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基于氣體擴(kuò)散模型的天然氣泄漏場景下無人機(jī)自主飛行 控制算法研究
溫凱,,王偉 ,,謝宜峰 ,韓旭
1 中國石油大學(xué)(北京)城市油氣輸配技術(shù)北京市重點(diǎn)實(shí)驗(yàn)室,,北京 102249 2 深圳市大疆創(chuàng)新科技有限公司,深圳 518108
UAV autonomous flight control in natural gas leakage scenarios based on a gas diffusion model
WEN Kai , WANG Wei , XIE Yifeng, HAN Xu
1 Beijing Key Laboratory of Urban Oil and Gas Transmission and Distribution Technology, China University of Petroleum-Beijing, Beijing 102249, China 2 Shenzhen DJI Innovation Technology Co., Ltd., Shenzhen 518108, China

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摘要? 無人機(jī)沿著真實(shí)的氣體泄漏場中的等值面飛行,,飛行軌跡比較平滑,, 所描繪的輪廓比較完整地包含了設(shè)定等值面,解決了之前算法導(dǎo)致的 無人機(jī)斷飛,、倒飛,、偏離航線等問題,。加入誤差分析使得最初理想氣 體模型更接近于實(shí)際環(huán)境的濃度值,但不利于飛機(jī)飛行,,而再將誤差 模型轉(zhuǎn)化為隨坐標(biāo)點(diǎn)變化的理想氣體模型,,使得仿真過程既沒有影響 濃度計(jì)算的準(zhǔn)確性,也減小了飛行的壓力,,使得飛機(jī)能夠達(dá)到很好的 飛行效果,,實(shí)現(xiàn)設(shè)定的沿等濃度面飛行的測繪任務(wù)。
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關(guān)鍵詞 : 無人機(jī);氣體泄漏,;高斯煙羽模型,;路徑規(guī)劃;自主檢測
Abstract
As natural gas accounts for an increasing proportion of energy resources, there are more and more natural gas  
supporting facilities, so the demand for emergency equipment is also increasing. When a natural gas leakage accident occurs,  
the traditional detection methods not only have potential safety hazards, but the detection results are also used for post-mortem  
analysis, and there is no real-time feedback of on-site results. In response to the above important problems, drones were used to  
compensate for the poor safety and timeliness of traditional detection methods in this paper. Based on the Gaussian plume gas  
diffusion model, the real-time leakage site can be calculated by concentration distribution, and the autonomous flight algorithm  
was used to control the drone to fly along the on-site dangerous concentration surface to complete concentration surveying and  
mapping or other on-site surveying and mapping tasks. The research also analyzed the influence of each influencing factor on  
the gas concentration distribution in the model and compared the results. In addition, random errors were introduced to simulate  
the gas diffusion distribution under real conditions. In this research, the autonomous flight algorithm of UAVs puts forward a  
concept of "calculating while flying", which uses real-time calculation of the gas diffusion model to guide the flight of the UAVs.  
The gas distribution will be updated and the flight route will be optimized while the UAV is still in flight. The gas diffusion  
model part uses the concentration points measured in real time by drones to correct the error of initial results calculated by the  
Gaussian gas diffusion model. Finally, the UAV autonomous flight control proposed in this paper was verified in an experimental  
case. The UAV autonomous flight algorithm based on the gas diffusion model can realize the task of flying along the dangerous  
concentration surface, and complete the specified dangerous concentration surface surveying and mapping task, which is very  
significant for on-site accident guidance.


Key words: UAV, gas leakage, Gaussian model, path planning, autonomous detection
收稿日期: 2021-12-29 ????
PACS: ? ?
基金資助:國家重點(diǎn)研發(fā)計(jì)劃( 項(xiàng)目編號 2017YFC0805800) 資助
通訊作者: [email protected]
引用本文: ??
溫凱, 王偉, 謝宜峰, 韓旭. 基于氣體擴(kuò)散模型的天然氣泄漏場景下無人機(jī)自主飛行控制算法研究. 石油科學(xué)通報(bào), 2021, 04: 614-625 WEN Kai, WANG Wei, XIE Yifeng, HAN Xu. UAV autonomous flight control in natural gas leakage scenarios based on a gas diffusion model. Petroleum Science Bulletin, 2021, 04: 614-625. doi: 10.3969/j.issn.2096-1693.2021.04.043
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