139-NR n65频段

139-NR n65频段


2023年12月3日发(作者:t460s)

NR n65频段

NR频段n65是LTE频段BAND65的Refarming。在NR中,将重耕很多LTE的频段。

由于n65频段与LTE 。LTE的BAND65是如下范围。

Uplink (UL) operating band

BS receive

UE transmit

FUL_low – FUL_high

65 1920 MHz – 1980 MHz

Downlink (DL) operating

band

BS transmit

UE receive

FDL_low – FDL_high

2110 MHz – 2170 MHz FDD

Duplex

Mode

E-UTRA

Operating

Band

B65非常相似,UE方面的差异很小,因此问题列表非常有限。

在共存方面时,频带n65附近的3GPP频带是频带1和34,如图5.1所示。波段1是区域1和区域3,而波段34是区域3。

Figure 5.1: 3GPP bands nearby Band n65

n65必须保护区域3的小灵通,该区域低于n65上行链路。n65还必须保护34波段,它正好位于n65上行链路上方,如图7.1-1所示。 19805 MHz CBW: A-MPR with 5 MHz offset10 MHz CBW: A-MPR with Fc of 1985 MHz10 MHz CBW: A-MPR with Fc of 1995 MHz10 MHz CBW: A-MPR with 5 MHz offset15 MHz CBW: A-MPR with Fc of 1987.5 MHz20 MHz CBW: A-MPR with Fc of 1990 MHz15 MHz20MHz10 MHz10 MHz10 MHz5 MHz2010offsetoffsetoffsetoffsetoffsetoffset-50 dBm/MHz-50 dBm/MHz-50 dBm/MHz-50 dBm/MHz-50 dBm/MHz-50 dBm/MHz2015

Figure 7.1-1: B34 protection scenarios

先熟悉下一个简写A-MPR:Additional Maximum Power Reduction

高通的模拟结果如下: Table 7.1-1: A-MPR for NS_24

Channel

Bandwidth,

MHz

5MHz

5MHz

5MHz

10MHz

10MHz

10MHz

15MHz

15MHz

20MHz

20MHz

Carrier

Centre

Frequency,

Fc,

MHz

Fc=1992.5

Fc=1997.5

Fc=2002.5

Fc=1985

Fc=1995

Fc=2000

Fc=1987.5

Fc=1997.5

Fc=1990

Fc=1995

Rbend*12*SCS

MHz

>5.4

>6.84

>9.36

>13.5

>12.6

Region A

LCRB*12*SCS

MHz

>3.24

>3.24

>2.16

>4.5

>7.02

A-MPR

A7

A4

A1

A4

A1

A5

A1

A5

A5

A5

Rbend*12*SCS

MHz

>3.78

>7.56

<2.88

>11.52

<3.6

<4.5

<5.4

Region B

LCRB*12*SCS

MHz

≤1.98

≤4.32

≤6.84

A-MPR

A2

A2

A5

A2

A5

A5

A5

Rbend*12*SCS

MHz

≤3.6

≤7.38

≥3.06

≤6.66

≤11.34

≥3.78

≤9.18

≥4.68

≤13.32

≥5.58

≤12.42

Region C

LCRB*12*SCS

MHz

≤1.98

≤4.32

>1.44

≤6.84

>1.44

>2.16

>1.44

A-MPR

A3

A3

A6

A3

A6

A6

A6

NOTE 1: The A-MPR values are listed in Table 7.1-2.

NOTE 2: For any undefined region, MPR applies.

Table 7.1-2: A-MPR for modulation and waveform type

Modulation/Waveform

A1 A2 A3 A4 A5 A6 A7

Outer Outer/Inner Outer/Inner Outer/Inner Outer Outer/Inner Outer/Inner DFT-s-OFDM PI/2 BPSK

DFT-s-OFDM QPSK

DFT-s-OFDM 16 QAM

DFT-s-OFDM 64 QAM

DFT-s-OFDM 256 QAM

CP-OFDM QPSK

CP-OFDM 16 QAM

CP-OFDM 64 QAM

CP-OFDM 256 QAM

≤ 11

≤ 11

≤ 11

≤ 11

≤ 11

≤ 13

≤ 13

≤ 13

≤ 13

≤ 5

≤ 5

≤ 5

≤ 5

≤ 5

≤ 6.5

≤ 6.5

≤ 6.5

≤ 6.5

≤ 4

≤ 4

≤ 4

≤ 4

≤ 4

≤ 4

≤ 4

≤ 8.5

≤ 8.5

≤ 8.5

≤ 8.5

≤ 8.5

≤ 8.5

≤ 8.5

≤ 8.5

≤ 8.5

≤ 18

≤ 18

≤ 18

≤ 19

≤ 20

≤ 19

≤ 19

≤ 19

≤ 20

≤ 10

≤ 10

≤ 10

≤ 10

≤ 10

≤ 12

≤ 12

≤ 12

≤ 12

≤ 3.5

≤ 3.5

≤ 3.5

≤ 3.5

≤ 5.5

≤ 5.5

≤ 5.5

NOTE 1: The backoff applied is max(MPR, A-MPR) where MPR is defined in Table 6.2.2-1 in TS 38.101-1 [4].

