as a sensor, fbg can be immune from light source disturbance and system loss by transforming sensing information into its reflecting wavelength shift 作為傳感元件,光纖光柵將被感測(cè)信息轉(zhuǎn)化為其反射波長(zhǎng)的移動(dòng),即波長(zhǎng)編碼,因而不受光源功率波動(dòng)和系統(tǒng)損耗的影響。
as a sensor, fbg can be immune from light source disturbance and system loss by transforming sensing information into its reflecting wavelength shift, that is wavelength coding 作為傳感元件,光纖光柵將被測(cè)信息轉(zhuǎn)化為其反射波長(zhǎng)的移動(dòng),即波長(zhǎng)編碼,因而不受光源功率波動(dòng)和系統(tǒng)損耗的影響。
fbg can be immune from light source disturbance and system loss by transforming sensing information into its reflecting wavelength shift, which has the characteristic of wavelength coding 由于它能將被感測(cè)信息轉(zhuǎn)化為其反射波長(zhǎng)的偏移,即具有波長(zhǎng)編碼的特性,因而不受光源功率波動(dòng)和系統(tǒng)損耗的影響。
besides, this method can satisfy the break-even requirement and provide appropriate economical signals to transactions, which can promote the rational distribution of power demands to reduce total system losses 另外,這種網(wǎng)損分?jǐn)偡椒鼙WC收支完全平衡,并且能夠向各交易提供適當(dāng)?shù)慕?jīng)濟(jì)激勵(lì)信號(hào),促進(jìn)電力負(fù)荷的合理分布,從而降低系統(tǒng)的總網(wǎng)損。
in this paper, the operation process has been discussed in detail . the optimization of the system parameters from the viewpoint of system losses has been done . the simulation, design considerations, and experimental results are included 本文涉及了對(duì)該逆變器工作過程的詳細(xì)分析,以及從系統(tǒng)損耗角度出發(fā)的系統(tǒng)參數(shù)優(yōu)化設(shè)計(jì),給出了對(duì)該逆變器的仿真結(jié)果,以及設(shè)計(jì)上的一些考慮。