ubuntu 16.04系统LimeSDR V1.4使用最新版本的OpenAirInterface5g代码搭建LTE实验环境

注意,最新开发版本的代码不稳定,存在问题,以下的仅仅是记录自己的操作过程,代码并不能正常工作。正常使用的话,请不要使用如下的版本操作。

参考ubuntu 16.04系统LimeSDR V1.4使用OpenAirInterface搭建LTE实验环境,并参考 解决ubuntu 16.04系统上2017.06版本之后的LimeSDR V1.4驱动不能正常运行OpenAirInterface搭建的LTE实验环境的问题使用最新的LimeSDR驱动能正常进行LTE实验之后,我们开始尝试把OpenAirInterface的代码更新到最新版本(2018_w15),新版本的代码结构更加清晰,但是不可用

$ cd ~

$ cd openairinterface5g

$ rm -rf *

$ git checkout develop

$ git pull

#对于国内的用户来说,国外的几个代码地址需要修改一下,否则会出现无法下载或者下载非常慢的情况
$ sed -i "s/git clone https:\/\/gist.github.com\/2190472.git \/opt\/ssh/wget https:\/\/www.mobibrw.com\/wp-content\/uploads\/2018\/03\/ssh.tar.gz \&\& sudo tar -zxvf ssh.tar.gz -C \/opt/g" cmake_targets/tools/build_helper
 
$ sed -i "s/git clone https:\/\/gitlab.eurecom.fr\/oai\/asn1c.git \/tmp\/asn1c/wget https:\/\/www.mobibrw.com\/wp-content\/uploads\/2018\/03\/asn1c.tar.gz \&\& tar -zxvf asn1c.tar.gz -C \/tmp/g" cmake_targets/tools/build_helper
 
$ sed -i "s/https:\/\/pypi.python.org\/packages\/18\/fa\/dd13d4910aea339c0bb87d2b3838d8fd923c11869b1f6e741dbd0ff3bc00\/netifaces-0.10.4.tar.gz/https:\/\/www.mobibrw.com\/wp-content\/uploads\/2018\/03\/netifaces-0.10.4.tar.gz/g" cmake_targets/tools/build_helper
 
$ sed -i "s/https:\/\/github.com\/google\/protobuf\/releases\/download\/v3.3.0\/protobuf-cpp-3.3.0.tar.gz/https:\/\/www.mobibrw.com\/wp-content\/uploads\/2018\/04\/protobuf-cpp-3.3.0.tar.gz/g" cmake_targets/tools/build_helper
 
$ sed -i "s/git clone https:\/\/github.com\/protobuf-c\/protobuf-c.git/wget https:\/\/www.mobibrw.com\/wp-content\/uploads\/2018\/03\/protobuf-c.tar.gz \&\& tar -zxvf protobuf-c.tar.gz/g" cmake_targets/tools/build_helper
 
#修正兼容问题,更高版本的protobuf-c跟我们上面安装的版本不匹配,会导致编译错误
$ sed -i "s/cd protobuf-c/cd protobuf-c \&\& git checkout 2a46af42784abf86804d536f6e0122d47cfeea45/g" cmake_targets/tools/build_helper

# 如果使用最新版本的limesdr驱动已经修正了数据读取的BUG,不需要丢弃第一次的报文,我们需要
# 阻止第一个报文的丢弃,否则数据读取是错误的
$ sed -r -i "s/first_rx[ \t]*=[ \t]*1;/first_rx = 0;/g" targets/ARCH/LMSSDR/USERSPACE/LIB/lms_lib.cpp

#执行编译
$ source oaienv  
 
$ ./cmake_targets/build_oai -I       # install SW packages from internet
 
# ./cmake_targets/build_oai  -w USRP --eNB -t ETHERNET# compile eNB
# 注意如果后续重新编译过limesdr的驱动,这部分也需要重新编译
 
$ ./cmake_targets/build_oai -c -w LMSSDR --eNB -x

接下来就是创建LimeSDR的启动配置文件(从enb.band7.tm1.50PRB.usrpb210.conf修改而来):

$ vim targets/PROJECTS/GENERIC-LTE-EPC/CONF/enb.band7.tm1.25PRB.lmssdr.conf

里面的内容如下:

Active_eNBs = ( "eNB-Eurecom-LTEBox");
# Asn1_verbosity, choice in: none, info, annoying
Asn1_verbosity = "none";

eNBs =
(
 {
    ////////// Identification parameters:
    eNB_ID    =  0xe00;

    cell_type =  "CELL_MACRO_ENB";

    eNB_name  =  "eNB-Eurecom-LTEBox";

