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【學(xué)術(shù)報(bào)告】研究生靈犀學(xué)術(shù)殿堂第393期之Naser El-Sheimy院士報(bào)告會(huì)通知

發(fā)布時(shí)間:2018年12月12日 來(lái)源:黨委研究生工作部 點(diǎn)擊數(shù):

全校師生:

我校定于2018年12月17日舉辦研究生靈犀學(xué)術(shù)殿堂——Naser El-Sheimy報(bào)告會(huì),現(xiàn)將有關(guān)事項(xiàng)通知如下:

1.報(bào)告會(huì)簡(jiǎn)介

報(bào)告人:Naser El-Sheimy院士

時(shí)間:2018年12月17日(星期一)下午3:00(開(kāi)始時(shí)間)

地點(diǎn):長(zhǎng)安校區(qū)自動(dòng)化學(xué)院樓報(bào)告廳

主題:Navigation and Mapping with Dollars-Level Inertial Sensors(消費(fèi)級(jí)慣性傳感器的導(dǎo)航與測(cè)圖)

內(nèi)容簡(jiǎn)介:

There are three ‘pillars’ that define the performance or usefulness of a navigation technologies – cost, accuracy, and continuity. Navigation is a field that has been fascinating humankind for thousands of years and these pillars have been evolving with new technological advancements. The current market in positioning and navigation is clearly dominated by GNSS. Besides being globally available, it meets two important pillars: accuracy and cost by providing the whole range of navigation accuracies at very low cost.

At this point in the development of navigation technology, the need for alternative positioning systems only arises because GNSS does meet the continuity pillar as it does not work in all environments. Needless to say, that cost and space constraints are currently driving manufacturers of cars, portable devices (e.g. smartphones), and autonomous systems (e.g. self-driving. Drones, cars and agriculture machine systems) systems to investigate and develop next generation of low cost and small size navigation systems to meet the fast-growing location services market demands. Advances in inertial navigation and more specifically Micro-Electro-Mechanical Systems (MEMS) technology have shown promising light towards the development of such systems. These chips are small, lightweight, consumes very little power, and extremely reliable. It has therefore found a wide spectrum of applications in the automotive and other industrial applications. MEMS technology, therefore, can be used to develop next generation navigation systems that are few dollars-level, small, and consume low power (microwatt). However, due to the lightweight and fabrication process, MEMS sensors have large bias instability and noise, which consequently affect the obtained accuracy from MEMS-based IMUs. This presentation will provide a state of the art and future trends of few dollars-level MEMS based navigation technology: possibilities, limitations and various design approaches. Some of the current developed and possible future system

2.歡迎各學(xué)院師生前來(lái)聽(tīng)報(bào)告。報(bào)告會(huì)期間請(qǐng)關(guān)閉手機(jī)或?qū)⑹謾C(jī)調(diào)至靜音模式。

黨委研究生工作部

自動(dòng)化學(xué)院

2018年12月12日

報(bào)告人簡(jiǎn)介

Naser El-Sheimy PictureDr. Naser El-Sheimy is the fellow of Canadian Academy of Engineering. He is Professor and former Head of the Department of Geomatics Engineering, the University of Calgary. He is the fellow of the US Institute of Navigation (ION). He holds a Tier-I Canada Research Chair (CRC) in Geomatics Multi-sensor Systems. He is also the founder and CEO of Profound Positioning Inc. His research expertise includes Geomatics multi-sensor systems, GPS/INS integration, and mobile mapping systems.

Dr. El-Sheimy published two books and over 450 papers in academic journals, conference and workshop proceedings, in which he has received over 30 national and international paper awards. He supervised and graduated over 60 Masters and PhD students. He is the recipient of many national and international awards including the ASTech “Leadership in Alberta Technology” Award the Association of Professional Engineers, Geologists, and Geophysicists of Alberta (APEGGA) Educational Excellence Award.

Dr. El-Sheimy was the president ofCommission I on "Sensors and Platforms" of the International Society for Photogrammetry and Remote Sensing (ISPRS) from2008 - 2012. He organized and participated in organizing many national and international conferences and chaired many conferences such as the USA Institute of Navigation Global Navigation Satellite Systems (GNSS). Dr. El-Sheimy is currently a member of the Editorial Board of Journal ofSurvey Review, MDPI Sensors, Journal of Applied Geodesy, and Coordinates.

Dr. Naser El-Sheimy為加拿大工程院院士,卡爾加里大學(xué)地球空間信息工程系教授,美國(guó)導(dǎo)航協(xié)會(huì)fellow,移動(dòng)多傳感器系統(tǒng)加拿大首席科學(xué)家,Profound Positioning公司創(chuàng)始人兼主席。研究領(lǐng)域包括空間信息多傳感器系統(tǒng),GPS/慣導(dǎo)組合導(dǎo)航系統(tǒng),移動(dòng)測(cè)繪系統(tǒng)等。

El-Sheimy教授發(fā)表了兩本著作和450多篇論文,指導(dǎo)超過(guò)60個(gè)碩士和博士,獲得30多次加拿大和國(guó)際獎(jiǎng)項(xiàng),包括ASTech “Leadership in Alberta Technology”和加拿大APEGGA頒發(fā)的教育卓越獎(jiǎng)等。

2008-2012年擔(dān)任國(guó)際攝影測(cè)量與遙感學(xué)會(huì)傳感器與平臺(tái)委員會(huì)主席,組織多次國(guó)際會(huì)議并擔(dān)任主席,包括USA ION各大會(huì)議。目前為Survey Review, MDPI Sensors, Journal of Applied Geodesy, and Coordinates等期刊編委。