燃机中的后扭矩彻底了解。

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