MAXIMUM POWER TRACKING CONTROL DEVICE AND MAXIMUM POWER TRACKING CONTROL METHOD
PROBLEM TO BE SOLVED: To provide a maximum power tracking control device capable of achieving high-accuracy extremum seeking while making parameter measurement and calculation simple.SOLUTION: A maximum power tracking control device 1 for exerting a tracking control over a variable u so as to make o...
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Language | English Japanese |
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04.06.2015
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Abstract | PROBLEM TO BE SOLVED: To provide a maximum power tracking control device capable of achieving high-accuracy extremum seeking while making parameter measurement and calculation simple.SOLUTION: A maximum power tracking control device 1 for exerting a tracking control over a variable u so as to make output power y maximum for a control target 2 of an evaluation function y=f (u), includes: an HPF section 11 removing a DC component from the output power, and outputting a first signal; a LPF section 12 extracting a low-pass component from a second signal obtained by multiplying the first signal by a first perturbation signal, and outputting a third signal; an integrating section 13 integrating the third signal, and outputting a fourth signal; and a perturbation-signal switching section 15 outputting a first perturbation signal at constant amplitude if a discrimination function h ( ) set based only on the third signal is greater than a threshold h, and outputting a second perturbation signal having attenuated amplitude if the discrimination function h ( ) is equal to or smaller than the threshold h, a signal obtained by adding the first or second perturbation signal to the fourth signal being input to the control target 2.
【課題】パラメータ計測及び演算を簡素化しつつ高精度な極値探索が可能な最大電力追従制御装置を提供する。【解決手段】評価関数y=f(u)の制御対象2に対して出力電力yが最大となるよう変数uを追従制御させる最大電力追従制御装置1は、出力電力yの直流成分を除去した第1信号を出力するHPF部11と、第1信号に第1の摂動信号が乗算された第2信号の低域成分を抽出した第3信号を出力するLPF部12と、第3信号を積分した第4信号を出力する積分部13と、第3信号のみに基づいて設定された判別関数h( )が閾値hthよりも大きい場合、振幅一定の第1の摂動信号を出力し、判別関数h( )が閾値hth以下である場合、振幅が減衰する第2の摂動信号を出力する摂動信号切替部15とを備え、第4信号に第1の摂動信号または第2の摂動信号を加算した信号を制御対象2に入力する。【選択図】図4 |
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AbstractList | PROBLEM TO BE SOLVED: To provide a maximum power tracking control device capable of achieving high-accuracy extremum seeking while making parameter measurement and calculation simple.SOLUTION: A maximum power tracking control device 1 for exerting a tracking control over a variable u so as to make output power y maximum for a control target 2 of an evaluation function y=f (u), includes: an HPF section 11 removing a DC component from the output power, and outputting a first signal; a LPF section 12 extracting a low-pass component from a second signal obtained by multiplying the first signal by a first perturbation signal, and outputting a third signal; an integrating section 13 integrating the third signal, and outputting a fourth signal; and a perturbation-signal switching section 15 outputting a first perturbation signal at constant amplitude if a discrimination function h ( ) set based only on the third signal is greater than a threshold h, and outputting a second perturbation signal having attenuated amplitude if the discrimination function h ( ) is equal to or smaller than the threshold h, a signal obtained by adding the first or second perturbation signal to the fourth signal being input to the control target 2.
【課題】パラメータ計測及び演算を簡素化しつつ高精度な極値探索が可能な最大電力追従制御装置を提供する。【解決手段】評価関数y=f(u)の制御対象2に対して出力電力yが最大となるよう変数uを追従制御させる最大電力追従制御装置1は、出力電力yの直流成分を除去した第1信号を出力するHPF部11と、第1信号に第1の摂動信号が乗算された第2信号の低域成分を抽出した第3信号を出力するLPF部12と、第3信号を積分した第4信号を出力する積分部13と、第3信号のみに基づいて設定された判別関数h( )が閾値hthよりも大きい場合、振幅一定の第1の摂動信号を出力し、判別関数h( )が閾値hth以下である場合、振幅が減衰する第2の摂動信号を出力する摂動信号切替部15とを備え、第4信号に第1の摂動信号または第2の摂動信号を加算した信号を制御対象2に入力する。【選択図】図4 |
Author | YAMAMOTO SHIGERU URA DAISUKE |
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DocumentTitleAlternate | 最大電力追従制御装置及び最大電力追従制御方法 |
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Snippet | PROBLEM TO BE SOLVED: To provide a maximum power tracking control device capable of achieving high-accuracy extremum seeking while making parameter measurement... |
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SubjectTerms | CONTROLLING PHYSICS REGULATING SYSTEMS FOR REGULATING ELECTRIC OR MAGNETIC VARIABLES |
Title | MAXIMUM POWER TRACKING CONTROL DEVICE AND MAXIMUM POWER TRACKING CONTROL METHOD |
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