IP Library Granted Patent US 11,895,600
Granted Patent B2
US 11,895,600 · App. 18/137,750 · Granted Feb 6, 2024

Maximum power reduction

Inventors: Yoonoh Yang (Seoul, KR); Markus Pettersson (Seoul, KR); Sangwook Lee (Seoul, KR); Jinyup Hwang (Seoul, KR); Jinwoong Park (Seoul, KR)
Assignee: LG ELECTRONICS INC.
H04W52/367H04L27/2636
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Quick Facts
Patent No.
US 11,895,600
App. No.
18/137,750
Granted
Feb 6, 2024
Kind
B2
Abstract

One disclosure of the present specification provides user equipment (UE). The UE comprises: a transceiver to transmit a signal and to receive a signal; and a processor to control the transceiver, wherein the UE is a power class 2 UE or power class 3, wherein the processor determines transmission power based on MPR (maximum power reduction), wherein the transceiver transmits a signal with the transmission power in FR2-2, wherein the MPR is configured, based on channel bandwidth, RB (resource block) allocation and modulation type.

Claims (51)

1. A UE (user equipment), comprising:

a transceiver to transmit a signal and to receive a signal; and

a processor to control the transceiver,

wherein the UE is a power class 2 UE or power class 3,

wherein the processor determines transmission power based on MPR (maximum power reduction),

wherein the transceiver transmits a signal with the transmission power in FR2-2 (Frequency Range 2-2) band,

wherein the FR2-2 band is a band from 52600 MHz to 71000 MHz,

wherein the MPR is determined, based on channel bandwidth, RB (resource block) allocation and modulation type,

wherein the MPR is 6.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Inner RB allocations, iii) the modulation type being DFT-s-OFDM (Discrete Fourier Transform-spread-orthogonal frequency division multiplexing) and 16 QAM (Quadrature Amplitude Modulation).

2. The UE of claim 1 , wherein the MPR is 6.5 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Inner RB allocations, iii) the modulation type being CP-OFDM (Cyclic Prefix-OFDM) and QPSK (Quadrature phase shift keying).

3. The UE of claim 1 , wherein the MPR is 8.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Inner RB allocations, iii) the modulation type being CP-OFDM and 16 QAM.

4. The UE of claim 1 , wherein the MPR is 10.5 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Inner RB allocations, iii) the modulation type being CP-OFDM and 64 QAM.

5. The UE of claim 1 , wherein the MPR is 4.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being DFT-s-OFDM and Pi/2 BPSK (binary phase shift keying).

6. The UE of claim 1 , wherein the MPR is 4.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being DFT-s-OFDM and QPSK.

7. The UE of claim 1 , wherein the MPR is 6.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being DFT-s-OFDM and 16 QAM.

8. The UE of claim 1 , wherein the MPR is 6.5 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being CP-OFDM and QPSK.

9. The UE of claim 1 , wherein the MPR is 8.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being CP-OFDM and 16 QAM.

10. The UE of claim 1 , wherein the MPR is 10.5 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being CP-OFDM and 64 QAM.

11. A method for performing communication, performed by a UE (user equipment), comprising:

determining transmission power based on MPR (maximum power reduction); and

transmitting a signal with the transmission power in FR2-2 (Frequency Range 2-2) band,

wherein the FR2-2 band is a band from 52600 MHz to 71000 MHz,

wherein the UE is a power class 2 UE or power class 3,

wherein the MPR is determined, based on channel bandwidth, RB (resource block) allocation and modulation type,

wherein the MPR is 6.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Inner RB allocations, iii) the modulation type being DFT-s-OFDM (Discrete Fourier Transform-spread-orthogonal frequency division multiplexing) and 16 QAM (Quadrature Amplitude Modulation),

wherein the MPR is 6.5 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Inner RB allocations, iii) the modulation type being CP-OFDM (Cyclic Prefix-OFDM) and QPSK (Quadrature phase shift keying),

wherein the MPR is 8.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Inner RB allocations, iii) the modulation type being CP-OFDM and 16 QAM,

wherein the MPR is 10.5 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Inner RB allocations, iii) the modulation type being CP-OFDM and 64 QAM,

wherein the MPR is 4.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being DFT-s-OFDM and Pi/2 BPSK (binary phase shift keying),

wherein the MPR is 4.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being DFT-s-OFDM and QPSK,

wherein the MPR is 6.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being DFT-s-OFDM and 16 QAM,

wherein the MPR is 6.5 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being CP-OFDM and QPSK,

wherein the MPR is 8.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being CP-OFDM and 16 QAM,

wherein the MPR is 10.5 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being CP-OFDM and 64 QAM.

12. A non-volatile computer readable storage medium having recorded instructions,

wherein the instructions, based on being executed by one or more processors, cause the one or more processors to:

determining transmission power based on MPR (maximum power reduction); and

transmitting a signal with the transmission power in FR2-2 (Frequency Range 2-2) band,

wherein the FR2-2 band is a band from 52600 MHz to 71000 MHz,

wherein a UE (user equipment) including the non-volatile computer readable storage medium is a power class 2 UE or power class 3,

wherein the MPR is determined, based on channel bandwidth, RB (resource block) allocation and modulation type,

wherein the MPR is 6.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Inner RB allocations, iii) the modulation type being DFT-s-OFDM (Discrete Fourier Transform-spread-orthogonal frequency division multiplexing) and 16 QAM (Quadrature Amplitude Modulation),

wherein the MPR is 6.5 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Inner RB allocations, iii) the modulation type being CP-OFDM (Cyclic Prefix-OFDM) and QPSK (Quadrature phase shift keying),

wherein the MPR is 8.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Inner RB allocations, iii) the modulation type being CP-OFDM and 16 QAM,

wherein the MPR is 10.5 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Inner RB allocations, iii) the modulation type being CP-OFDM and 64 QAM,

wherein the MPR is 4.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being DFT-s-OFDM and Pi/2 BPSK (binary phase shift keying),

wherein the MPR is 4.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being DFT-s-OFDM and QPSK,

wherein the MPR is 6.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being DFT-s-OFDM and 16 QAM,

wherein the MPR is 6.5 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being CP-OFDM and QPSK,

wherein the MPR is 8.0 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being CP-OFDM and 16 QAM,

wherein the MPR is 10.5 dB or less, based on i) the channel bandwidth being 800 MHz, ii) the RB allocation being Edge RB allocations, iii) the modulation type being CP-OFDM and 64 QAM.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 21, 2023
From: YANG, YOONOH; PETTERSSON, MARKUS; LEE, SANGWOOK; HWANG, JINYUP; PARK, JINWOONG
To: LG ELECTRONICS INC.
Reel/Frame 063403/0892 →
Continuity (2)
Provisional Application 63333568 · Apr 22, 2022
Related Publication 20230345389A1 · Oct 26, 2023
Cited By (1)
US 12,477,471