NOTE 2: Outer and inner allocations are defined in clause 6.2.2 in TS 38.101-1 [4].

诺基亚针对该频段提供的模拟结果如下:

Table 7.1-3: Parameter

CBW [MHz]

5

5

5

10

10

10

15

20

Offset from band

edge [MHz]

15

10

5

20

10

5

15

10

Fc [MHz]

1992,5

1997,5

2002,5

1985

1995

2000

1987,5

1990

A-MPR

A1

A2

A3

A4

A5

A6

A7

A8

Table 7.1-4: A-MPR

A1 A2

Outer Inner Outer Inner

A3

Outer Inner

A4

Outer

Inner SC-FDMA

pi/2-BPSK

QPSK

16QAM

64QAM

256QAM

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

A5

Inner

pi/2-BPSK

QPSK

16QAM

64QAM

256QAM

MPR

1,5

2

MPR

5,5

3,5

3,5

MPR

MPR

7

8,5

9

9

9,5

10,5

10

10,5

10,5

13

13,5

15

15,5

16

18

18

17,5

18,5

14,5

15

15,5

15,5

16

18

17,5

17,5

18

MPR

1

1,5

MPR

MPR

3,5

3,5

MPR

MPR

7

8

8,5

8,5

9

10

10

10

10

13

14

15

15

16

18

18

18,5

18,5

13

14

14,5

14,5

15

17

17,5

17,5

17,5

Outer Inner

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

A6

Outer Inner

2

3,5

4

4

5

4,5

4,5

5

MPR

MPR

2

2

MPR

10

4

3,5

4

10

A7

Outer Inner

8

9

9,5

10

11

11

11

10,5

11,5

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

MPR

A8

Outer

1,5

2,5

3

3

MPR

4,5

4,5

4,5

MPR

OFDMA QPSK

16QAM

64QAM

256QAM

SC-FDMA

OFDMA QPSK

16QAM

64QAM

256QAM

协议R16规定的FR1各频段: Table 5.2-1: NR operating bands in FR1

NR

operating

band

n1

n2

n3

n5

n7

n8

n12

n20

n25

n28

n34

n38

n39

n40

n41

n50

n51

n66

n70

n71

n74

n75

n76

n77

n78

n79

n80

n81

n82

n83

n84

n86

Uplink (UL) operating band

BS receive / UE transmit

FUL_low

– FUL_high

1920 MHz – 1980 MHz

1850 MHz – 1910 MHz

1710 MHz – 1785 MHz

824 MHz – 849 MHz

2500 MHz – 2570 MHz

880 MHz – 915 MHz

699 MHz – 716 MHz

832 MHz – 862 MHz

1850 MHz – 1915 MHz

703 MHz – 748 MHz

2010 MHz – 2025 MHz

2570 MHz – 2620 MHz

1880 MHz – 1920 MHz

2300 MHz – 2400 MHz

2496 MHz – 2690 MHz

1432 MHz – 1517 MHz

1427 MHz – 1432 MHz

1710 MHz – 1780 MHz

1695 MHz – 1710 MHz

663 MHz – 698 MHz

1427 MHz – 1470 MHz

N/A

N/A

3300 MHz – 4200 MHz

3300 MHz – 3800 MHz

4400 MHz – 5000 MHz

1710 MHz – 1785 MHz

880 MHz – 915 MHz

832 MHz – 862 MHz

703 MHz – 748 MHz

1920 MHz – 1980 MHz

1710 MHz – 1780 MHz

2110 MHz – 2170 MHz

1930 MHz – 1990 MHz

1805 MHz – 1880 MHz

869 MHz – 894 MHz

2620 MHz – 2690 MHz

925 MHz – 960 MHz

729 MHz – 746 MHz

791 MHz – 821 MHz

1930 MHz – 1995 MHz

758 MHz – 803 MHz

2010 MHz – 2025 MHz

2570 MHz – 2620 MHz

1880 MHz – 1920 MHz

2300 MHz – 2400 MHz

2496 MHz – 2690 MHz

1432 MHz – 1517 MHz

1427 MHz – 1432 MHz

2110 MHz – 2200 MHz

1995 MHz – 2020 MHz

617 MHz – 652 MHz

1475 MHz – 1518 MHz

1432 MHz – 1517 MHz

1427 MHz – 1432 MHz

3300 MHz – 4200 MHz

3300 MHz – 3800 MHz

4400 MHz – 5000 MHz

N/A

N/A

N/A

N/A

N/A

N/A

FDD

FDD

FDD

FDD

FDD

FDD

FDD

FDD

FDD

FDD

TDD

TDD

TDD

TDD

TDD

TDD1

TDD

FDD

FDD

FDD

FDD

SDL

SDL

TDD

TDD

TDD

SUL

SUL

SUL

SUL

SUL

SUL

Downlink (DL) operating band

BS transmit / UE receive

FDL_low – FDL_high

Duplex

Mode


发布者:admin,转转请注明出处:http://www.yc00.com/num/1701612784a1130194.html

相关推荐

发表回复

评论列表(0条)

  • 暂无评论

联系我们

400-800-8888

在线咨询: QQ交谈

邮件:admin@example.com

工作时间:周一至周五,9:30-18:30,节假日休息

关注微信