By Qiuxi Jiang
This is often the first actual e-book to present the community radar countermeasure method. It explains intimately the systematic inspiration of combining radar and radar countermeasures from the viewpoint of the knowledge acquisition of aim situation, the optimization of the reconnaissance and detection, the built-in assault of the signs and amenities, and technological and felony developments concerning the networked procedure. It achieves the mixing of the initiative and passivity, detection and jamming. The ebook explains how the process locates pursuits, completes target id, tracks pursuits and compiles the information.
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Additional resources for Network Radar Countermeasure Systems: Integrating Radar and Radar Countermeasures
20 The two- and three-dimensional power range of four receiving stations Coordinates of three receiving stations: x1 ¼ 0, y1 ¼ 50, z1 ¼ 0; x2 ¼ À50, y2 ¼ 0, z2 ¼ 0; x3 ¼ 50, y3 ¼ 0, z3 ¼ 0; Coordinates of four receiving stations: x1 ¼ 0, y1 ¼ 50, z1 ¼ 0; x2 ¼ À50, y2 ¼ 0, z2 ¼ 0; x3 ¼ 50, y3 ¼ 0, z3 ¼ 0; x4 ¼ 0, y4 ¼ À50, z4 ¼ 0; From the results of simulation, we can see that, in the passive working mode, the power range of the system is directly related to the number and deployment of 28 1 Introduction to Network Radar Countermeasure Systems receiving stations, but has nothing to do with transmitting stations.
This shows that, when the total transmitting power is certain, there is a price to be paid for increasing the two-dimensional power range. Now, let us compare the performance of the reconnaissance detection range of radar netting in the case of deployment No. 2. Assuming that radar netting consists of two mono-static radars and their position is the same as that in deployment No. 1, then the transmitting power of each mono-static radar is Pt ¼ 10 kW, Gt ¼ Gr ¼ 30 dB, and the other parameters are the same as those of the network radar countermeasure system.
4 Performance of Network Radar Countermeasure Systems 23 two-dimensional power range of networking radar three-dimensional power range of networking radar 100 80 60 100 40 80 Z(km) Y(km) 20 0 −20 60 40 20 −40 0 100 −60 100 50 −80 0 −100 −100 −80 −60 −40 −20 0 20 40 60 80 100 −50 −50 Y(km) −100 −100 50 0 X(km) X(km) Fig. 14 Two-dimensional and three-dimensional power range of radar netting Similarly, each receiving station of the system can receive the echo of all the signals emitted by the transmitting stations, resulting in an increase of the receiving signal power and its power range.
Network Radar Countermeasure Systems: Integrating Radar and Radar Countermeasures by Qiuxi Jiang