Towards Model-Based Control of RCCI-CDF Mode-Switching in Dual Fuel Engines
Towards Model-Based Control of RCCI-CDF Mode-Switching in Dual Fuel Engines
复制标题
双燃料发动机中基于模型的 RCCI-CDF 模式切换控制
DOI:
10.4271/2018-01-0263
复制
发表时间:
2018
影响因子:
4.9
通讯作者:
F. Willems
中科院分区:
文献类型:
--
作者:
A. Indrajuana;C. Bekdemir;E. Feru;F. Willems
The operation of a dual fuel combustion engine using combustion mode-switching offers the benefit of higher thermal efficiency compared to single-mode operation. For various fuel combinations, the engine research community has shown that running dual fuel engines in Reactivity Controlled Compression Ignition (RCCI) mode, is a feasible way to further improve thermal efficiency compared to Conventional Dual Fuel (CDF) operation of the same engine. In RCCI combustion, also ultra-low engine-out NOx and soot emissions have been reported. Depending on available hardware, however, stable RCCI combustion is limited to a certain load range and operating conditions. Therefore, mode-switching is a promising way to implement RCCI in practice on short term. In this paper, a model-based development approach for a dual fuel mode-switching controller is presented. Simulation results demonstrate the potential of this controller for a heavyduty engine running on natural gas and diesel. An existing control-oriented engine model is extended with a new CDF model to simulate both CDF and RCCI operation. This model shows good agreement with experimental data. As a first step towards model-based control development, this extended model is used for system analysis to understand the switching behavior and to design a coordinated air-fuel path controller. This closed-loop controller combines static decoupling with next-cycle CA50-IMEP-Blend Ratio control. For a modeswitching sequence in a low load operating point, the closedloop controlled engine demonstrates stable behavior and good reference tracking. The paper concludes with an outlook on necessary steps to bring model-based control strategies for dual fuel mode-switching in a multi-cylinder engine on the road.