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无线网优考试题及答案3

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 网络优化试题

单选题:

1. A985是处理 数据的工具。

A. Abis跟踪 B. A接口跟踪 C. OMC-R话务统计 D. Air接口

2. BSIC是移动网络中的一个重要参数,它是由 组成。

A. LAC+CI B. BCC+NCC C. BCC+CI D. MCC+MNC

3. 小区选择C1算法跟以下那些因素有关? A. Rxlev_min(n) B. MS_Txpwr_Max C. Rxlev_Access_Min D. BS_Txpwr_Max

4. 下列哪个参数不是微小区需要设置的参数?

A. EN_MCHO_H_UL B. EN_MCHO_RESCUE C. EN_RESCUE_UM D. EN_SPEED_DISC

5. 下列哪些参数设置不合理?

A. BS_TXPWR_MAX_INNER=BS_TXPWR_MAX B. RXLEV_MIN(n)=RXLEV_ACCESS_MIN

C. MS_TXPWR_MAX=MS_TXPWR_MAX_CCH D. L_RXLEV_UL_IH=L_RXLEV_UL_H

6. 下列哪个Timer与抑制Pingpong切换有关?

A. T3101 B. T_INTFR_L3 C. T_HCP D. T7

7. 如果将T3101设置抬高,可能会造成什么影响? A. SDCCH拥塞 B. PCH拥塞 C. TCH拥塞 D. AGCH拥塞

8. DTX对下列哪个信道起作用? A. BCCH B. TCH C. SDCCH D. CCCH

9. “HO Access” 消息是在哪个信道上传送的? A. RACH B. AGCH C. TCH D. SDCCH E. FACCH

10. “Call Proceding” 消息是在以下哪个过程中被用到? A. MOC B. MTC C. Location Update D. Handover

11. “Physical Information” 消息是在以下哪个过程中被用到? A. MOC B. MTC C. Location Update D. 同步切换 E. 异步切换

多项选择题:

1. 以下哪些协议在A接口上使用?

A. LAPD B. DTAP C. BSSMAP D. MAP E. MTP

2. 以下哪些实体参与了MM的管理? A. MS B. BTS C. BSC D. MSC E. VLR

3. 以下哪些过程属于RR过程? A. Paging B. Location Update C. Release D. Measurement Report E. Handover

4. 以下哪些信道只有下行信道? A. PCH B. RACH C. AGCH D. SDCCH E. SACCH

5. 以下哪些信息在“Channel Required” 消息中传送? A. Establish B. LAC&CI C. Random Reference D. TA E. IMSI or TMSI

6. 以下哪些话是正确的?

A. 在同步的Intercell 切换中不需要Physical Context Request 过程。 B. 呼叫可以通过Normal Assignment 过程从TCH被分配到SDCCH。 C. 在Normal Assignment 中, 如果Physical Context Request过程不成功,

呼叫就无法进行下去。 D. 同步切换比异步快。

7. 有哪些技术可以用来扩展网络容量? A. 双速率技术 B. 双频技术 C. 同心圆技术 D. 跳频技术 E. 微小区

填空题:

1. GSM可用频段为( P-GSM) : 上行: ~ MHz,下行: ~

MHz, 即绝对频道(n): ~ , 共 有 个频道。两者的换算关系(上行)为: F(MHz)= 。每两个相邻频道间隔 Hz。

2. 某城市的GSM网络目前拥有10000个手机用户,假定平均每个用户在忙时有三次

呼叫,平均每次呼叫时长为1分钟。计算该城市在忙时的每用户话务量和总话务量。 每用户话务量: mErl/Sub 总话务量: Erl

3. 某城市新建GSM网络,计划先上600个载频。目前有两种方案:

a). 采用20个10/10/10配置的基站

b). 若频段不够,采用40个5/5/5配置的基站

分别计算出上述两种方案的网络容量(考虑1%的阻塞率;每个载频平均配置7个TCH信道) a). Erl b). Erl

4. 填表:

