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A novel control strategy for ORC system with unsteady heat source

机译:具有非定常热源的兽人系统的新型控制策略

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A novel control strategy, named disturbance based control input design, is proposed in this study to improve the performance of Organic Rankine Cycle (ORC) system with unsteady heat source. ORC system for exhaust gas heat recovery of automobile engine is taken as the example. Conventional single variable and multiple variable control strategies are introduced briefly and compared with the proposed strategy. The disturbance based control input design for ORC is also a single variable control strategy, but the control input variable is designed based on the mass flow rate of exhaust gas by means of system improvement. Simulation results show that the ORC system works steadily in the process of a sharp deceleration of engine. The power output and cycle efficiency also increase greatly and remain stable, compared with the conventional ORC system. These results also imply that the disturbance based control input can replace the conventional control input variables and improve the system performance.
机译:本研究提出了一种新颖的控制策略,命名为干扰的控制输入设计,提高了具有非定常热源的有机朗肯循环(ORC)系统的性能。作为示例,采用汽车发动机废气热回收的ORC系统。简要介绍了传统的单变量和多种可变控制策略,并与所提出的策略进行比较。对于ORC的基于干扰的控制输入设计也是单个可变控制策略,但控制输入变量是基于通过系统改进的废气的质量流量设计。仿真结果表明,兽人系统在发动机急剧减速的过程中稳步上作。与传统的ORC系统相比,功率输出和循环效率也大大增加并保持稳定。这些结果还暗示基于干扰的控制输入可以取代传统的控制输入变量并提高系统性能。

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