sensor n. 1.=sensory (名詞). 2.【自動化】感受器;傳感器;靈敏元件,控制儀板上顯示溫度、輻射量等變動的裝置。
be characteristic of 表現(xiàn)了…的特點; 具有...的特性, 為...所特有; 具有...特色的; 具有……的特色; 為…所特有,是…的特征
characteristic adj. 有特性的;表示…特性的,…特有的。 Japan's characteristic art 日本特有的藝術(shù)。 n. 特性,特征,性能,特色。 be characteristic of …所獨有的特征,有…的特色。 characteristic of logarithm 對數(shù)的首數(shù)。 adv. -cally
characteristic of 表示特性的; 不關(guān)心的; 獨有的,特有的; 對…淡漠; 特有的,表示...特性的; 特征是
Study on sensor characteristics of cfrp laminates 應(yīng)變傳感特性研究
Whether the characteristic of the sensor is good brings significant effects on the whole fcs . thus it is essential to do the sensor characteristic compensation to make up for the measure error 傳感器性能的優(yōu)劣對整個飛控系統(tǒng)產(chǎn)生很大的影響,因此有必要對傳感器性能進(jìn)行補償,彌補測量誤差。
Constant sensor characteristics , highest product quality , centralised processing and flexible logistics services have won over , among others , one of the leading manufacturers of industrial trucks 我們穩(wěn)定的傳感器特性最高的產(chǎn)品質(zhì)量統(tǒng)一化的處理以及靈活的后勤服務(wù),已經(jīng)贏得了頂級工業(yè)卡車生產(chǎn)商的信賴。
Therefore , aiming at the existent static and dynamic error of fcs sensor , the sensor characteristic compensation subunit is designed in the environment of labview using vi technique . the sensor signal disposal platform is also developed to realize the time domain measurement , frequency domain analysis , long - distance transfer and network release , etc . firstly , the static characteristic and nonlinear error of the sensor are analyzed 為此,本文針對飛控系統(tǒng)傳感器存在的靜態(tài)和動態(tài)誤差,利用虛擬儀器技術(shù)在labview環(huán)境下設(shè)計了傳感器性能補償環(huán)節(jié),開發(fā)了傳感器信號處理平臺,對信號進(jìn)行時域測量、頻譜分析、小波消噪、遠(yuǎn)程傳輸和網(wǎng)絡(luò)發(fā)布等。
The calibration and temperature compensation function are implemented through two neural networks modeling . the direct modeling technology enables an estimate of the nonlinear sensor characteristics , whereas the inverse modeling technology estimates the applied pressure . fourth , after comparing the pressure fusion performance with the original adapted neural network and slfm neural network , the simulated results show the idarbf neural 然后將idarbf神經(jīng)網(wǎng)絡(luò)應(yīng)用于壓阻式壓力傳感器,通過正向建模估計傳感器的非線性特性,反向建模估計融合壓力,并且與原自適應(yīng)rbf神經(jīng)網(wǎng)絡(luò)和slfm神經(jīng)網(wǎng)絡(luò)的實現(xiàn)方法作了壓力融合性能比較,仿真結(jié)果表明本文提出的idarbf神經(jīng)網(wǎng)絡(luò)具有更好的非線性校正能力。