(a) 采用带6电子俯仰角的定向双极化天线( 15.5dBi, 65) (b) 采用一级 Any(comb. Loss = 5.3dB) TX Units MS to BS BS to MS RF Output Power DBm 33 (2W) 43 (20W) Isolator+Combiner+Filter DB 0 Cable+Connector dB -2 -3 Antenna Gain dBi Body Loss DB -4 0 EIRP DBm RX Units MS to BS BS to MS RF Input Power (Min.) DBm -104 -102 Cable+Connector DB +3 +2 Antenna Gain Dbi Antenna Diversity DB 0 Interferer Margin DB +3 +3 DB +8 +8 Fading Margin 50%  90% Body Loss DB 0 +4 Min. Required Received DBm Isotropic Power Path Loss DB

附 录:Erlang B 表

Nr. Of channels 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 0.10% 0.001 0.046 0.194 0.439 0.762 1.146 1.579 2.051 2.557 3.092 3.651 4.231 4.831 5.446 6.077 6.721 7.378 8.046 8.724 9.411 10.108 10.812 11.524 12.243 12.969 13.701 14.439 15.182 15.930 16.684 17.442 18.205 18.972 19.743 20.517 21.296 22.078 22.863 23.652 24.444 25.239 26.037 26.838 27.641 28.447 29.255 Blocking Probability for Erlang B 0.20% 0.50% 1% 2% 0.002 0.005 0.010 0.020 0.065 0.105 0.153 0.223 0.249 0.349 0.455 0.602 0.535 0.701 0.869 1.092 0.900 1.132 1.361 1.657 1.325 1.622 1.909 2.276 1.798 2.157 2.501 2.935 2.311 2.730 3.128 3.627 2.855 3.333 3.783 4.345 3.427 3.961 4.461 5.084 4.022 4.610 5.160 5.842 4.637 5.279 5.876 6.615 5.270 5.964 6.607 7.402 5.919 6.663 7.352 8.200 6.582 7.376 8.108 9.010 7.258 8.099 8.875 9.828 7.946 8.834 9.652 10.656 8.644 9.578 10.437 11.491 9.351 10.331 11.230 12.333 10.068 11.092 12.031 13.182 10.793 11.860 12.838 14.036 11.525 12.635 13.651 14.896 12.265 13.416 14.470 15.761 13.011 14.204 15.295 16.631 13.763 14.997 16.125 17.505 14.522 15.795 16.959 18.383 15.285 16.598 17.797 19.265 16.054 17.406 18.640 20.150 16.828 18.218 19.487 21.039 17.606 19.034 20.337 21.932 18.389 19.854 21.191 22.827 19.176 20.678 22.048 23.725 19.966 21.505 22.909 24.626 20.761 22.336 23.772 25.529 21.559 23.169 24.638 26.435 22.361 24.006 25.507 27.343 23.166 24.846 26.379 28.254 23.974 25.689 27.252 29.166 24.785 26.534 28.129 30.081 25.599 27.382 29.007 30.997 26.415 28.232 29.888 31.916 27.235 29.085 30.771 32.836 28.057 29.940 31.656 33.758 28.882 30.797 32.543 34.682 29.708 31.656 33.432 35.607 30.538 32.517 34.322 36.534 5% 0.053 0.381 0.899 1.525 2.218 2.960 3.738 4.543 5.370 6.216 7.076 7.950 8.835 9.730 10.633 11.544 12.461 13.385 14.315 15.249 16.189 17.132 18.080 19.031 19.985 20.943 21.904 22.867 23.833 24.802 25.773 26.746 27.721 28.698 29.677 30.657 31.640 32.624 33.609 34.596 35.584 36.574 37.565 38.557 39.550 40.545 Nr. Of channels 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 0.10% 30.066 30.879 31.694 32.512 33.331 34.153 34.977 35.803 36.630 37.460 38.291 39.124 39.959 40.795 41.633 42.472 43.313 44.156 44.999 45.845 46.691 47.540 48.389 49.240 50.091 50.944 51.799 52.654 53.511 54.369 55.227 56.087 56.948 57.810 58.674 59.537 60.403 61.268 62.135 63.003 63.872 64.742 65.612 66.484 67.356 68.229 69.103 69.978 Blocking Probability for Erlang B 0.20% 0.50% 1% 2% 31.369 33.381 35.215 37.462 32.203 34.246 36.109 38.392 33.039 35.113 37.004 39.323 33.876 35.982 37.901 40.255 34.716 36.852 38.800 41.189 35.558 37.725 39.700 42.124 36.401 38.598 40.602 43.060 37.247 39.474 41.505 43.997 38.094 40.351 42.409 44.936 38.942 41.229 43.315 45.875 39.793 42.109 44.222 46.816 40.645 42.990 45.130 47.758 41.498 43.873 46.039 48.700 42.353 44.757 46.950 49.644 43.210 45.642 47.861 50.589 44.068 46.528 48.774 51.534 44.927 47.416 49.688 52.481 45.788 48.305 50.603 53.428 46.650 49.195 51.518 54.376 47.513 50.086 52.435 55.325 48.378 50.978 53.353 56.275 49.243 51.872 54.272 57.226 50.110 52.766 55.192 58.177 50.979 53.661 56.112 59.129 51.848 54.558 57.033 60.082 52.718 55.455 57.956 61.036 53.590 56.354 58.879 61.990 54.463 57.253 59.803 62.945 55.336 58.153 60.728 63.900 56.211 59.054 61.653 64.857 57.087 59.956 62.579 65.814 57.964 60.859 63.507 66.771 58.842 61.763 64.434 67.729 59.720 62.668 65.363 68.688 60.600 63.573 66.292 69.647 61.481 64.479 67.222 70.607 62.362 65.386 68.152 71.568 63.244 66.294 69.084 72.529 64.127 67.202 70.016 73.490 65.011 68.111 70.948 74.452 65.896 69.021 71.881 75.415 66.782 69.932 72.815 76.378 67.669 70.843 73.749 77.342 68.556 71.755 74.684 78.306 69.444 72.668 75.620 79.271 70.333 73.581 76.556 80.236 71.222 74.495 77.493 81.201 72.113 75.410 78.430 82.167 5% 41.540 42.537 43.534 44.533 45.533 46.533 47.534 48.536 49.539 50.543 51.548 52.553 53.559 54.566 55.573 56.581 57.590 58.599 59.609 60.619 61.630 62.642 63.654 64.667 65.680 66.694 67.708 68.723 69.738 70.753 71.769 72.786 73.803 74.820 75.838 76.856 77.874 78.893 79.912 80.932 81.952 82.972 83.993 85.014 86.035 87.057 88.079 89.101 考试答案:

