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基于汽车电子节气门模拟控制仿真探究
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作者 陈道齐 《世界有色金属》 2015年第9期76-78,共3页
随着社会的发展以及科技的创新,我国各类行业也进入到了信息化时代,特别是一些基础行业的技术突破。最典型的就是衣食住行四个行业,其中交通行业的发展主要体现在交通工具的改革和发展,而汽车就是目前社会常用的一种交通工具,随着人们... 随着社会的发展以及科技的创新,我国各类行业也进入到了信息化时代,特别是一些基础行业的技术突破。最典型的就是衣食住行四个行业,其中交通行业的发展主要体现在交通工具的改革和发展,而汽车就是目前社会常用的一种交通工具,随着人们对于其安全质量以及可靠性具有更高的追求之后,对于汽车的一系列零部件以及系统都要求具有更强的可控性和性能。而电子节气门是处于发动机区域的一个重要的零件,通过仿真模拟的方式研究汽车电子节气门的控制,将对汽车发动机的性能以及输出动力具有较大的提升作用。 展开更多
关键词 汽车电子节气门 模拟控制仿真 研究应用
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STABILIZATION EFFECT OF MULTI-MACHINE POWER SYSTEM BY USING ADJUSTA BLE SPEED GENERATOR
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作者 左敦定 桧山隆 +1 位作者 秋根孝宽 T.H.Ortmeyer 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2003年第1期53-59,共7页
This paper describes a stabilization effect after installating an adjustable speed generator (ASG) in a multi machine power system. A personal computer based ASG module has been de veloped for the simulations in... This paper describes a stabilization effect after installating an adjustable speed generator (ASG) in a multi machine power system. A personal computer based ASG module has been de veloped for the simulations in parallel with the analog power system simulator i n the Research Laboratory of the Kyushu Electric Power Co. The three phase ins t antaneous value based ASG model has been developed in the Matlab/Simulink envir onment for its detailed and real time simulations, which have been performed on a digital signal processor (DSP) board with AD and DA conversion interfaces inst alled in a personal computer (PC). Simulational results indicate the hig hly improved overall stability of the multi machine power system after installa ting the ASG. 展开更多
关键词 adjustable speed genera tor STABILIZATION analog power system simulator PC based ASG module fuzzy lo gic control
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Virtual Reality Simulation of Fuzzy-logic Control during Underwater Dynamic Positioning 被引量:4
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作者 Midhin Das Thekkedan Cheng Siong Chin Wai Lok Woo 《Journal of Marine Science and Application》 CSCD 2015年第1期14-24,共11页
In this paper, graphical-user-interface (GUI) software for simulation and fuzzy-logic control of a remotely operated vehicle (ROV) using MATLABTM GUI Designing Environment is proposed. The proposed ROV's GUI plat... In this paper, graphical-user-interface (GUI) software for simulation and fuzzy-logic control of a remotely operated vehicle (ROV) using MATLABTM GUI Designing Environment is proposed. The proposed ROV's GUI platform allows the controller such as fuzzy-logic control systems design to be compared with other controllers such as proportional-integral-derivative (PID) and sliding-mode controller (SMC) systematically and interactively. External disturbance such as sea current can he added to improve the modelling in actual underwater environment. The simulated results showed the position responses of the fuzzy-logic control exhibit reasonable performance under the sea current disturbance. 展开更多
关键词 graphical-user-interface (GUI) fuzzy-logic control remotely operated vehicle (ROV) proportional-integral-derivative (PID) sliding-mode controller (SMC) underwater dynamic positioning
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