    // Tracking area code, 0x0000 and 0xfffe are reserved values
    tracking_area_code  =  "1";

    mobile_country_code =  "208";

    mobile_network_code =  "92";

    tr_s_preference     = "local_mac"

    ////////// Physical parameters:

    component_carriers = (
      {
      node_function             = "3GPP_eNODEB";
      node_timing               = "synch_to_ext_device";
      node_synch_ref            = 0;
      frame_type					      = "FDD";
      tdd_config 					      = 3;
      tdd_config_s            			      = 0;
      prefix_type             			      = "NORMAL";
      eutra_band              			      = 7;
      downlink_frequency      			      = 2685000000L;
      uplink_frequency_offset 			      = -120000000;
      Nid_cell					      = 0;
      N_RB_DL                 			      = 25;
      Nid_cell_mbsfn          			      = 0;
      nb_antenna_ports                                = 1;
      nb_antennas_tx          			      = 1;
      nb_antennas_rx          			      = 1;
      tx_gain                                            = 90;
      rx_gain                                            = 125;
      pbch_repetition                                 = "FALSE";
      prach_root              			      = 0;
      prach_config_index      			      = 0;
      prach_high_speed        			      = "DISABLE";
      prach_zero_correlation  			      = 1;
      prach_freq_offset       			      = 2;
      pucch_delta_shift       			      = 1;
      pucch_nRB_CQI           			      = 0;
      pucch_nCS_AN            			      = 0;
      pucch_n1_AN             			      = 32;
      pdsch_referenceSignalPower 			      = -27;
      pdsch_p_b                  			      = 0;
      pusch_n_SB                 			      = 1;
      pusch_enable64QAM          			      = "DISABLE";
      pusch_hoppingMode                                  = "interSubFrame";
      pusch_hoppingOffset                                = 0;
      pusch_groupHoppingEnabled  			      = "ENABLE";
      pusch_groupAssignment      			      = 0;
      pusch_sequenceHoppingEnabled		   	      = "DISABLE";
      pusch_nDMRS1                                       = 1;
      phich_duration                                     = "NORMAL";
      phich_resource                                     = "ONESIXTH";
      srs_enable                                         = "DISABLE";
      /*  srs_BandwidthConfig                                =;
      srs_SubframeConfig                                 =;
      srs_ackNackST                                      =;
      srs_MaxUpPts                                       =;*/

      pusch_p0_Nominal                                   = -96;
      pusch_alpha                                        = "AL1";
      pucch_p0_Nominal                                   = -104;
      msg3_delta_Preamble                                = 6;
      pucch_deltaF_Format1                               = "deltaF2";
      pucch_deltaF_Format1b                              = "deltaF3";
      pucch_deltaF_Format2                               = "deltaF0";
      pucch_deltaF_Format2a                              = "deltaF0";
      pucch_deltaF_Format2b		    	      = "deltaF0";

      rach_numberOfRA_Preambles                          = 64;
      rach_preamblesGroupAConfig                         = "DISABLE";
      /*
      rach_sizeOfRA_PreamblesGroupA                      = ;
      rach_messageSizeGroupA                             = ;
      rach_messagePowerOffsetGroupB                      = ;
      */
      rach_powerRampingStep                              = 4;
      rach_preambleInitialReceivedTargetPower            = -108;
      rach_preambleTransMax                              = 10;
      rach_raResponseWindowSize                          = 10;
      rach_macContentionResolutionTimer                  = 48;
      rach_maxHARQ_Msg3Tx                                = 4;

      pcch_default_PagingCycle                           = 128;
      pcch_nB                                            = "oneT";
      bcch_modificationPeriodCoeff			      = 2;
      ue_TimersAndConstants_t300			      = 1000;
      ue_TimersAndConstants_t301			      = 1000;
      ue_TimersAndConstants_t310			      = 1000;
      ue_TimersAndConstants_t311			      = 10000;
      ue_TimersAndConstants_n310			      = 20;
      ue_TimersAndConstants_n311			      = 1;
      ue_TransmissionMode                                    = 1;
      }
    );


    srb1_parameters :
    {
        # timer_poll_retransmit = (ms) [5, 10, 15, 20,... 250, 300, 350, ... 500]
        timer_poll_retransmit    = 80;

