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Thermo electric generator module in driving the vehicle and monitoring using IoT

机译:使用物联网在车辆行驶和监控中使用热发电机模块

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Energy can be harvested from the thermal waste produced in the Engines and Silencer of the vehicle. Recently used Gas turbine engines may fail due to fuel leakage or failure of engine System. Therefore, these vehicle which runs on both Fuel and electricity Produces by itself will consume less fuel and operates over a long distance. Thermo electric generator (TEG) module is used here, which generates electrical energy from the heat dissipated in the Engines and Silencer surface of the Vehicle. Due to the temperature difference between two terminals of TEG a voltage (current) is produced. The produced voltage is not sufficient to drive the vehicle hence the voltage is boosted up to required level using a DC-DC converter. The boosted up voltage is stored in battery which is used as a backup. Hence when the fuel system fails, immediately backup system will operate and continue its operation. Thus it makes the Vehicle self Sufficient. The physical parameters like temperature will be monitored simultaneously using Internet of Things (IoT) technology. The main objective is to reduce the use of non-renewable fossil fuels and thereby reducing the CO2 emission which makes the vehicle eco-friendly. TEG system in future can be converted as a hybrid system in combination with solar cells to increase the vehicle efficiency. TEG system is very compact and the efficiency will be high since the vehicle delivers large amount of heat. This system is practically very easy to implement.
机译:可以从车辆的发动机和消音器中产生的热废料中收集能量。最近使用的燃气涡轮发动机可能由于燃油泄漏或发动机系统故障而发生故障。因此,这些依靠燃料和电力产生的车辆本身将消耗更少的燃料,并且行驶距离较长。此处使用热发电机(TEG)模块,该模块从散发在发动机和车辆消声器表面的热量中产生电能。由于TEG的两个端子之间的温差,会产生电压(电流)。产生的电压不足以驱动车辆,因此使用DC-DC转换器将电压升至所需水平。升压后的电压存储在电池中,用作备用电池。因此,当燃油系统发生故障时,立即备用系统将运行并继续其运行。因此,它使车辆自给自足。温度等物理参数将使用物联网(IoT)技术同时进行监控。主要目的是减少对不可再生化石燃料的使用,从而减少二氧化碳排放量,从而使车辆更加环保。将来的TEG系统可以转换为与太阳能电池结合的混合系统,以提高车辆效率。 TEG系统非常紧凑,并且效率高,因为车辆会散发大量热量。该系统实际上非常容易实现。

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