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Goodwin, J. P.

Publications and source records attributed to Goodwin, J. P..

Usuda Deep Space Center support for ICE

The planning, implementation and operations that took place to enable the Usuda, Japan, Deep Space Center to support the International Cometary Explorer (ICE) mission are summarized. The results show that even on very short notification our two countries can provide mutual support to help ensure mission success. The data recovery at the Usuda Deep Space Center contributed significantly to providing the required continuity of the experimental data stream at the encounter of the Comet Giacobini-Zinner.

Goodwin, J. P.↗

Utilization of the Usuda Deep Space Center for the United States International Cometary Explorer (ICE)

The Usuda Deep Space Center, which supported the ICE mission by enhancing the telemetry capability, is described. An outline of the comet Giacobini-Zinner observation project is provided. Usuda performance with one receiver channel was comparable to, if not better than, that of the Goldstone 64-m antenna with the two channels combined. The Usuda beam waveguide system is analyzed and found to have many advantages over conventional waveguide systems. It is concluded that this experience with the Usuda beam waveguide will become an integral part of future DSN decision making processes.

Fanelli, N. A.↗

Networks consolidation program: Maintenance and Operations (M&O) staffing estimates

The Mark IV-A consolidate deep space and high elliptical Earth orbiter (HEEO) missions tracking and implements centralized control and monitoring at the deep space communications complexes (DSCC). One of the objectives of the network design is to reduce maintenance and operations (M&O) costs. To determine if the system design meets this objective an M&O staffing model for Goldstone was developed which was used to estimate the staffing levels required to support the Mark IV-A configuration. The study was performed for the Goldstone complex and the program office translated these estimates for the overseas complexes to derive the network estimates.

Goodwin, J. P.↗