        # timer_reordering = (ms) [0,5, ... 100, 110, 120, ... ,200]
        timer_reordering         = 35;

        # timer_reordering = (ms) [0,5, ... 250, 300, 350, ... ,500]
        timer_status_prohibit    = 0;

        # poll_pdu = [4, 8, 16, 32 , 64, 128, 256, infinity(>10000)]
        poll_pdu                 =  4;

        # poll_byte = (kB) [25,50,75,100,125,250,375,500,750,1000,1250,1500,2000,3000,infinity(>10000)]
        poll_byte                =  99999;

        # max_retx_threshold = [1, 2, 3, 4 , 6, 8, 16, 32]
        max_retx_threshold       =  4;
    }

    # ------- SCTP definitions
    SCTP :
    {
        # Number of streams to use in input/output
        SCTP_INSTREAMS  = 2;
        SCTP_OUTSTREAMS = 2;
    };


    ////////// MME parameters:
    mme_ip_address      = ( { ipv4       = "127.0.0.20";
                              ipv6       = "192:168:30::17";
                              active     = "yes";
                              preference = "ipv4";
                            }
                          );

    NETWORK_INTERFACES :
    {

        ENB_INTERFACE_NAME_FOR_S1_MME            = "lo";
        ENB_IPV4_ADDRESS_FOR_S1_MME              = "127.0.0.10/8";
        ENB_INTERFACE_NAME_FOR_S1U               = "lo";
        ENB_IPV4_ADDRESS_FOR_S1U                 = "127.0.0.10/8";
        ENB_PORT_FOR_S1U                         = 2152; # Spec 2152
    };
  }
);

MACRLCs = (
	{
	num_cc = 1;
	tr_s_preference = "local_L1";
	tr_n_preference = "local_RRC";
	phy_test_mode = 1;
        }  
);

L1s = (
    	{
	num_cc = 1;
	tr_n_preference = "local_mac";
        }  
);

RUs = (
    {		  
       local_rf       = "yes"
         nb_tx          = 1
         nb_rx          = 1
         att_tx         = 0
         att_rx         = 0;
         bands          = [7];
         max_pdschReferenceSignalPower = -27;
         max_rxgain                    = 125;
         eNB_instances  = [0];

    }
);  

NETWORK_CONTROLLER :
{
    FLEXRAN_ENABLED        = "no";
    FLEXRAN_INTERFACE_NAME = "lo";
    FLEXRAN_IPV4_ADDRESS   = "127.0.0.1";
    FLEXRAN_PORT           = 2210;
    FLEXRAN_CACHE          = "/mnt/oai_agent_cache";
    FLEXRAN_AWAIT_RECONF   = "no";
};

     log_config :
     {
       global_log_level                      ="info";
       global_log_verbosity                  ="medium";
       hw_log_level                          ="info";
       hw_log_verbosity                      ="medium";
       phy_log_level                         ="info";
       phy_log_verbosity                     ="medium";
       mac_log_level                         ="info";
       mac_log_verbosity                     ="high";
       rlc_log_level                         ="info";
       rlc_log_verbosity                     ="medium";
       pdcp_log_level                        ="info";
       pdcp_log_verbosity                    ="medium";
       rrc_log_level                         ="info";
       rrc_log_verbosity                     ="medium";
    };

另外,最新版本运行的时候如果增加-d参数,启动图形界面,程序会崩溃。目前这个版本可以运行,但是貌似会导致LimeSDR驱动数据发送异常,目前已知,这个版本的驱动没有正确的读取配置文件,导致给硬件的配置信息是错误的,暂时这个版本还不可用。

发布者

《ubuntu 16.04系统LimeSDR V1.4使用最新版本的OpenAirInterface5g代码搭建LTE实验环境》上有6条评论

  1. 您好前辈 limesdr usb 什么固件比较好用 升级新固件后之前gnuradio和好多东西都不能用了,新固件问题多 那个最新版本稳定

    1. v17.06.0 版本稳定性不错,不过,目前我这边测试最新的代码是没有问题的,就是启动的时候比较慢,一般解决方法是外接 9V-12V的直流电源来解决启动问题。

  2. 前辈你好
    sed -r -i "s/first_rx[ \t]*=[ \t]*1;/first_rx = 0;/g" targets/ARCH/LMSSDR/USERSPACE/LIB/lms_lib.cpp s
    报错说没有这个文件 还有 source oaienv 这个也是 一样报错

    1. 版本,请注意代码版本,git clone 下来,默认是最新版本,请切换到我使用的版本,编译通过之后,再切换到最新版本上试试。这样调整比较快

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