Modeling and Investigating the Rotational Motion Effects of the High Altitude Platforms
Moawad Ibrahim Dessouky · 2005
An analysis to the high-altitude platforms communications system is done investigating the total handover due to both user mobility and platform positional instability. h expression for the number of handed calls is deduced which is a hnction of user density and distribution within the cell, platform angular shift due to rotation, cell geometry, and number of active calling users. The analysis of this number shows the serious effects of the rotational motion instability on the system performance.