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Frequency compensation control method for opposedpiston two-stroke folded-cranktrain engine's common rail system by loop-shaping theory
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作者 左哲 张哲瑜 +2 位作者 钱李龙 张付军 岳广臣 《Journal of Beijing Institute of Technology》 EI CAS 2016年第2期194-201,共8页
A frequency compensation control method for the opposed-piston two-stroke folded-cranktrain( OPFC) diesel engine's common rail system is presented as a result of the study of the loop-shaping theory. A common rail ... A frequency compensation control method for the opposed-piston two-stroke folded-cranktrain( OPFC) diesel engine's common rail system is presented as a result of the study of the loop-shaping theory. A common rail working process and the classical frequency control theory are combined to construct a frequency restriction of common rail pressure. A frequency compensator is utilized to improve the robustness of multiplicative perturbations and disturbance. The loop-shaping method has been applied to design the common rail pressure controller of the OPFC diesel engine. Simulation and bench test results show that in the condition of perturbation that comes from the effect of injection,multi-injection,fuel pumping of a pre-cylinder,and instantaneous pressure fluctuation,the controller indicates high precision. Compared with the original controller,this method improves the control precision by 67. 3%. 展开更多
关键词 robust control opposed-piston two-stroke folded-cranktrain diesel engine loop-sha-ping frequency compensator common rail control
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Elimination of Fuel Pressure Fluctuation and Multi-injection Fuel Mass Deviation of High Pressure Common-rail Fuel Injection System 被引量:9
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作者 LI Pimao ZHANG Youtong +1 位作者 LI Tieshuan XIE Lizhe 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2015年第2期294-306,共13页
The influence of fuel pressure fluctuation on multi-injection fuel mass deviation has been studied a lot,but the fuel pressure fluctuation at injector inlet is still not eliminated efficiently.In this paper,a new type... The influence of fuel pressure fluctuation on multi-injection fuel mass deviation has been studied a lot,but the fuel pressure fluctuation at injector inlet is still not eliminated efficiently.In this paper,a new type of hydraulic filter consisting of a damping hole and a chamber is developed for elimination of fuel pressure fluctuation and multi-injection fuel mass deviation.Linear model of the improved high pressure common-rail system(HPCRS)including injector,the pipe connecting common-rail with injector and the hydraulic filter is built.Fuel pressure fluctuation at injector inlet,on which frequency domain analysis is conducted through fast Fourier transformation,is acquired at different target pressure and different damping hole diameter experimentally.The linear model is validated and can predict the natural frequencies of the system.Influence of damping hole diameter on fuel pressure fluctuation is analyzed qualitatively based on the linear model,and it can be inferred that an optimal diameter of the damping hole for elimination of fuel pressure fluctuation exists.Fuel pressure fluctuation and fuel mass deviation under different damping hole diameters are measured experimentally,and it is testified that the amplitude of both fuel pressure fluctuation and fuel mass deviation decreases first and then increases with the increasing of damping hole diameter.The amplitude of main injection fuel mass deviation can be reduced by 73%at most under pilot-main injection mode,and the amplitude of post injection fuel mass deviation can be reduced by 92%at most under main-post injection mode.Fuel mass of a single injection increases with the increasing of the damping hole diameter.The hydraulic filter proposed by this research can be potentially used to eliminate fuel pressure fluctuation at injector inlet and improve the stability of HPCRS fuel injection. 展开更多
