Zte bsc installation




















At version management, we can know the version type of all module. RFS Attenuation Configuration 1. Choose configuration management 2. At Data Synchronization, after we had done something with module so we must synchronization data first.

No 7 Signaling Link 1. Add your computer IP ip address : Use the command telnet Log in : zte 5. Password : zte 6. If system prompts that can not connect to the database, dont click OK and dont care. Input telnet Blue character need to input by ourselves.

Upgrade BSC module 1. Find 3GVER Choose add version : a. Choose configure OMP a. Choose OMP Left, double click then choose 04 and right click choose configuration b. Choose OMP Right, double click then choose 04 and right click choose configuration c. Choose active version a. RPU b. RMP e. Upgrade BSC module A. Upgrade BTS module 1. Choose Version management 2. Choose Deliver Version 3.

Choose Create Deliver Task Monitor then choose cancel Choose Active version Choose BTS Node Choose All IP Control board Choose activate version Reset board normally CCM master Choose Query Version Choose Query Running Information.

Choose CPU first 5. Choose Mate Syn 7. Choose active version then choose cancel Choose BTS node Choose activate CPU version Choose Board Type Selection Reset board normally CCM master. Choose Deliver Version Choose MCU Choose Query Version.

Fill in IP address computer IP address : Change IP address computer IP address : Choose Login Server roles System administrators 5. Choose Login Database Access pubs 6. Fill in user name, user password, repeat password : aaa 8. At Radius Configure Login Fill in operator code and operator password : admin At security association Fill in ip address : Press 2.

Choose programming 3. Press 4. Choose ESN cant change 5. Choose Basic NAM1 5a. Choose phone number 5b. Choose Home Sys Reg : No 6d8. Choose Slot Cycle Index : 2. Choose Country Code : 6b. Choose true IMSI : 6d. Choose Directory : 6d2. Choose Primary CHA : 6d4. Choose Secondary CHA : 6d5. Choose Primary CHB : 6d6. Choose Secondary CHB : Performance Management 1. Views Performance Management Statistics 2. System Tools Network Performance Test 2. Add IMSI. Problems Encountered Lack of training Need to learn more about BSC debug and configure Cant understand all of document in spesific Need another project for more knowledge.

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Download Now Download Download to read offline. Introduction to-zxsdr-products-gsm Mar. Zxsdr bs a product description Ivan Andreas Kembau. Zxdu68 t product description v1. Zxsdr bs e product description configured with b Zxsdr bs product description.

Zxmw nr v1. Related Books Free with a 30 day trial from Scribd. Related Audiobooks Free with a 30 day trial from Scribd. Outstanding Leadership Stan Toler. Introduction to-zxsdr-products-gsm 1. No part of this documentation may be excerpted, reproduced, translated, annotated or duplicated, in any form or by any means without the prior written permission of ZTE Corporation. The names and logos of ZTE products are proprietary logos or registered trade marks.

The names of other products and companies mentioned in this manual may be proprietary to their owners respectively. Without the prior written permission of ZTE or the owners of third-party trade marks or trade names, this manual does not grant the reader any permission or right to use any marker appeared in the manual.

The product described herein conforms to the design requirements of environment protection and human security. The storage, usage, and discard of the product shall comply with the manual, related contract, or laws and regulations of related countries. The actual product may differ from what is described in this standard due to frequent update of ZTE products and fast development of technologies. Please contact the local ZTE office for the latest updating information of the product.

This document aims to make the readers know its background, technique features and commissioning method. What is SDR What is SDR 1. The common concern for communication operators and equipment suppliers is how to upgrade equipment more flexibly and protect the investment of operators to greatest extent in the continuous technology updates.

The SDR concept is proposed for this problem. The traditional communication equipment, namely the hardware radio HR , functions through the hardware. Therefore, functions are often improved by upgrading the equipment. SDR uses the hardware as a general processing platform and functions through the software.

Thus, it provides a more flexible and low-cost solution. It also supports multiple systems, bands, and functions through the software. Figure 1. The InfoVision award is designed for commending those significant technologies, applications, products, innovations, and services with special meaning and value in the Telecom industry.

The awardees include enterprises and individuals that have developed innovative technologies and made great contributions to the society. Once again, ZTE boasts its leadership in the radio technology field by winning the top-level award with the innovative SDR product.

For the structure, see Figure 2. As a standard open architecture, uTCA provides options for communication system design on various components of different handovers, ports, protocols and functions, system architecture, redundancy and high availability. The baseband can obtain the maximum integrity, while RF focuses on the maximization of its own power and efficiency. Therefore, the networking is more flexible. Provide the clock driven function in the control shelf. The external data from other boards enters the UIMC for switching and it sent to the target board.

Exchange of control signal within all the shelf. It extract clock reference through A-interface and give multiple timing reference signal to the interface unit. One CMP board capacity is Erlang. Provide clock driving function to all boards in gigabit resource shelf. The external data from the boards of the shelf enter to Ethernet switching and TS switching domain for switching and is then sent to the destination board.

Provide an access processing capacity of E1. It receives the clock from the system clock board and provide the reference clock signal to the STM-1 for the synchronization. It receives the STM-1 optical data from line side and then sent to the circuit switching for the switching, from where it sent to GUIM board and vice versa. It is basically E1 to IP payload and vice versa.

After being processed by HSP protocol, the data is sent to service processing unit where it get distributed to user plane and control plane. The user plane data is sent to GUP2 for processing via user plane switching network and the control plane data is sent to CMP for processing via control plane switching network. It provide physical 16xE1 external interface.

The interface unit access the date and then it send to service processing unit where the user plane data is sent to GUP2 for processing and control plane date is sent to CMP. Functions Provides data switching among GLIs Provides physical layer adaptation, IP packet check, fragmentation, transfer management, and traffic management Provide connection with the switching unit of control plane, implementing all the protocol processing on control plane Provides signaling switching in BPSN.

Implement function such as physical layer adaption, IP packet check, transfer management and traffic management. GLI has a processing capacity of 2. Data sent from GUIM through optical fiber to switching interface is sent to service processing unit and then sent to PSN for high speed data switching process.

Clock distribution cable and line clock extracting cable Control plane Ethernet cable User plane fiber Monitoring cable. Open navigation menu.

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