The trade-offs between the number of antennas at Deep Space Network (DSN) Deep-Space Communications Complex and the fraction of continuous coverage provided to a set of hypothetical spacecraft, assuming random placement of the space craft passes during the day. The trade-offs are fairly robust with respect to the randomness assumption. A sample result is that a three-antenna complex provides an average of 82.6 percent utilization of facilities and coverage of nine spacecraft that each have 8-hour passes, whereas perfect phasing of the passes would yield 100 percent utilization and coverage. One key point is that sometimes fewer than three spacecraft are visible, so an antenna is idle, while at other times, there aren't enough antennas, and ...
Whenever one sets out to write a paper dealing with space exploration, the temptation is strong to t...
A method for determining optimal radio frequency channels for the Deep Space Network is described. C...
Descriptive and analytical information useful for the optimal design, specification, and performance...
There is a need to understand NASA s Deep Space Network (DSN) coverage gaps and any limitations to p...
This article compares the downlink performance in a gross average sense between space and ground net...
The probability of exceeding interference power levels and the duration of interference at the Deep ...
The Deep Space Network (DSN) that provides for the communications link between the deep space missio...
The DSN Array Simulator (wherein 'DSN' signifies NASA's Deep Space Network) is an updated version of...
As low Earth orbit (LEO) satellite communication systems are gaining increasing popularity, new theo...
Effect of frequency on communications capability, single antennas and arrays, and economic balance b...
Increased Deep Space Network (DPN) receiving capability far beyond that now available for Voyager is...
A flexible method of parametric, full life-cycle cost analysis has been combined with data on NASA's...
The problem of selecting the relative positions of antennas in a large radio array has many degrees ...
Spacecraft to be used in future missions supported by the Deep Space Network (DSN) will be much smal...
The Jet Propulsion Laboratory (JPL) owns and operates the Deep Space Network (DSN), a set of antenna...
Whenever one sets out to write a paper dealing with space exploration, the temptation is strong to t...
A method for determining optimal radio frequency channels for the Deep Space Network is described. C...
Descriptive and analytical information useful for the optimal design, specification, and performance...
There is a need to understand NASA s Deep Space Network (DSN) coverage gaps and any limitations to p...
This article compares the downlink performance in a gross average sense between space and ground net...
The probability of exceeding interference power levels and the duration of interference at the Deep ...
The Deep Space Network (DSN) that provides for the communications link between the deep space missio...
The DSN Array Simulator (wherein 'DSN' signifies NASA's Deep Space Network) is an updated version of...
As low Earth orbit (LEO) satellite communication systems are gaining increasing popularity, new theo...
Effect of frequency on communications capability, single antennas and arrays, and economic balance b...
Increased Deep Space Network (DPN) receiving capability far beyond that now available for Voyager is...
A flexible method of parametric, full life-cycle cost analysis has been combined with data on NASA's...
The problem of selecting the relative positions of antennas in a large radio array has many degrees ...
Spacecraft to be used in future missions supported by the Deep Space Network (DSN) will be much smal...
The Jet Propulsion Laboratory (JPL) owns and operates the Deep Space Network (DSN), a set of antenna...
Whenever one sets out to write a paper dealing with space exploration, the temptation is strong to t...
A method for determining optimal radio frequency channels for the Deep Space Network is described. C...
Descriptive and analytical information useful for the optimal design, specification, and performance...