关键词 high pressure common-rail system pressure fluctuation multi-injection fuel mass deviation hydraulic filter
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STRATEGY FOR DIESEL ROTARY ENGINE WITH COMMON RAIL INJECTION SYSTEM 被引量:2
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作者 WU Jinjun HAI Jingtao +3 位作者 SHI Jianzhong LI Xuesong YANG Qing WANG Shangyong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2006年第3期412-416,共5页
A direct injection low compression ratios diesel rotary engine is designed and studied to find the appropriate application of the electronic controlled high pressure common rail injection system. Current development f... A direct injection low compression ratios diesel rotary engine is designed and studied to find the appropriate application of the electronic controlled high pressure common rail injection system. Current development focuses on the applied fuel injection and ignition strategies, especially concerning the combustion configurations of injectors, ignition source, and combustion chamber. The prototype engine, equipped with Bosch common rail system and high performance electronic control unit (ECU), is designed correspondingly. Studies show that the integration of a common rail injection system and the main and pilot duel injectors configurations, assisted with glow plug ignition device and flexible ECU, represents a promising approach to improve the potential of the low compression ratios diesel rotary engine. Currently the engine can run at 6 kr · min^-1 steadily and the power is about 68 kW/(4 kr ·min^- 1). 展开更多
关键词 Diesel rotary engine common rail injection system Electronic control unit(ECU)
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An experimental study on RP-3 jet fuel injection on a common rail injection system
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作者 ZHAO Tong-bin WU Yi-sheng +2 位作者 DUAN Yao-zong HUANG Zhen HAN Dong 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第7期2179-2188,共10页
RP-3 jet fuel could be an alternative fuel for diesel engines.In this study,the injection characteristics of RP-3jet fuel under single and split injection strategies were investigated and compared with diesel fuel.The... RP-3 jet fuel could be an alternative fuel for diesel engines.In this study,the injection characteristics of RP-3jet fuel under single and split injection strategies were investigated and compared with diesel fuel.The experimental results indicate that RP-3 jet fuel has slightly shorter injection delay time than diesel fuel,but this difference is negligible in actual engine operations.Further,although the lower density and viscosity of RP-3 jet fuel lead to higher volumetric injection rates and cycle-based injection quantities,the cycle-based injection mass and the mass injection rates at the stable injection stage of RP-3 jet fuel are close to or slightly lower than those of diesel fuel.Based on these experimental observations,it could be concluded that fuel physical properties are the secondary factor influencing the injection characteristics in both single and split injection strategies,as RP-3 jet fuel and diesel fuel are taken for comparison. 展开更多
关键词 RP-3 jet fuel diesel engine single injection pilot-main injection common rail injection system
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Influence of eddy current on transient characteristics of common rail injector solenoid valve 被引量:1
