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EM.Terrano

110 bytes added, 04:19, 23 July 2018
/* Working with EM.Terrano's Simulation Data */
=== The Ray Tracing Solvers' Output Simulation Data ===
Both the SBR solver and the Polarimatrix solver perform the same type of simulation but in two different ways. The SBR solver discretizes the scene including all the buildings and terrain, shoots a large number of rays from the transmitters and collects the rays at the receivers. The Polarimatrix solver does the same thing using an existing polarimetric ray database that has been previously generated using EM.Terrano's Channel Analyzer. At the end of a ray tracing simulation, all the polarimetric rays emanating from the transmitter(s) or other sources that are received by the individual receivers are computed, collected, sorted and saved. From the ray data, the total electric field at the location of receivers as well as the received power are computed. The ray data include the field components of each ray, the ray's elevation and azimuth angles of departure and arrival (departure from the transmitter location and arrival at the receiver location), and time delay of the received ray with respect to the transmitter. If you specify the temperaturetemperatures, noise figure levels and transmission line losses in the definition of the receiver sets, the noise power level and signal-to-noise ratios (SNR) at each receiver are also calculated, and so are the E<sub>b</sub>/N<sub>0</sub> and the bit error rate (BER) for the selected digital modulation scheme.
=== Visualizing Field & Received Power Coverage Maps ===
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