US 12,137,020 B2
Wireless telecommunication base station and process for high-mobility scenarios
Vincenzo Icolari, Castel San Pietro Terme (IT); Massimo Notargiacomo, Castel San Pietro Terme (IT); Rodney Bryant, Castel San Pietro Terme (IT); and Stephen Turner, Castel San Pietro Terme (IT)
Assigned to TEKO TELECOM S.r.l., Castel San Pietro Terme (IT)
Filed by TEKO TELECOM S.r.l., Castel San Pietro Terme (IT)
Filed on Jun. 14, 2023, as Appl. No. 18/334,894.
Application 18/334,894 is a division of application No. 17/429,273, granted, now 11,805,000, previously published as PCT/IB2020/051629, filed on Feb. 26, 2020.
Claims priority of application No. 102019000002785 (IT), filed on Feb. 26, 2019.
Prior Publication US 2023/0327937 A1, Oct. 12, 2023
This patent is subject to a terminal disclaimer.
Int. Cl. H04L 27/26 (2006.01); H04L 1/20 (2006.01); H04W 56/00 (2009.01); H04B 17/336 (2015.01)
CPC H04L 27/2657 (2013.01) [H04L 1/20 (2013.01); H04W 56/0035 (2013.01); H04B 17/336 (2015.01)] 8 Claims
OG exemplary drawing
 
1. A wireless telecommunications base station for high-mobility scenarios, the wireless telecommunications base station comprising:
a coordinator module configured for determining a plurality of frequency offsets relative to a carrier frequency;
a plurality of receivers, wherein each of said plurality of receivers is configured for receiving a distinct frequency offset within said plurality of frequency offsets, shifting an incoming signal at the carrier frequency by its corresponding frequency offset to generate a frequency shifted signal, and determining a signal quality measurement corresponding to its frequency shifted signal; and
a selector/combiner module configured for receiving said frequency shifted signal and signal quality measurement from each of the plurality of receivers, generating a highest quality frequency shifted signal and sending said highest quality frequency shifted signal to upper protocol layers, wherein
said coordinator module is configured for receiving status data from said selector/combiner module, determining that a first receiver corresponding to a highest magnitude positive frequency offset and a second receiver corresponding to a highest magnitude negative frequency offset are not necessary, and de-instantiating the first and second receiver.