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作者 李丕茂 张幽彤 《Journal of Beijing Institute of Technology》 EI CAS 2015年第1期26-34,共9页
Influence of eddy current on transient characteristics of common rail injector solenoid valve was studied in this paper. Experimental investigations of drive current and power source volt- age of both drive current as... Influence of eddy current on transient characteristics of common rail injector solenoid valve was studied in this paper. Experimental investigations of drive current and power source volt- age of both drive current ascending and descending process were conducted on a common rail injec- tor solenoid valve. A new discretizing calculation method of solenoid valve flux linkage was put for- ward for the first time based on the experimental results and drive circuit principle, and flux linkage of both drive current ascending and descending process were evaluated. New inductance calculation methods for drive current ascending and descending process respectively were also presented. Influ- ence of parasitic inductance was evaluated. Results indicate that the air gap, under which the transi- ent flux linkage of the solenoid valve is the biggest, varies with drive current due to eddy current. Flux linkage of drive current descending process is bigger than that of drive current ascending process under the same drive current and the same air gap width. Eddy current can reduce the delay between the time that drive current begins to descend and the time that armature begins to move downward. Inductance of drive current descending process is bigger than that of drive current as- cending process over larger scope of drive current, but the difference becomes smaller with the in- creasing of air gap width. The differences of both flux linkage and inductance between drive current ascending and descending process are caused by the eddy current in core and armature materials. 展开更多
关键词 common rail injector solenoid valve transient characteristic flux linkage INDUCTANCE eddy current
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After-Sale Data Based Common Rail Injector Remanufacturability Analysis
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作者 ZHANG Jihao CHEAT Ming 《Journal of Shanghai Jiaotong university(Science)》 EI 2018年第3期337-344,共8页
The injector is the most critical and vulnerable part of a diesel engine, and injector remanufacturing seems to be a solution to change the adverse market conditions. For remanufactured injector, there are some differ... The injector is the most critical and vulnerable part of a diesel engine, and injector remanufacturing seems to be a solution to change the adverse market conditions. For remanufactured injector, there are some differences between China and developed countries. These differences make a different remanufacturability. New remanufacturing process should be evaluated to determine the feasibility. Fuqiang Power Company's experiment and the survey from Bosch Diesel Centers(BDCs) show the status of the used injectors that nearly one-third of the used injector can be remanufactured with low cost. It is feasible to produce quality remanufactured injector under given process. Promoting clean diesel engine is more likely to be accepted by the consumer. 展开更多
关键词 DIESEL AFTERMARKET common rail injector(CRI) REMANUFACTURING remanufacturability
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Pressure-Based Approach to Estimating the Injection Start and End in Single and Split Common Rail Injection Processes
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作者 ZHAI Jiaqi DUAN Yaozong HAN Dong 《Journal of Shanghai Jiaotong university(Science)》 EI 2018年第S1期28-33,共6页
