Systems and related techniques for efficient operation of a cellular network
Described are concepts, systems and techniques for detecting whether an antenna is connected to a transmit system to thereby protect a power amplifier lineup from damage.
1. A remote radio head (RRH) comprising:
a plurality of RF power amplifier (PA) transmit paths, each of the plurality of RF amplifier transmit paths including at least one RF power amplifier; and
means for dividing a communication channel such that each RF power amplifier operates over a frequency bandwidth which allows efficient operation of the RF power amplifier and wherein each power amplifier (PA) transmit path is tuned for operation at a respective one of a plurality of different center frequencies (f 0 , f 0 +Δf, . . . f 0 +(n−1) Δf where n is an integer corresponding to the number of RF PA transmit paths and Δf is a frequency offset.
2. The remote radio head of claim 1 further comprising means for increasing RF PA supply voltages to one or more RF power amplifiers in response to decreasing a number of deployed frequency bands.
3. The remote radio head of claim 1 further comprising means for decreasing RF PA supply voltages to one or more RF power amplifiers in response to increasing a number of deployed frequency bands.
4. The remote radio head of claim 1 further comprising means for providing RF PA supply voltages having voltage levels selected in accordance with the number of deployed frequency bands.
5. A remote radio head (RRH) comprising:
a plurality of RF power amplifier (PA) transmit paths, each of the plurality of RF amplifier transmit paths including at least one RF power amplifier; and
means for dividing a communication channel such that each RF power amplifier operates over a frequency bandwidth selected to allow efficient operation of the RF power amplifier and wherein each PA transmit path is tuned for operation at a respective one of a plurality of different center frequencies (f 0 , f 0 +Δf, . . . f 0 +(n−1) Δf) where n is an integer corresponding to the number of RF PA transmit paths and Δf is a frequency offset.
6. The remote radio head of claim 5 further comprising means for providing RF PA supply voltages having voltage levels selected in accordance with the number of deployed frequency bands.
7. The remote radio head of claim 6 further comprising means for increasing RF PA supply voltages provided to each of the PAs in deployed signal paths as the number of deployed frequency bands decreases.
8. The remote radio head of claim 6 further comprising means for decreasing RF PA supply voltages provided to each of the PAs in deployed signal paths as the number of deployed frequency bands increases.