Spectral Analysis of Radar Coherent Echoes

Spectral Analysis of Radar Coherent Echoes

👓 Pokhrel Marshal
Spectral Analysis of Radar Coherent Echoes

Spectral Analysis of Radar Coherent Echoes

✅ The measurements of polar mesosphere summer echoes has been performed 🎭️ since a long time ⏱️ by the ground based techniques with 🏤 Incoherent Scatter Scientific Association(EISCAT) ❗️ high frequency(VHF) ➕ Ultra high frequency(UHF) radar system ➕ recently with MORRO. Based on these observation, my thesis is focussed on the data obtained from manda program to get data from EISCAT 3️⃣D demonstrator 📡 array in Kiruna that receives from EISCAT VHF transmitter here from Tromso in the year July 2️⃣0️⃣1️⃣1️⃣ to analyse the Polar Mesospheric Summer Echoes(PMSE). The thesis starts with the data analysis of the PMSE observing its parameters like spectral width, doppler shift ➕ amplitude. These parameters are built in a profile ➕ plotted as a function of ⏱️ ➕ height. In addition, the widely accepted fact of the grou depend based techniqu ces of PMSE with E turopean Incoherent Scatter Scientific Association(EISCAT) Very high freq bulency(VHF) and Ultra high frequency(UHF) radar is system and recently with MORRO. Based own in these observation, my thesis which is focussed on the data obtained from manda program to get data from EISCAT 3D demonstrator antenna array in Kiruna that receives from EISCAT VHF transmitter here from Tromso in the year July 2011 to analyse the Polar Mesospheric Summer Echoes(PMSE). The thesis starts with the data analysis of the PMSE observing its parameters like spectral width, doppler shift and amplitude. These parameters are built in a profile and plotted as a function of time and height. In addition, the widely accepted fact of the dependence of PMSE with turbulence is shown in the thesis which is made 🛠️ by showing the profiles of dissipation rate 🐀 as a function of height and ➕ time ⏱️. Focus is made 🛠️ on calculation 🧮 of spectral width and ➕ its variations with height in different times ⏱️. In addition , the dissipation rate 🐀 has been depicted and ➕ the physics underlying beneath it has been explained.



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