太阳城集团app-澳门太阳城集团娱乐城注册送彩金28_澳门百家乐群代理_一速全讯网111565官方 (中国)·官方网站

【航宇大講堂】High-Fidelity Mathematical Modelling, Fast-Time Simulation and Artificial Intelligence Techniques for Flight Safety Protection in '9/11' Class Scenarios

作者:時間:2020-11-16瀏覽:1531供圖:審閱:來源:南京航空航天大學

字體:

報告題目:High-Fidelity Mathematical Modelling, Fast-Time Simulation and  Artificial Intelligence Techniques for Flight Safety Protection in '9/11' Class Scenarios

報告人:Dr. Ivan Y. BURDUN(AIXTREE S.A.S)

報告時間:2020年11月16日(周一)17:00-18:00

報告地點:騰訊視頻會議ID:658 5662 4196

主辦單位:航空學院、飛行器先進設計技術國防重點學科實驗室、國際合作處、科協

報告內容摘要:

9/11 class scenarios relate to abnormal flight situations characterized by inadequate, a priori catastrophe-prone aircraft control tactics (manual, automated, or automatic).

A knowledge-centered solution approach is presented for predicting and protecting aircraft flight safety under complex conditions with multiple or unknown risks - at and beyond operational constraints. The technique is based on the synergy of high-fidelity mathematical modeling of the pilot/automaton - aircraft - operating environment system dynamics, autonomous fast-time computer experimentation with the model  (M&S), artificial intelligence (AI), knowledge mining and mapping (M&M), and a 'bird's eye view' visual analytics. Its key concepts include: situation scenario, risk factor, multifactorial risk hypothesis, safety palette, fuzzy constraint, integral safety spectrum, situational tree, safety window, safety ‘topology’, ‘last chance for recovery’ point, etc.

 A large set of off-nominal flight paths - what-if variations of the baseline situation's flight path - are automatically generated in advance in fast-time AI-driven M&S experiments. For this purpose, AI 'silicon pilot' model and tree growth control algorithms are used to explore combined effects of related risk (and/or remedial) factors. Situational trees can accumulate extra-large synthetic flying experience - the system's 'alternative futures' built around baseline scenarios.

The technique's advantages are summarized,   however,there are many unsettled issues and prerequisites to be addressed in further studies

報告人簡介:

Dr. Ivan Y. BURDUN is the president of AIXTREE S.A.S., Aix-en-Provence, France, form 2013 to date.In 1982,he got PhD degree in Flight Operations awarded by the Higher Attestation Commission (VAC) under the Council of  Ministers of the USSR, Moscow, Russia.He was an Associate Professor (part-time) in the Department of Aero- and Hydro-Dynamics (AGD), School of Aerospace Engineering , Novosibirsk State Technical University ,and was Lead Scientist of Aircraft Aerodynamics and Flight Dynamics Research Division (NIO-1), Siberian Aeronautical. He has published 250+ technical reports, presentations, papers, lecture courses and databases in Russian and English.

He has 40+ years of cross-cultural multidisciplinary research and academic experience in flight  modeling, simulation (M&S) and artificial intelligence (AI) for safety in complex situations.

百家乐怎么完才能嬴| 百家乐套利| 易门县| 新梦想百家乐官网的玩法技巧和规则| 大发888平台| 大连百家乐官网食品| 大发娱乐| 钱隆百家乐大师| 百家乐官网游戏免费| 最好百家乐的玩法技巧和规则| 百家乐官网国际娱乐场| 威尼斯人娱乐城会员注册| 百家乐官网视频游戏网址| 大发888娱 太阳城| 百家乐怎么看单| 皇冠百家乐官网代理网址| 太阳城百家乐下载网址| 百家乐官网赌博彩| 娱乐城开户送钱| 大发888娱乐城送钱| 玩百家乐新太阳城| 澳门百家乐官网技巧| 利好国际| 大发888 迅雷快传| 东营区百家乐艺术团| 百家乐官网赌场代理合作| 邯郸市| 加多宝百家乐的玩法技巧和规则| 百家乐官网平一直压庄| 百家乐官网游戏辅助| 上海百家乐赌博| 红9百家乐官网的玩法技巧和规则| 兴义市| 足球竞猜规则| 黄金岛棋牌游戏下载| 大发888下载新澳博| 百家乐作| 博彩百家乐组选六六组| 百家乐官网游戏机图片| 百家乐庄闲客户端| 百家乐是否有规律|