Engineering topics
Cwik, T.
Publications and source records attributed to Cwik, T..
Program Options to Explore Ocean Worlds
vast oceans inside most of the large Jovian and Saturnian icy moons, and Kuiper Belt Objects like Triton, Charon, and Pluto whose geologies are dominated by water and ammonia. Key pieces of the ocean-world science puzzle – which when completed may reveal whether life is widespread in the cosmos, why it exists where it does, and how it originates – are distributed among them. The eventual exploration of all these worlds will yield humanity’s total tangible knowledge about life in the universe, essentially forever. Thus, their exploration has existential significance for humanity’s self-regard, and indeed perhaps of our place in the natural scheme. The matter of planning how to pursue such a difficult and unprecedented exploration opportunity is therefore historic. The technical challenges are formidable, far harder than at Mars: missions to the Jovian and Saturnian ocean worlds are severely power-limited; trip times can be as much as a half decade and decade, respectively. And the science targets are global-scale oceans beneath kilometers of cryogenic ice. Reaching and exploring them would be a multi-generational undertaking, so again it is essential to plan and prepare. Today, we lack the instrumentation, subsystems, and remote operationalintelligence technologies needed to build and use exploration avatars as good as what we can envision needing.
Applications on high performance cluster computers: production of Mars panoramic mosaic images
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Integrated design and optimization of microelectronic devices
A genetic algorithm is used for design of infrared filters and in the understanding of the material structure of a resonant tunneling diode.
WIGLAF - a web interface generator and legacy application facade
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Toric offset three-reflector antenna for the advanced microwave limb sounder
An advanced Microwave Limb Sounder (MLS), now in concept development for a potential future mission, is a space-borne heterodyne instrument to measure pressure, temperature, and atmospheric constituents from thermal emission between 120 and 2400 GHz. Previous MLS instruments used pencil-beam antennas sized to resolve N 1 vertical scale height. Current atmospheric models need better horizontal resolution than orbit spacing provides. To meet these needs, a new antenna concept combines the wide scan range of the parabolic torus with unblocked offset Cassegrain optics. The resulting system is diffraction-limited in the vertical plane but extremely astigmatic, with beamwidths 0.13~2.5. Nadir axis symmetry ensures that this Beam AspectRatio (BAR) is invariant over f33' of azimuth. The antenna can feed either an array of receivers or multiplexed low-noise receivers whose FOVs are swept by a small scanning mirror. We describe 3 stages of antenna design: First, using a paraxial-optics method, we choose conic profiles given vertical resolution orbit geometry, then develop the surfaces by nadir axis rotation, matching axisymmetric feeds to the BAR. A ray-trace program validates the design and generates alignment and deformation tolerances. Finally, a physical optics analysis verifies reflector surface currents and radiation patterns.
Status of the nanoelectronic modeling tool (NEMO 1-D and 3-D) and its planned extension to spintronics
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Early experiences with the myricom X2000 switch on an SMP beowulf class cluster for unstructured adaptive meshing
We will explore our experiences and evaluate the performance impact this hardware introduces for our system.
The use of cluster computer systems for NASA/JPL applications
In this paper we outline the results of using three generations of cluster machines at JPL for a select set of applications drawn from a larger development effort.
Quantum dot modeling using NEMO 3-D
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An Integrated Design Environment for Millimeter-Wave Instruments
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Multi-Scale Meshes for Finite Element and Finite Volume Methods: Ative Device and Guided-Wave Modeling
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Developpment of a 3-D Nanoelectronic Modeling Tool - NEMO-3D
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Design on Computer - A Coming Age
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Integrated design and simulation for millimeter-wave antenna systems
In this paper the development and application of MODTool (Millimeter-wave Optics Design), a design tool that efficiently integrates existing millimeter-wave optics design software with a solid body modeler and thermal/structural analysis packages, will be discussed.
Parallel Software Design for AVIRIS Project
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