Fuel injection timing is an important control parameter for engine combustion optimization and emissions control. However, the actual fuel injection timing is different from the nominal one commanded by the electronic... Fuel injection timing is an important control parameter for engine combustion optimization and emissions control. However, the actual fuel injection timing is different from the nominal one commanded by the electronic control unit, due to the system hydraulic lag or the possible communication malfunction. In this study,a simple estimate approach based on the injector inlet pressure is proposed to capture four critical characteristic instants at the start and end of injection. The critical characteristic moments estimated using this pressure-based approach are validated against those determined by the actual injection rate profiles, in the context of different single or split injection processes. The comparison revealed that the characteristic injection moments estimated by the injector inlet pressures and those determined by the actual injection rate profiles have a satisfactory agreement, certifying the broad applicability and reliability of this pressure-based approach in the detection of the real fuel injection start and end time. 展开更多
关键词 injector inlet pressure common rail injection system injection diagnostics single injection split injection
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Characteristics of Diesel/N-Butanol Blend on a Common Rail Diesel Engine with Exhaust Gas Recirculation
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作者 Yanfei Chen Jingjing He +2 位作者 Hao Chen Xin Su Bin Xie 《Energy Engineering》 EI 2022年第3期1239-1259,共21页
20%n-butanol is blended in diesel by volume(noted as D80B20)and experiment has been carried out to study the effect on the combustion and emission characteristics based on a common rail diesel engine with exhaust gas ... 20%n-butanol is blended in diesel by volume(noted as D80B20)and experiment has been carried out to study the effect on the combustion and emission characteristics based on a common rail diesel engine with exhaust gas recirculation(EGR)system.The results reveal thatD80B20 has longer ignition delay,shorter combustion duration and higher maximumin-cylinder temperature than pure diesel(noted as D100).Further,the number concentration and volume concentration of ultrafine particles decrease significantly while NO_(X) emissions increase a little with the addition of n-butanol.When the exhaust gas is induced into cylinder,NO_(X) emissions significantly decrease and ultrafine particles emissions increase.The number geometric mean diameters and volume geometricmean diameters of ultrafine particles increase withEGR ratio.Compared toD100 without EGR,D80B20 with 20%EGR ratio can reduce both NO_(X) and ultrafine particles emissions at 0.14MPa BMEP and 0.56MPa BMEP. 展开更多
关键词 N-BUTANOL ultrafine particles COMBUSTION EMISSION common rail diesel engine
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Test Research on the Knock of a Common-Rail Diesel Engine Fueled with Diesel-Methanol Dual-Fuel
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作者 Chao Zhu Zhuopei Liu +1 位作者 Hao Chen Yangyang Li 《Energy Engineering》 EI 2023年第5期1081-1105,共25页
