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In this paper a highly efficient solar concentrating mirror is presented.
In this paper, a preliminary study of H∞ control of the segmented primary mirror is presented.
A new equation to calculate tilt, tip and piston of segmented spherical mirror is presented.
Moreover, an equation used to calculate alignment parameters of the segmented parabolic mirror is presented following the same idea.
In the framework of the design of a High Spectral Resolution Lidar (HSRL), a prototype receiver telescope based on a massive parabolic mirror is presented in this work.
An optimally inclined box type solar cooker with single booster mirror is presented along with design and development of a novel parallelepiped shaped cooking vessel design for efficient cooking especially in winter conditions.
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Technical details of operation of the precision mechanics used for fine adjustment of the first mirror are presented.
In this paper, a series of results related to the decoupling of the 10m diameter Grantecan's primary mirror dynamics and its influence on the design of a controller for the mirror are presented.
Raman scattering from the off-resonance cavity and its reference (the same structure as the cavity without the top mirror) are presented in Figure 3 b.
Here, a new concept for designing and fabricating large parabolic dish mirrors is presented.
A design approach to achieve low-voltage micropower class AB CMOS cascode current mirrors is presented.
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