蓄电池外文翻译
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1、 翻译部分: 英文原文 Research upon the High-capacity Lead-Acid BatteryCharge Model Kun Yang and GuangyaoOuYang Department ofPower Engineering Naval University ofEngineering Wuhan, Hubei Province, China Ping Zhang and Jianpingzhang Department of Power Engineering Naval University of Engineering Wuhan, Hubei
2、Province, China Abstract - The simulation of the submarine battery charge process is an important part of the submarine battery modeling, which is especially a firm foundation for the further optimization usage of the modules of the whole submarine power system. In this paper, the modeling strategy
3、 of the submarine battery charge process is discussed in detail firstly, in succession an integrated algorithm in which both the improved back propagation neural network method and the linear simulation technology are used is brought forward for the building of the battery charge model, finally the
4、outputs of the simulation experimentation show us a comparatively high precision. Index Terms-: Neural network; Linear simulation; Battery; Charge model. I. INTRODUCTION Battery is the only power source for the conventional submarine underwater propulsion, so the submarine has to move up to the snor
5、kel state to charge for the battery when the energy is exhausted, however the adoption of the snorkel sailing state throw the submarine into a fatal danger, because the snorkel state make the submarine easier spied by its enemy for its diversified increscent physical fields, such as the infrared rad
6、iation navigational wake etc., thus the research upon the submarine battery Charge process seems to be very important. Not much the same as the civilian battery, the submarine battery works under a very complex and execrable situations, this leads to that the charge initial states of the battery dif
7、fer in thousands ways, so the battery charge model should be built based on diversified initial state. On account of that the voltage of the battery can be affected by many factors, such as the SOC (SOC: StateOf Charge) battery polarization delamination former discharge rate etc., moreover the facto
8、rs above are mutual influential; it is hard to decouple for them. The conventional electrochemistry mechanism modelelectrochemistry experiential formula model and the equivalent circuit model considers that there must be some formula relations among the main factors of the battery 123, actually the
9、inner reaction of the battery is a very complex and highly nonlinear process, so the hypothesis seems not conform to the fact, so by farther is not an effective mathematic model for the battery. Further battery model aiming at engineering application calls for that the model not only can reflect the
10、 battery dynamic process well, but also be simple and convenient for use. In view of the electrochemistry mechanism complexity of the battery, an integrated algorithm in which both the improvedBP(BP: Back-Propagation) neural network method and the linear simulation technology are used is introduced
11、in the paper, basing on the deep analysis on the battery charge test curve data. Finally it is proved that the algorithm has avery famous practicality in the battery charge process simulation. II. THE BUILDING OF THE BATTERY MODEL A. The Analysis on the Battery Charge Process Characteristic Consider
12、ing the submarine batterys life limit and the high expenditure, it is unlikely to do large numbers of tests to obtainplatitudinous data for the simulation, so we have to think of ways to simulate for it only through the limited several battery charge test curves. Fig. 1 shows us several typical prac
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