TL;DR: It is concluded that the planner array will provide good beam forming and beam shaping techniques and it is possible to implement and construct a smart DSP processor which will choose the appropriate beam according to the target platform and detection scenario for the new technology in addition to save time and cost.
Abstract: In this paper a comparison study is presented in order to evaluate the Simultaneous Multi — Beams radar under different radar cross section and different transmitting frequencies in order to evaluate the new radar performance under such complex environment. The results show that increasing the transmitting frequency will decrease the radar coverage and increasing the radar cross section will increase the radar coverage. Under such conditions the Simultaneous Multi — Beams radar offers good maneuverability and performance because it will choose the best type of beam according to the radar type, radar cross section, target height and frequency diversity. Also it is concluded that the planner array will provide good beam forming and beam shaping techniques and it is possible to implement and construct a smart DSP processor which will choose the appropriate beam according to the target plat form and detection scenario for the new technology in addition to save time and cost.
TL;DR: This work simulates the radar monitor and a number of flying targets and their appearance on the simulated monitor and builds a system called Simulated Radar Monitor using hierarchical object oriented timed Colored Petri Nets (SRMCPN).
Abstract: This work simulates the radar monitor and a number• of flying targets and their appearance on the simulated monitor. The targets are built using object oriented idea, thus a class is being built for the targets so that each target is made as an object which belong to the same class [11]. A system called Simulated Radar Monitor using hierarchical object oriented timed Colored Petri Nets (SRMCPN) is built. This is a new development for simulating a concurrent overlaid radar monitor which is capable to detect and track multi different targets at the same time improving radar system performance and saving time and cost. This system is implemented under windows environment using Borland C++ programming language.