传感技术学报
傳感技術學報
전감기술학보
Journal of Transduction Technology
2014年
7期
886-892
,共7页
爆炸超压场%传感器优化布局%遗传算法%走时层析%分区域多尺度
爆炸超壓場%傳感器優化佈跼%遺傳算法%走時層析%分區域多呎度
폭작초압장%전감기우화포국%유전산법%주시층석%분구역다척도
explosion overpressure field%optimal sensor placement%Genetic Algorithms%travel time tomography%Subregional multi-scale
研究目的是提出一种合理的传感器布局方案,使得利用最少数目的传感器重建出最高精度的爆炸超压场。采用走时层析重建的方法重建爆炸后的超压场,从超压场重建的角度提出了4个指导传感器布局的指标。首先根据爆炸冲击波传输规律建立分区域多尺度网格模型,其次采用遗传算法进行全局搜索,选取满足这4个指标的传感器最优布局方案,最后利用MATLAB进行仿真实验,并对不同传感器布局方式下这4个指标的变化规律及重建精度进行分析和讨论。实验证明,采用本文的传感器布局方案可以在满足重建精度的前提下最大程度地减少传感器数目,进而为实际爆炸试验节省费用。
研究目的是提齣一種閤理的傳感器佈跼方案,使得利用最少數目的傳感器重建齣最高精度的爆炸超壓場。採用走時層析重建的方法重建爆炸後的超壓場,從超壓場重建的角度提齣瞭4箇指導傳感器佈跼的指標。首先根據爆炸遲擊波傳輸規律建立分區域多呎度網格模型,其次採用遺傳算法進行全跼搜索,選取滿足這4箇指標的傳感器最優佈跼方案,最後利用MATLAB進行倣真實驗,併對不同傳感器佈跼方式下這4箇指標的變化規律及重建精度進行分析和討論。實驗證明,採用本文的傳感器佈跼方案可以在滿足重建精度的前提下最大程度地減少傳感器數目,進而為實際爆炸試驗節省費用。
연구목적시제출일충합리적전감기포국방안,사득이용최소수목적전감기중건출최고정도적폭작초압장。채용주시층석중건적방법중건폭작후적초압장,종초압장중건적각도제출료4개지도전감기포국적지표。수선근거폭작충격파전수규률건립분구역다척도망격모형,기차채용유전산법진행전국수색,선취만족저4개지표적전감기최우포국방안,최후이용MATLAB진행방진실험,병대불동전감기포국방식하저4개지표적변화규률급중건정도진행분석화토론。실험증명,채용본문적전감기포국방안가이재만족중건정도적전제하최대정도지감소전감기수목,진이위실제폭작시험절성비용。
The chief aim of the study is to propose a reasonable sensor placement method in order to reconstruct explosion overpressure field at the highest precision by a minimum number of sensors. Tomographic methods is adopted to reconstruct overpressure field of shock wave induced by explosion. The article put forward four measurement indexes for sensor deployment from the aspect of the reconstruction of explosion overpressure field. First, a multi-scale reconstruction model for explosion field in subregions was established according to the propagation law of shock wave. Then,the genetic algorithm was adopted to conduct global search and optimal sensor layout methods which satisfies the four requirements were selected. Finally, the paper analyzed the variation and precision of these four indexes in different sensor placements according to the MATLAB simulation experiments. Results indicated that the sensor placement method proposed by the paper can reach high reconstruction accuracy with the utmost reduction of the number of sensors which will guide real explosion experiments to a cost-effective way.