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Development of Re-usable C++ classes for Location Aware Management and Control Systems for Shipping Applications
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作者 Dhiren Dave Sanjay Nalbalwar Ashok Ghatol 《Journal of Marine Science and Application》 2012年第4期504-511,共8页
Location aware management and location based automation are fast upcoming technologies which are facilitated by availability of reliable, accurate, and cheap global positioning systems and location based services. Thi... Location aware management and location based automation are fast upcoming technologies which are facilitated by availability of reliable, accurate, and cheap global positioning systems and location based services. This paper discusses the development of C++ classes, which may be used for development of software for location aware management and control, specifically in merchant shipping, so as to provide improved safety, increased automation, prevention of pollution and reducing the work burden of the crew. The GPS is used in conjunction with the regionally accessible nested global shorelines (RANGS) dataset for this purpose. The design of two main C++ classes named CShorelines and CGPSInput have been discussed. A control system mandatory on all oil-tankers above 150 GRT (and few other vessels) called ODMCS has been made location aware using the novel software developed and the results obtained have been critically examined and presented. 展开更多
关键词 GPS location Aware control ODMCS PANGS
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Phase transformation at controlled locations in nanowires by in situ electron irradiation 被引量:2
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作者 Hongtao Zhang Wen Wang +2 位作者 Tao Xu Feng Xu Litao Sun 《Nano Research》 SCIE EI CAS CSCD 2020年第7期1912-1919,共8页
Solid state phase transtormations have drawn great attention because they can be effectively exploited to control the microstructure and property of materials.Understanding the physics of such phase transformation pro... Solid state phase transtormations have drawn great attention because they can be effectively exploited to control the microstructure and property of materials.Understanding the physics of such phase transformation processes is critical to designing materials with controlled structure and with desired properties.However,in traditional ex situ experiments,it is hard to achieve position controlled phase transformations or obtain desirable crystal phase on nanometer scale.Meanwhile the underlying mechanisms of the reaction processes are not fully understood due to the lack of direct and real-time observation.In this paper,we observe phase transformation from body-centered tetragonal PX PbTiO3 to monclinic TiO2(B)on the atomic scale by in situ electron iradiation during heat treatment in transmission electron microscope,at pre-defined locations on the sample.We demonstrate that by controlling the location of the incident electron beam,a porous TiO2(B)crystal structure can be formed at the desired area on the nanowire,which is dificult to achieve by traditional synthesis methods.Upon in situ heating,the Pb atoms in the crystal migrate out of the pristine nanowire through inelastic scattering under incident electrons while high temperature(>400℃)provides energy for the crytalization of TiO2(B)and the vlatlization of a substantial number of Pb atoms,which makes the resultingTiO2(B)nanowires to be porous.In contrast,at temperatures<400℃,the segregated Pb atoms form Pb particles and the TiO、nanowires remain in the amorphous state.This work not only provides in situ visualization of the phase transition from the PX-PbTiO3 to monoclinic TiO2(B),but also suggests a crystallography engineering strategy to obtain the desired crystal phase at controlled locations on the nanometer scale. 展开更多
关键词 phase transformation controlled locations in situ transmission electron microscopy
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