Experiments were conducted on a diesel-methanol dual-fuel(DMDF)engine modified by a six-cylinder,turbocharged,inter-cooled diesel engine.According to the number of diesel injection,the experiments are divided to two p... Experiments were conducted on a diesel-methanol dual-fuel(DMDF)engine modified by a six-cylinder,turbocharged,inter-cooled diesel engine.According to the number of diesel injection,the experiments are divided to two parts:the single injectionmode and double injectionmode.The results show that,at the double injectionmode,themaximumof pressure rise rate is small and the engine runs smoothly,however,knock still occurswhen the cocombustion ratio(CCR)is big enough.Under knock status,the power density of the block vibration concentrating at some special frequencies rises dramatically,and the special frequency of single injection mode(about 4.1 kHz)is lower than that of double injection mode(7–9 kHz).The cylinder pressure oscillations of knock status are very different fromthe non-knock status.Under knock status,cylinder pressure oscillations become more concentrated and fiercer at some special frequencies,and the same as the block vibration.The special frequency of single injection mode(3–6 kHz)is lower than that of double injection mode(above 9 kHz). 展开更多
关键词 common rail diesel engine diesel-methanol dual-fuel KNOCK block vibration pressure oscillation
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Design and optimization of a novel electrically controlled high pressure fuel injection system for heavy fuel aircraft piston engine 被引量:8
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作者 Ke ZHANG Xudong HUANG +1 位作者 Zhifeng XIE Ming ZHOU 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2018年第9期1920-1928,共9页
The heavy fuel compression ignition engines are widely equipped as aircraft piston engines. The fuel injection system is one of the key technologies that determines the performance of engine. One of the main challenge... The heavy fuel compression ignition engines are widely equipped as aircraft piston engines. The fuel injection system is one of the key technologies that determines the performance of engine. One of the main challenges is to precisely control the injected fuel quantity and flow rate in the presence of pressure fluctuation. This challenge is even more serious for heavy fuel. An original design for electrically controlled high pressure fuel injection system called Multi-Pumppressure-reservoirs fuel injection System(MPS) was demonstrated to reduce the pressure fluctuation and help keep injection stable. MPS was compared with an ordinary high pressure Common Rail fuel injection System(CRS). This work established one-dimensional AMESim and mathematical models for both CRS and MPS to study the effect of different structures and geometric parameters on the pressure fluctuations. The calculations show that the average fuel pressure fluctuation of MPS can be reduced by 57% for the crankshaft speed of 1900 r/min, and the pressure fluctuation before injection reduced by 100%. It is concluded that the pressure performance of MPS is less sensitive to pressure reservoir volume than that of CRS, and there is an opportunity for further volume reduction. 展开更多
关键词 Aircraft engines AMESIM common rail Fuel injection Mathematical models Pressure effects Structural design
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STRUCTURE PARAMETERS DESIGN AND PERFORMANCE TEST OF FUEL INJECTION SYSTEM 被引量:4
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作者 WU Changshui YU Jinxia +1 位作者 YANG Lin ZHUO Bin 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2006年第3期407-411,共5页
