Foundations of Space Dynamics. Ashish Tewari
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Название: Foundations of Space Dynamics

Автор: Ashish Tewari

Издательство: John Wiley & Sons Limited

Жанр: Техническая литература

Серия:

isbn: 9781119455325

isbn:

СКАЧАТЬ Julian day numbers with the epoch images can become very large, it is often convenient to use a later epoch for computing images. Epochs can be chosen with simpler images figures, such as 12:00 hr. UT on November 16, 1858, which has images. Then Julian dates can be converted to this epoch by replacing images with images. For example, the Julian date for 09:25 a.m. UT, June 25, 1975, converted to the epoch of Nov. 16, 1858, is images. For the consistency of data, all modern astronomical calculations are reduced to the epoch, images, by international agreement. This means that all the Julian dates must be converted to this epoch by replacing images with images.

      A medium‐Earth orbit (MEO) satellite has a period of about 12 hours. Examples of such spacecraft are the Global Positioning System (GPS) navigational satellites in circular orbits of altitudes about 20,000 km, and Molniya telecommunications satellites of Russia in highly eccentric elliptical orbits inclined at images relative to Earth's equatorial plane.

      The highest altitude of Earth satellites is for those in the geosynchronous equatorial orbit (GEO), which is a circular orbit in the equatorial plane of a period exactly matching a sidereal day, i.e., 23 hr., 56 min., 4.0904 s. This translates into an altitude of images km. Since the orbital frequency of a GEO satellite equals the rate of rotation of Earth on its axis, such a satellite returns to the same point above the equator after each sidereal day, thereby appearing to be stationary to an observer on the ground. Hence, a GEO satellite is used as a telecommunications relay platform for signals between any two ground stations directly in the line of sight of the satellite. Due to the high altitude of the GEO satellite, a broad coverage of signals is provided to the receiving stations on the ground, and is the basis of modern television broadcasts and mobile telephone communications.

      A small number of spacecraft are put into highly specialized lunar, interplanetary, and asteroid/cometary intercept orbits for the exploration of the solar system. Due to the typically large distances involved in their missions, which might include the time spent beyond the line‐of‐sight of Earth, such spacecraft must be fully autonomous in terms of their basic operations. The spacecraft which are sent to explore the outer planets (such as NASA's Voyager 1 and Voyager 2, Cassini, Galileo, and New Horizons) must also have an onboard electrical power source for charging their batteries, due to the unavailability of effective solar power (the sun is too dim at such large distances).

      1 Using the following exponential atmosphere model for Earth with the scale height, km, and base density, , calculate the atmospheric density at the altitude, km:Compare the result with that given in Table 1.1.

      2 Calculate the Julian date for 3:30 p.m. UT on October 15, 2007, referring to the epoch.

      3 What is the exact time difference between two events happening at 11:05 a.m. on July 28, 1993, and 8:31 p.m. on November 3, 2005, respectively?

      1 Tewari A 2006. Atmospheric and Space Flight Dynamics. Birkhäuser, Boston.

      2 Seidelmann KP (ed.) 1992. Explanatory Supplement to the Astronomical Almanac. University Science Books, Sausalito, CA.

      1 1 An epoch is a moment in time used as a reference point for a time‐varying astronomical quantity, such as the orbital elements specifying the shape and the plane of an orbit, the direction of the spin axis of a body, the coordinates of important celestial objects, etc.

      The vectors and matrices are denoted throughout this book in boldface, whereas scalar quantities are indicated in normal font. The elements of each vector are arranged in a column. The Euclidean norm (or magnitude) of a three‐dimensional vector, images, is denoted as follows:

      All the variables representing the motion of a spacecraft are changing with time, images. The overdots represent the time derivatives, e.g., images, images, СКАЧАТЬ