最大功率
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光伏发电LED照明的最大功率跟踪及控制技术研究
Solar Photovoltaic Maximum Power Tracking and LED Lighting Control Technology Research
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直流n端口网络的最大功率传输问题
On the maximum power transfer problem of DC N-port network
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一种n端口网络最大功率传输问题的研究
A Study on the Question of Maximum Power Transfer for a N-Ports Network
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基于DSP的新型太阳能阵列最大功率点跟踪方法
Novel Tracking Method of Maximum Power Point for Solar Arrays Based on DSP
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n端对网络中的最大功率传输
Maximum Power Transfer in n-Ports
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通过Matlab仿真,结果表明控制器能够准确追踪最大功率点。
Matlab Simulation results show this controller can exactly track the maximum power point .
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单神经元在PV最大功率跟踪控制中的应用
Single Neuron and Its Application in Max Power Point Trace Control of PV
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三相SVPWM整流器在风能最大功率点追踪中应用
Three-phase SVPWM rectifier and its application in maximum wind power point tracking
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在MATLAB中建立光伏电池的仿真模型和光伏最大功率点跟踪模型并进行具体仿真分析。
Created the photovoltaic cells simulation model and the photovoltaic maximum power point tracking model in MATLAB , and then carried out the simulation and analysis .
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在此基础上,对风力发电系统的最大功率跟踪(MPPT)控制技术进行了深入的分析。
The methods of maximum power point tracking ( MPPT ) are studied .
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通过比较各种最大功率点跟踪(MPPT)算法,采用了扰动观测法作为最大功率点跟踪算法。
By comparing the various maximum power point tracking ( MPPT ) algorithms .
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考虑到太阳能的波动性和随机性对太阳电池阵列的影响,该模型具有最大功率点跟踪(MPPT)功能。
Considering the solar fluctuation and randomness , the model possesses the MPPT function .
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对比实验验证了变步长Newton二次插值估算光伏电池最大功率点方法的可行性和和某些优越性。
Comparative experiments verify the feasibility and superiority of the variable stepsize Newton quadratic interpolation to estimate the Photovoltaic Maximum Power Point .
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这些方法在温度和光照量缓慢变化条件下能够实现MPPT,实现最大功率输出。
These algorithms can achieve MPPT under slowly varying conditions of temperature and the amount of light .
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给出了光伏电池输出电流、电压的检测电路、信号调理电路;用于最大功率点跟踪的DC-DC转换电路;
Sampling and regulating circuits of the photovoltaic array output current and voltage , DC-DC conversion circuit with MPPT are designed .
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分别以乙酸钠和葡萄糖为底物进行发电,得到最大功率密度分别为145.56mW/m~2和192.04mW/m~2,COD的去除率分别为99%和87%。
Using acetate and glucose as substrates , the maximum power density of 145.56mW / m ~ 2 and 192.04 mW / m ~ 2 were observed respectively ;
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基于FSVM光伏系统最大功率跟踪算法及仿真研究
The algorithm and simulation research of MPPT using FSVM for PV system
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最大功率密度输出时Atkinson热机的效率
Efficiency of an Atkinson Engine at Maximum Power Density
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本文在结合传统优秀算法的基础上,提出了一种新MPPT算法,解决了最大功率点附近震荡的问题。
Combining with traditional excellent algorithms , the thesis proposes a new MPPT algorithm to solve the problem of turbulence .
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最大功率点跟踪(MPPT)是光伏系统中经常遇见的问题。
Maximum Power Point Tracking ( MPPT ) is one of the most important and well known problems of all photovoltaic systems .
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刚果红脱色速率随着阳极面积的增大而加快,而MFC最大功率密度却呈现出一个先升高后降低的变化趋势。
The Congo red decolorization increased with the anode surface area increased . However , the power density of the MFC increased firstly and then decreased .
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最大功率跟踪(MPPT)策略是提高风电系统功率转换效率的重要方法。
The sticking point of improving power conversion efficiency of the wind power system is the maximum power tracking ( MPPT ) strategy .
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基于固定电压法的太阳能电池MPPT控制芯片固定电压法结合扰动观察法在光伏发电最大功率点跟踪控制中应用
A Photovoltaic System with Voltage-Based Maximum Power Point Tracking ; MPPT control of photovoltaic generation system combining constant voltage method with perturb-observe method
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系统采用非线性解耦控制策略及最大功率寻优、空间矢量PWM控制,进行电流跟踪,可调节电网功率因数,且电压适应范围宽。
The nonlinear decoupled control , MPPT technology , space vector PWM control , current tracking method are adopted in system , it can adjust power factor on grid , and have wide voltager .
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同时在分析现有最大功率跟踪(MPPT)方法的基础上,对现有方法进行了改进,提出了一种新型PWM扰动法的最大功率跟踪方法。
Improve the existing method , proposed a new type of PWM maximum power tracking method based on the analysis of current maximum power point tracking ( MPPT ) method .
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本文主要研究两方面内容,一是直驱风力发电系统的模拟仿真,二是最大功率跟踪方法(MPPT)。
This paper studies two aspects , one is direct-drive wind power system simulation , the other is the maximum power point tracking ( MPPT ) .
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太阳能电池板的最大功率点跟踪(MPPT)控制和光伏并网逆变控制是光伏并网发电系统的两大核心部分。
Solar array maximum power point tracking ( MPPT ) control and photovoltaic grid connected inverter control are the two core part of PV grid connected system .
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实验样机实现连续工作10h的稳定运行,输出稳定在系统最大功率点,并于14:00:00左右达到全天峰值。
The experimental system was operated continuously for 10 hours at the maximum power point with the peak value at 14:00 pm .
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前级DC-DC转换器结合跟踪最大功率方法实现了光伏系统始终保持在最大功率输出,而且可以使输出的直流电压维持在需要的值。
The DC-DC converter combined with the maximum power tracking of PV systems remains at the maximum power of the array , and keep DC voltage output at a desired value .
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采用了变步长电导增量法的最大功率点跟踪控制算法,实现了不同温度和光照强度条件下最大功率点的准确快速跟踪,并通过MATLAB进行了仿真验证。
The maximum power point tracking control algorithm adopts incremental conductance of variable step size method , to achieve accurate and fast tracking of the maximum power point under different temperature and different light intensity conditions , and test it through MATLAB simulation .