Based on the numerical simulation analysis,structure parameters of the high pressure fuel pump and common rail as well as flow limiter are designed and the GD-1 high pressure common rail fuel injection system is self-... Based on the numerical simulation analysis,structure parameters of the high pressure fuel pump and common rail as well as flow limiter are designed and the GD-1 high pressure common rail fuel injection system is self-developed.Fuel injection characteristics experiment is performed on the GD-1 system.And double-factor variance analysis is applied to investigate the influence of the rail pressure and injection pulse width on the consistency of fuel injection quantity,thus to test whether the design of structure parameters is sound accordingly.The results of experiment and test show that rail pressure and injection pulse width as well as their mutual-effect have no influence on the injection quantity consistency,which proves that the structure parameters design is successful and performance of GD-1 system is sound. 展开更多
关键词 High pressure common rail fuel injection system Structure parameters design Variance analysis
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Simulation of a vehicle hydraulic propulsion system 被引量:1
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作者 蒋忠林 吴维 +1 位作者 苑士华 胡纪滨 《Journal of Beijing Institute of Technology》 EI CAS 2014年第2期178-183,共6页
The characteristics of a hybrid hydraulic vehicle driven by the hydraulic common rail propulsion system with a hydraulic free-piston engine and a hydraulic transformer were studied.A mathematical model of the propulsi... The characteristics of a hybrid hydraulic vehicle driven by the hydraulic common rail propulsion system with a hydraulic free-piston engine and a hydraulic transformer were studied.A mathematical model of the propulsion system was established and a control method of the propulsion system was proposed.Extensive simulation results of hybrid hydraulic vehicles with the hydraulic common rail propulsion system were presented.The hydraulic common rail propulsion system achieved the switch power control and the constant power propulsion.The control method based on the propulsion,break and speed limit requirement was verified.Our results showed that the hydraulic common rail propulsion system gained an ideal acceleration process. 展开更多
关键词 hydraulic common pressure rail free-piston engine rotate-plate hydraulic transformer
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基于喷雾动量法的共轨喷油器喷油稳定性试验研究
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作者 赵建辉 徐煜 +2 位作者 杨贵春 徐丹 王伟 《西南交通大学学报》 北大核心 2025年第3期665-670,共6页
为研究共轨喷油器各喷孔喷油规律,根据动量法研发了多孔喷油器喷油规律测量装置;在不同的负荷工况下,使用研发的装置测量喷油器各喷孔的喷油量差异性,并与商业单次喷射仪EMI 2的测量结果进行对比;在不同的喷油压力下,针对单一喷孔进行... 为研究共轨喷油器各喷孔喷油规律,根据动量法研发了多孔喷油器喷油规律测量装置;在不同的负荷工况下,使用研发的装置测量喷油器各喷孔的喷油量差异性,并与商业单次喷射仪EMI 2的测量结果进行对比;在不同的喷油压力下,针对单一喷孔进行喷孔喷油稳定性研究.研究结果表明:在低喷油压力下,喷油量波动率随着喷油脉宽的增加而降低,整体上喷油量波动率为10%~20%,此时针阀无法完全打开,针阀-针阀座之间燃油的不稳定流动会造成较大的喷油量波动;在高喷油压力下,针阀更容易达到最大升程,喷孔参数间的不一致性是导致喷孔喷油量波动的关键因素,在0.5~2.0 ms的喷油脉宽范围内,喷油量波动率处于5%之内,远小于相同条件低喷油压力下的喷孔喷油量波动率,针阀无法达到最大升程是导致共轨喷油器喷油不稳定性的主要原因. 展开更多
关键词 喷油稳定性 喷油量波动率 喷雾动量法 循环喷油量 高压共轨燃油系统
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非等长高压油管对共轨系统喷油一致性的影响 被引量:1
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作者 李丽萍 王意宝 +2 位作者 范委修 范立云 卢港澳 《哈尔滨工程大学学报》 北大核心 2025年第2期252-258,共7页
为研究高压共轨系统高压油管非等长对循环喷油量一致性的影响,本文搭建了共轨系统AMESim仿真模型,并通过实验数据进行了验证。通过分析非等长高压油管系统的压力波动特性,提出了循环喷油量相对极差作为一致性的评指标,研究了在不同喷射... 为研究高压共轨系统高压油管非等长对循环喷油量一致性的影响,本文搭建了共轨系统AMESim仿真模型,并通过实验数据进行了验证。通过分析非等长高压油管系统的压力波动特性,提出了循环喷油量相对极差作为一致性的评指标,研究了在不同喷射模式下系统多缸循环喷油量的一致性。结果表明:非等长高压油管会通过影响各喷油器内部压力波动特性进而影响多缸喷射一致性;单次喷射模式中,油管非等长对循环喷油量一致性影响较小,在额定工况下循环喷油量相对极差为1.03%,并且随着控制脉宽的增加而减小,随轨压的增加先降低后增加,轨压140 MPa时达到最低为1.03%;多次喷射模式中,预主喷模式下主喷油量的一致性和主后喷射模式下后喷油量的一致性较差,主喷油量相对极差最大时为3.37%,后喷油量的相对极差最大时达到49.9%。高压油管非等长会显著降低多次喷射模式循环喷油量一致性,直接引起各缸喷油正时及实际喷射量差异,从而引起柴油机功率及转速波动,降低排放性能,因此在设计过程中应尽量避免。 展开更多
关键词 高压共轨系统 循环喷油量 压力波动 高压油管 非等长 一致性分析 AMESIM 柴油机
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多次喷射下喷油器结构参数对喷油量波动影响 被引量:1
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作者 杨津韬 张恒 +2 位作者 赵建辉 马尔可夫·弗拉基米尔 雷奥尼德·格列霍夫 《哈尔滨工程大学学报》 北大核心 2025年第2期276-282,共7页
