More electric aircraft need for a high-speed optical data bus

1995 ◽  
Author(s):  
Gerald E. Amies ◽  
Dick Kotalik
2021 ◽  
Author(s):  
Galina E. Andreychikova ◽  
Mikhail Yu. Rumyantsev ◽  
Sergey I. Sigachev ◽  
Stanislav S. Tokarev

Energies ◽  
2020 ◽  
Vol 13 (11) ◽  
pp. 2696 ◽  
Author(s):  
Filip Kutt ◽  
Michał Michna ◽  
Grzegorz Kostro

This paper presents a prototype of high speed brushless synchronous generators (BSG) design for the application in autonomous electric power generation systems (e.g., airplane power grid). Commonly used salient pole field of the main generator part of BSG was replaced with a prototype non-salient pole field. The main objective of the research is an investigation into the advantages and disadvantages of a cylindrical field of the main generator part of BSG over the original salient pole field. The design process of the prototype generator is presented with a focus on the electromagnetic and mechanical finite element method (FEM) analysis. The measurements of prototype and commercial BSG were conducted for the nominal speed of 8 krpm. The advantages and disadvantages of the proposed solution were established based on measurements in load and no-load conditions.


Author(s):  
А.С. Ахманов ◽  
В.И. Соколов ◽  
В.Я. Панченко

Рассмотрены вопросы формирования оптического интерконнекта между СБИС на печатных платах с использованием фторсодержащих полимерных материалов. Обсуждаются различные аспекты технологии УФ-фотолитографии для создания полимерных волноводов. Приводятся результаты исследований, направленных на формирование высокоскоростной оптической шины передачи данных для микропроцессорных вычислительных систем (суперЭВМ) с использованием массивов полимерных волноводов на печатной плате. The study deals with the optical interconnect between VLSIs on a PCB with fluorine-containing polymers. Various aspects of the UF photolithography for making polymer waveguides are discussed. The results of the research aimed at making a highspeed optical data bus for SoC (supercomputers) with PCB polymer waveguide arrays.


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