Bandpass sampling receiver, and method for designing and reconstructing a filter thereof
US-9496899-B2 · Nov 15, 2016 · US
US9621206B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9621206-B2 |
| Application number | US-201514803225-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 20, 2015 |
| Priority date | Jul 24, 2014 |
| Publication date | Apr 11, 2017 |
| Grant date | Apr 11, 2017 |
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An RF receiver comprising: an RF signal processing unit for receiving an RF signal, wherein the RF signal processing unit comprises a dynamically reconfigurable RF filter for filtering the RF signal; an analog-to-digital converter for converting the filtered RF signal to a digital signal; and a digital signal processing unit for processing the digital signal to provide at least one channel; wherein the digital signal processing unit is adapted to adjust a respective transfer function of at least one said channel when the RF filter is reconfigured, to at least partially compensate a change in the transfer function of the RF filter.
Opening claim text (preview).
The invention claimed is: 1. An RF receiver comprising: an RF signal processing unit for receiving an RF signal, wherein the RF signal processing unit comprises a dynamically reconfigurable RF filter for filtering the RF signal; an analog to digital converter for converting the filtered RF signal to a digital signal; and a digital signal processing unit for processing the digital signal to provide at least one channel; wherein the digital signal processing unit is adapted to adjust a respective transfer function of at least one said channel when the RF filter is reconfigured, to at least partially compensate a change in the transfer function of the RF filter; and a control part adapted to provide: a first control signal for triggering reconfiguration of the RF filter; and a second control signal, synchronized with said first control signal, for controlling said digital signal processing unit to adjust said respective transfer function of said at least one channel in response to the reconfiguration of the RF filter. 2. An RF receiver according to claim 1 , wherein said digital signal processing unit is adapted to incrementally adjust the respective transfer function of said at least one channel to its previous value following reconfiguration of the RF filter. 3. An RF receiver according to claim 1 , wherein said digital signal processing unit is configured to adjust the modulus or phase of said transfer function. 4. An RF receiver according to claim 1 , wherein said digital signal processing unit is adapted to adjust said transfer function such that it depends on frequency across the bandwidth of said channel. 5. An RF receiver according to claim 1 , wherein said digital signal processing unit comprises at least one programmable digital filter for adjusting said respective transfer function of at least one said channel. 6. An RF receiver according to claim 1 , wherein said digital signal processing unit is adapted to adjust said transfer function in dependence on a frequency associated with said channel. 7. An RF receiver according to any of the preceding claims, wherein: said digital signal processing unit is configured to process the digital signal to provide a plurality of channels at the output of the receiver; and said digital signal processing unit is configured to adjust respective transfer functions of said channels to at least partially compensate a change in the transfer function of the RF filter when the RF filter is reconfigured. 8. An RF receiver according to claim 7 , wherein said digital signal processing unit comprises a plurality of digital filters for adjusting said respective transfer functions of said plurality of channels. 9. An RF receiver according to claim 7 , wherein said digital signal processing unit is configured to adjust the respective transfer function of at least one said channel by an amount which is constant across the bandwidth of said channel. 10. An RF receiver according to claim 7 , wherein said digital signal processing unit comprises a plurality of digital down-converters corresponding to said plurality of respective channels, wherein a multiplier of at least one said digital down-converter is operated to adjust the transfer function of said respective channel. 11. An RF receiver according to claim 1 , adapted to determine a frequency spectrum relating to the RF signal and to reconfigure the RF filter when a change in said spectrum is detected. 12. An RF receiver according to claim 1 , wherein the RF filter is reconfigurable between a plurality of discrete settings. 13. An RF receiver according to claim 12 , wherein the digital signal processing unit is adapted to adjust a respective transfer function of at least one said channel between a plurality of discrete settings, corresponding to the plurality of discrete settings of the RF filter or to transitions between said plurality of discrete settings of the RF filter. 14. RF receiver according to claim 1 , wherein said RF receiver is a direct RF digitization receiver. 15. The RF receiver of claim 1 : wherein said digital signal processing unit is adapted to incrementally adjust the respective transfer function of said at least one channel toward its previous value following reconfiguration of the RF filter. 16. An RF receiver comprising: an RF signal processing unit for receiving an RF signal, wherein the RF signal processing unit comprises a dynamically reconfigurable RF filter for filtering the RF signal; an analog to digital converter for converting the filtered RF signal to a digital signal; and a digital signal processing unit for processing the digital signal to provide at least one channel; wherein the digital signal processing unit is adapted to adjust a respective transfer function of at least one said channel when the RF filter is reconfigured, to at least partially compensate a change in the transfer function of the RF filter; and wherein said digital signal processing unit is adapted to incrementally adjust the respective transfer function of said at least one channel toward its previous value following reconfiguration of the RF filter. 17. The RF receiver of claim 16 , further comprising: a control part adapted to provide: a first control signal for triggering reconfiguration of the RF filter; and a second control signal, synchronized with said first control signal, for controlling said digital signal processing unit to adjust said respective transfer function of said at least one channel in response to the reconfiguration of the RF filter. 18. The RF receiver of claim 16 , wherein: said digital signal processing unit is configured to process the digital signal to provide a plurality of channels at the output of the receiver; and said digital signal processing unit is configured to adjust respective transfer functions of said channels to at least partially compensate a change in the transfer function of the RF filter when the RF filter is reconfigured. 19. The RF receiver of claim 16 : wherein the RF receiver is adapted to determine a frequency spectrum relating to the RF signal and to reconfigure the RF filter when a change in said spectrum is detected.
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