针对柴油机在多次喷射情况下喷油量波动对工作性能的影响,本文研究了喷油量波动的机制及其关键影响因素。本文通过建立共轨喷油器AMESim仿真模型,利用喷油规律和压力波动实验数据完成了仿真模型的校核验证,开展了关键结构参数对主喷油... 针对柴油机在多次喷射情况下喷油量波动对工作性能的影响,本文研究了喷油量波动的机制及其关键影响因素。本文通过建立共轨喷油器AMESim仿真模型,利用喷油规律和压力波动实验数据完成了仿真模型的校核验证,开展了关键结构参数对主喷油量影响的理论研究。结果表明:高压油管长度和内径的变化是主喷油量波动的显著影响因素,且喷油量波动主要发生在预-主喷策略下的主喷阶段;针阀升程的增加会增大主喷油量,但其增幅随升程的增加而减小;喷孔直径的变化直接影响主喷油量的波动,但其对预喷引起的压力波动影响较小;OA和OZ孔直径的变化对预喷阶段的压力波动产生明显影响,进而影响预喷阶段的喷油量,并主要体现在喷油速率上升阶段。 展开更多
关键词 喷油量波动 压力波动 多次喷射 关键结构参数 高压共轨系统 动态喷射模型 AMESIM仿真 柴油机
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小功率非道路柴油机电控喷油系统控制策略 被引量:3
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作者 习志等 胡世纪 +1 位作者 马志豪 曾科 《内燃机与动力装置》 2025年第2期16-26,共11页
为开发具有完全自主知识产权并满足现行排放标准要求的柴油机电控系统,实现高压共轨柴油机控制系统的完全国产化,基于国产芯片开发并优化小功率非道路国四高压共轨柴油机电控喷油系统控制策略。燃油喷射模块依据发动机转速和内部需求转... 为开发具有完全自主知识产权并满足现行排放标准要求的柴油机电控系统,实现高压共轨柴油机控制系统的完全国产化,基于国产芯片开发并优化小功率非道路国四高压共轨柴油机电控喷油系统控制策略。燃油喷射模块依据发动机转速和内部需求转矩得到基本喷油量,并根据喷射控制器得到多次喷射的喷射组合、脉宽以及喷油正时;调速模块通过设置高、低怠速限值将发动机转速控制在目标怠速区间内,并采用主动阻尼控制策略抑制发动机转速波动;轨压控制模块采用前馈和双比例积分微分(proportional integral derivative,PID)闭环控制相结合的控制策略;将控制程序下载到自主开发的电子控制单元中,并在1台4缸高压共轨柴油机上进行台架试验。试验结果表明:设计的控制策略能够满足功率不超过37 kW的非道路用柴油机的控制需求;发动机在2.2 s内顺利起动,并从起动状态平稳运行至怠速状态;各工况下,发动机轨压和转速波动较小;外界负荷突变过程中,发动机转速能够在较短时间内恢复至目标转速并稳定;各污染物的比排放均满足非道路柴油机国四排放标准要求。 展开更多
关键词 高压共轨 喷油系统 控制策略 台架试验 PID闭环控制
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基于机器学习的高压共轨系统后喷油量预测模型与修正方法研究
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作者 韩宜龙 王伟 +1 位作者 卢相东 赵建辉 《内燃机》 2025年第4期40-47,共8页
为提升高压共轨系统多次喷射工况下后喷油量控制的精确性,以轨压、主喷脉宽、主-后喷射间隔三个影响后喷油量波动的关键参数,构建了基于核极限学习机(KELM)的后喷油量预测模型,并利用遗传算法(GA)对核函数参数与正则化系数进行了优化,... 为提升高压共轨系统多次喷射工况下后喷油量控制的精确性,以轨压、主喷脉宽、主-后喷射间隔三个影响后喷油量波动的关键参数,构建了基于核极限学习机(KELM)的后喷油量预测模型,并利用遗传算法(GA)对核函数参数与正则化系数进行了优化,依托高压共轨系统数字化仿真平台获得的数据对模型开展了训练与测试,比较分析了线性、多项式、高斯及小波等不同核函数对预测性能的影响,在此基础上,提出了基于GA-KELM预测输出的后喷油量修正方法。结果表明:以线性核或多项式核为基础的模型难以预测后喷油量的波动特征,而采用高斯核与小波核的模型均能较好拟合训练数据,但在测试集上高斯核表现更优,具备更好的泛化能力,其测试集MAPE与R2分别为1.34%与0.986;采用所提出的修正方法后,后喷油量最大波动由40.13%降至4.24%,显著提升了不同工况下后喷油量的稳定性。本文可为高压共轨系统多次喷射精确控制策略的研究提供借鉴。 展开更多
关键词 高压共轨系统 多次喷射 机器学习 预测模型 喷油量修正
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电控共轨喷油器油量修正策略研究与应用
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作者 王光明 赵建洲 +1 位作者 刘明 耿旭 《内燃机与配件》 2025年第19期13-16,共4页
由于电控喷油器在零件加工过程中存在公差,装配后不同喷油器的喷油量存在一定的偏差,通过提高加工精度来减小公差成本高、收益小,在此背景下喷油器油量修正应运而生。电控共轨喷油器油量修正策略,简称IQA(Injector Quantity Adjustment... 由于电控喷油器在零件加工过程中存在公差,装配后不同喷油器的喷油量存在一定的偏差,通过提高加工精度来减小公差成本高、收益小,在此背景下喷油器油量修正应运而生。电控共轨喷油器油量修正策略,简称IQA(Injector Quantity Adjustment)修正,是通过软件调整加电时间,修正单个电控共轨喷油器的喷油量,并通过软件策略覆盖到整个喷油脉谱范围,从而调节高压共轨系统中的单个喷油器的喷油量。本文首先介绍电控共轨燃油系统技术的发展过程、电控喷油器的工作原理和技术优势,之后分享电控共轨喷油器油量修正策略开发背景,分析电控共轨喷油器油量修正策略的原理,同时结合某款具体发动机的开发、标定和验证情况,阐述电控共轨喷油器油量修正的效果;并且详细描述在喷油器生产和发动机装配过程中,喷油器油量修正的实施方案;最后辩证地分析喷油器油量修正也存在一定的局限性,磨损和老化后无法实现闭环修正,并展望燃油系统其他修正策略的开发情况,为电控燃油喷射控制策略的开发与发展提供参考。 展开更多
关键词 喷油器 修正 策略
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油泵系统问题引发的发动机“飞车”故障研究
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作者 薛鹏 张利君 +3 位作者 丁晓辉 冯文文 徐东旭 姜仁玲 《内燃机与配件》 2025年第20期71-73,共3页
发动机就像人的心脏,它持续不停地向整车提供前进动力,使得整车能够顺利到达目的地。但是在运行过程中一旦发动机发生“飞车”故障,轻则发动机和整车损坏,重则车毁人亡,造成重大损失。本文针对电控系统中的油泵系统开展研究,分析造成发... 发动机就像人的心脏,它持续不停地向整车提供前进动力,使得整车能够顺利到达目的地。但是在运行过程中一旦发动机发生“飞车”故障,轻则发动机和整车损坏,重则车毁人亡,造成重大损失。本文针对电控系统中的油泵系统开展研究,分析造成发动机飞车问题的具体原因,总结设计经验,对于后续指导发动机的设计及故障的排查具有重大意义。 展开更多
关键词 发动机 电控共轨 油泵系统 飞车 故障
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高压共轨柴油机燃油系统负荷影响预测研究
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作者 汪福杰 《拖拉机与农用运输车》 2025年第6期51-53,共3页
柴油机燃油系统工作过程中的振动辐射噪音会对环保等方面带来不利的影响。以高压共轨柴油机为对象,在分析燃烧噪声传递函数的基础上,通过实验测试的手段开展了不同负荷下燃烧噪声评估分析。利用遗传算法识别机器噪音,对燃油供给策略的... 柴油机燃油系统工作过程中的振动辐射噪音会对环保等方面带来不利的影响。以高压共轨柴油机为对象,在分析燃烧噪声传递函数的基础上,通过实验测试的手段开展了不同负荷下燃烧噪声评估分析。利用遗传算法识别机器噪音,对燃油供给策略的噪音进行预测分析。燃油系统在标定值附近可以达到精确预测,喷油控制方式能实现精确预测,误差不会超过1.5%,能满足可靠性要求。该研究能够有效识别燃油系统噪声信号,为后续参数优化奠定基础。 展开更多
关键词 高压共轨柴油机 燃油系统 负荷特性 噪声传递
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