单选题:(11×3=33) 1. C 2. B 3. C 4. C 5. D 6. C 7. A 8. B 9. E 10. A 11. E

多选题:(7×5=35) 1. B 2. A 3. A 4. A 5. A 6. B 7. A

C E B E D E C C D D

B C D E

填空题:(32分)

1. GSM可用频段为( P-GSM) : 上行: 890 ~ 915 MHz,下行: 935 ~ 960

MHz, 即绝对频道(n): 1 ~ 124 , 共 有 124 个频道。两者的换算关系(上行)为: F(MHz)= 890+0.2*n ( 1<= n <= 124 ) 。(2分) 每两个相邻频道间隔 200k Hz。(其他各1分, 共10分)

2. 某城市的GSM网络目前拥有10000个手机用户,假定平均每个用户在忙时有三次

呼叫,平均每次呼叫时长为1分钟。计算该城市在忙时的每用户话务量和总话务量。 每用户话务量: 50 mErl/Sub 总话务量: 500 Erl。 (2×2=4分)

3. 某城市新建GSM网络,计划先上600个载频。目前有两种方案:

a). 采用20个10/10/10配置的基站

b). 若频段不够,采用40个5/5/5配置的基站

分别计算出上述两种方案的网络容量(考虑1%的阻塞率;每个载频平均配置7个TCH信道) a). 4481 Erl b). 4012 Erl (2×3=6分)

4. 填表:(各1分,共12分)

(a) 采用带6电子俯仰角的定向双极化天线( 15.5dBi, 65) (b) 采用一级 Any(comb. Loss = 5.3dB) TX Units MS to BS BS to MS RF Output Power DBm 33 (2W) 43 (20W) Isolator+Combiner+Filter dB 0 -5.3 Cable+Connector dB -2 -3 Antenna Gain dBi +2 +15.5 Body Loss dB -4 0 EIRP dBm 29 50.2 RX Units MS to BS BS to MS RF Input Power (Min.) dBm -104 -102 Cable+Connector dB +3 +2 Antenna Gain dBi -15.5 -2 Antenna Diversity dB -3 0 Interferer Margin dB +3 +3 dB +8 +8 Fading Margin 50%  90% Body Loss dB 0 +4 Min. Required Received dBm -108.5 -87 Isotropic Power Path Loss dB 137.5 137.2

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