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Safran CORTEX CRT Quantum - Integrated Simplified Interconnection Panel; IF Carrier Tracking; Nd Order PLL

Safran CORTEX CRT Quantum
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COMMAND RANGING & TELEMETRY UNIT CORTEX
CRT QUANTUM USER'S MANUAL
Ref. DTU 100042
Is.Rev. 5.17
Date: Dec.
03, 2021Sept. 30, 2021
© Safran Data Systems
This document is the property of Safran Data Systems.
It cannot be duplicated or distributed without expressed written consent.
Page 45
3.3.3. IF Carrier Tracking
Once the carrier frequency is acquired as per previous section, tracking is launched using Phase-Locked Loop
technique.
Cortex CRT XL Quantum uses a 2nd order PLL for carrier tracking.
CRT eXplorer can be configured to 2nd order PLL or 3rd order PLL, using the PLL order registry parameter (see
chapter 4.2.8.2.6). This section describes the performances for tracking only, acquisition performance is not
depending on the loop order and is described in chapter 3.3.2.2.
3.3.3.1. 2
nd
Order PLL
This is the most commonly used PLL. However, for demanding applications, this loop has one drawback:
Expected C/N0 is sizing the loop bandwidth
Loop bandwidth is sizing the Doppler rate
Example: The C/N0 drives the choice of the Loop Bandwidth. If you want to track a signal with a low C/N0, you
have to choose the narrowest loop bandwidth in order to increase the ratio S/N.
With this hypothesis, reducing the bandwidth implies a lower tracking performance for the Doppler rate.
And finally, the Doppler generates a phase error bias in the loop of

󰇛󰇜

is a constant value (approx. 7.05) and it is relative to damping factor (0.7 in case of Cortex).
The total phase error is composed with  and which is the standard deviation.

with
Signal Noise ratio input (dB.Hz)
The PLL cannot manage a bias error superior to
, so the maximum admissible Doppler Rate cannot exceed:

󰇛󰇜

󰇡
󰇢
Example: With , and
, the maximum Doppler Rate is :
󰇛󰇜


󰇛󰇜



󰇡
󰇢



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