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Description: 质子交换膜燃料电池组工作时,产生大量热量,能否确保质子交换膜燃料电池的废热及时排出己成为其能否实用化的关键之一。直接采用温度传感器在质子交换膜燃料电池的尾气出曰处测得温度,利用灰色系统解释‘小样木”、“贫信息”不确定性问题的特点,建立顶测尾气温度的新型数学模型,对卜一时刻的出曰温度进行顶测,井根据顶测的数据对风扇功率进行顶调节,确保质子交换膜燃料电池工作在适宜的温度中。通过对实验数据的分析,此模型己达到较好的顶测精度,井且由于程序的简单,较容易在硬件上实现,具有较高的实用性。-proton exchange membrane fuel cell group work, produce a large amount of heat be able to ensure that the proton exchange membrane fuel cell waste heat emitted in a timely manner has become his ability to practical use one of the keys. Temperature sensors used directly in proton exchange membrane fuel cell exhaust out Says Agency measured temperature, Gray explained the use of 'wooden galley proof "," poor information "uncertainty characteristics, Top test to establish a new type of exhaust gas temperature mathematical model of a moment of the BU out Says Top temperature measurement Well according to the data measured top of the fan power for the top-conditioning, ensure proton exchange membrane fuel cells work in the appropriate temperature. Based on the analysis of expe
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Size: 2450348 |
Author: sg |
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Description: 质子交换膜燃料电池组工作时,产生大量热量,能否确保质子交换膜燃料电池的废热及时排出己成为其能否实用化的关键之一。直接采用温度传感器在质子交换膜燃料电池的尾气出曰处测得温度,利用灰色系统解释‘小样木”、“贫信息”不确定性问题的特点,建立顶测尾气温度的新型数学模型,对卜一时刻的出曰温度进行顶测,井根据顶测的数据对风扇功率进行顶调节,确保质子交换膜燃料电池工作在适宜的温度中。通过对实验数据的分析,此模型己达到较好的顶测精度,井且由于程序的简单,较容易在硬件上实现,具有较高的实用性。-proton exchange membrane fuel cell group work, produce a large amount of heat be able to ensure that the proton exchange membrane fuel cell waste heat emitted in a timely manner has become his ability to practical use one of the keys. Temperature sensors used directly in proton exchange membrane fuel cell exhaust out Says Agency measured temperature, Gray explained the use of 'wooden galley proof "," poor information "uncertainty characteristics, Top test to establish a new type of exhaust gas temperature mathematical model of a moment of the BU out Says Top temperature measurement Well according to the data measured top of the fan power for the top-conditioning, ensure proton exchange membrane fuel cells work in the appropriate temperature. Based on the analysis of expe
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Size: 2450432 |
Author: |
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Description: 燃料电池电堆的温度控制,采用预测控制算法实现-PEMFC Stack Temperature Control Study
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Size: 284672 |
Author: lidia |
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Description: 质子交换膜燃料电池系统的建模与仿真,采用Matlab中simulink进行模块搭建-Simulation of PEMFC
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Size: 6144 |
Author: 谢连斌 |
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Description: 有关燃料电池动态建模及仿真的,写得很详细,有借鉴意义。-The fuel cell dynamic modeling and simulation, and write it in detail, there is reference.
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Size: 4329472 |
Author: yanli |
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Description: 采用pscad/emtdc开发质子交换膜燃料电池的模型,可再生能源-pscad/emtec develop proton exchange membrane fuel cell model
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Size: 7168 |
Author: 胡为兵 |
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Description: PEMFC混合动力系统的DCDC变换器设计,包括建模和控制方法。-PEMFC hybrid system DCDC converter design, modeling and control methods.
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Size: 472064 |
Author: LQ |
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Description: dynamic simulation of PEMFC
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Size: 332800 |
Author: jihed |
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Description: an on-line predictive control based on least
squares support vector machine (LS-SVM) is proposed. In order
to carry out on-line learning, the training data threshold is set
through discussing the theory of LS-SVM and the character of
control system
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Size: 474112 |
Author: golalipour |
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Description: This paper presents a method to operate a grid
connected hybrid system. The hybrid system composed of a Photovoltaic
(PV) array and a Proton exchange membrane fuel cell
(PEMFC) is considered. The PV array normally uses a maximum
power point tracking (MPPT) technique to continuously deliver
the highest power to the load when variations in irradiation and
temperature occur, which make it become an uncontrollable
source. In coordination with PEMFC, the hybrid system output
power becomes controllable. Two operation modes, the unit-power
control (UPC) mode and the feeder-flow control (FFC) mode, can
be applied to the hybrid system. The coordination of two control
modes, the coordination of the PV array and the PEMFC in the
hybrid system, and the determination of reference parameters
are presented
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Size: 34816 |
Author: hari |
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Description: pemfc的仿真,用simulink仿的-pemfc simulation with simulink imitation
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Size: 13312 |
Author: caiyuandao |
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Description: 该模型实在simulink下建立简单的质子交换膜燃料电池模型,可以借鉴或者直接使用-fuel cell
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Size: 22528 |
Author: 马林 |
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Description: 500W的PEMFC的simulink模型-Simulink model for 500W PEMFC
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Size: 21504 |
Author: Qian |
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Description: 这是一个燃料电池数学模型仿真程序,在simulink中搭建的。-Fuel cell
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Size: 4329472 |
Author: 马玉超 |
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Description: 一个燃料电池的simulink模型,分享给大家下载使用(A simulink model of PEMFC)
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Size: 30720 |
Author: 梁家河知青
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Description: PEMFC氧气含量以及电流电话关系及控制(PEMFC oxygen content, current and telephone relationships and controls)
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Size: 7168 |
Author: 戈氏一族
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Description: 几个关于PEMFC的模型,效果不错,发电公司东风(Several models of PEMFC, the effect is good)
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Size: 757760 |
Author: 戈氏一族
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Description: PEMFC的simulink使用模型 包含电堆模型 氢气氧气供应系统模型,热传输模型,可进行仿真,参数可自行设置。(The simulink model of the PEMFC includes a model of a hydrogen reactor, an oxygen supply system model, and a heat transfer model that can be simulated and the parameters can be set.)
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Size: 25600 |
Author: 937646040@qq.com |
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Description: 质子交换膜燃料电池的simulink机理模型,绝对能用(The simulink model of PEMFC)
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Size: 24576 |
Author: Sunqint |
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Description: 燃料电池系统级仿真模型,包括电堆模型、阳极供氢系统模型、阴极供气系统模型、液冷系统模型、燃料电池控制系统模型。包括sofc以及pemfc(Fuel cell system level simulation model, including stack model, anode hydrogen supply system model, cathode gas supply system model, liquid cooling system model, fuel cell control system model. SOFC and PEMFC)
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Size: 72704 |
Author: Edwards Chen |
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