The geographical coordinates and the altitude of departure airport of aircraft a
ID: 2992154 • Letter: T
Question
The geographical coordinates and the altitude of departure airport of aircraft are given in the table 1. The record of acceleration components in coordinates system of aircraft and angles of aircraft attitude in space are presented in the EXCEL file as the function of time. Aircraft geographical coordinates Aircraft altitude, velocity and direction of flight Plot of flight trajectory. The methodical guidance and the sequence of work accomplishing The immobile(earths) reference system(N-up-E) Reference system origin is in aircraft departure airport and at the level of see, the axis Ox direction is north(N), The axis Oy- vertically and up, The axis Oz is seat direction(E). To transform acceleration components, which is given accordingly an aircraft references system. To the earthen reference system, linked with the departure airport, A transformation matrix is To determine velocity components by numeral integrating of the acceleration components in the earthen reference system Initial conditions: All velocity components at start of aircraft are equal to zero. Finally velocity measure unit must be km/h To determine coordinates af aircraft by numeral integrating of the velocity components in the earthen reference system Initial conditions: Coordinates but y = h, where h is flight airport altitude under see level. Finally coordinates measure unit must be km. Aircraft geographical coordinates can be defined at anytime moment using Cartesian coordinates x, y, g in the immobile(earth) references system. The increment of geographical longitude and latitude can be defined by follow formulas, Geographical longitude increment Delta Phi - z/R + y Geographical latitude increment Delta Ohm - x/R + y Aircraft geographical coordinates at end point of flight Phi = Phi + Delta Phi Ohm - Ohm1 + Delta Ohm, Where Phi and Ohm is departure airport geographical coordinates, R = 6371km is Earth radius Altitude of a flight at end point H = R( ) Where To defined departure city and its position at final time momentExplanation / Answer
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