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Development of 100 Producer Gas Engine and Field Testing With PID Governor Mechanism for Variable Load Operation

机译:用PID调速机制的100%生产者燃气发动机和现场测试进行可变负载操作

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With increasing scarcity of power and fossil fuel sources along with increasing concern about environmental degradation, there is renewed interest in biomass-based energy systems. Biomass gasifier-based, power-generating systems operating with 100% producer gas engine are gaining importance as promising technology for remote village electrification in India. However, the major bottleneck hampering the acceptability of dedicated gas-engine-based power plants is suitable governing mechanism for variable load operation under field conditions. Presently biomass gasifier-based power plants are being used mainly for fixed load operations with manual adjustments of valves for controlling gas-air mixture supply to engine for given load conditions. This paper gives a detailed account of efforts made in evolving robust engine governing mechanism (for maintaining engine speed and output frequency) under variable load operation for dedicated producer gas engine and its performance under field conditions. Results show that the present PID (proportional integrative and derivative) controller provides best control of engine speed (RPM), and is capable of maintaining the output frequencies and voltages within allowable narrow limits with fluctuating/oscillating load conditions.
机译:随着力量和化石燃料源的稀缺随着对环境退化的越来越多的缺点,对基于生物量的能源系统的再生感兴趣。生物质气化器的基于发电系统,使用100%生产的燃气发动机运营的发电系统是对印度偏远村电气化的有希望技术的重要性。然而,妨碍了专用气体发动机的发电厂的可接受性的主要瓶颈是在现场条件下可变载荷运行的适当控制机制。目前,基于生物量气化器的发电厂主要用于固定载荷操作,用于控制阀门的手动调节,用于控制用于给定负载条件的气体空气混合物供应。本文详细介绍了在专用生产者气体发动机可变负载运行下不断发展的强大发动机控制机制(用于维持发动机速度和输出频率)的努力及其在现场条件下的性能。结果表明,目前的PID(比例一体化和衍生物)控制器提供了对发动机速度(RPM)的最佳控制,并且能够在允许的窄极限内保持输出频率和电压,其具有波动/振荡的负载条件。

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