Base station far-end radio-frequency apparatus and clock restoring apparatus

A remote radio frequency and clock recovery technology, applied in the direction of selection device, automatic power control, electrical components, etc., can solve the problems of phase noise performance deterioration, long period, narrow filter bandwidth, etc., to achieve low phase noise, low cost, The effect of system cost control

Inactive Publication Date: 2009-10-14
HUAWEI TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] The defect of hardware phase-locked loop to realize clock recovery is that in the hardware phase-locked loop, the filtering bandwidth of the loop filter cannot be made very narrow, although the filtering bandwidth can filter out most of the noise, but for the The near-end phase noise generated (that is, the noise whose frequency deviation is smaller than the loop bandwidth) cannot be effectively filtered by the loop filter, and the near-end phase noise of the PLL output clock will be mainly generated by the input PLL The phase noise performance of the accompanying clock (that is, the output clock of the previous RE) is determined; in the link of clock transmission, the serial / parallel transceiver (SERDES Serializer or Deserializer), the optical sending unit or the optical receiving unit will generate Noise, which leads to the deterioration of the phase noise performance of the associated clock input to the phase-locked loop (that is, the output clock of the upper stage RE), which in turn deteriorates the near-end phase noise of the phase-locked loop output clock
[0008] The defect of software phase-locked loop to achieve clock recovery is that the closed-loop control period of software phase-locked loop is longer (every 30s), so the frequency adjustment time is relatively long (software phase-locked loop can be regarded as a kind of "frequency-locked "algorithm), so that there is a frequency difference between the input and output clocks of the RE clock recovery unit (that is, between the local clock and the output clock of the upper-level RE)
When the output clock of the clock recovery unit is input to the data processing unit (Data Process), the frequency difference will cause high-speed data transmission to generate bit errors in the data processing unit; The time delay between the clock and the upper-level RE output clock is uncertain, so when the base station is configured for transmit diversity, this method is difficult to meet the delay requirements of transmit diversity
[0009] From the above analysis, it can be seen that the defect of the existing clock recovery device is that the output clock signal has unstable near-end phase noise, or there is an unstable time delay between the output clock and the input clock
Further, when the existing clock recovery device is applied to the remote radio frequency device of the base station, the local clock signal cannot meet the requirements of the remote radio device for low noise and stable delay of the local clock signal

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  • Base station far-end radio-frequency apparatus and clock restoring apparatus
  • Base station far-end radio-frequency apparatus and clock restoring apparatus
  • Base station far-end radio-frequency apparatus and clock restoring apparatus

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Embodiment Construction

[0026] The remote radio frequency unit provided by the present invention can be applied to various wireless systems using code division multiple access (CDMA) methods, such as wideband code division multiple access (WCDMA) systems and the like. Such as figure 1 As shown, REs are generally far away from RECs. One REC can control the work of multiple REs. There is only one high-speed data link between REs and RECs. In a chain network, there is only one high-speed data link between upper and lower REs. , the data link includes service data information and operation and maintenance information; and the clock reference required by the RE needs to be recovered from the high-speed data link.

[0027] The clock reference (that is, the local clock signal) required by the RE needs to meet the following indicators:

[0028] 1. 3G TS25.104 protocol requirements: the frequency accuracy of the radio frequency signal of the base station (including RE) is required to be ±0.05ppm. Since the ...

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Abstract

The present invention relates to a base station remote radio frequency device. The base station remote radio frequency device specifically includes: the base station remote radio frequency device includes: a serial-to-parallel conversion unit, which converts serial signals into parallel signals and sends them to a data processing unit. clock signal to the data processing unit and the clock recovery unit; the clock recovery unit is composed of a hardware phase-locked loop and a software phase-locked loop, and receives the associated clock signal. As a clock reference, the output clock signal of the hardware phase-locked loop is sent to the serial-to-parallel conversion unit and the data processing unit; the output clock signal of the software phase-locked loop is sent to the radio frequency unit; the data processing unit receives the associated clock signal and the clock of the clock recovery unit The signal converts the data from the serial-to-parallel conversion unit from asynchronous to synchronous, and outputs it. The local clock in the device has lower noise and more stable time delay, which can meet the requirements of the communication protocol.

Description

technical field [0001] The invention relates to a base station remote radio frequency device and a clock recovery device in a mobile communication network. Background technique [0002] In the third generation mobile communication system, there is a system structure in which the baseband part and the radio frequency part of the base station are structurally and even geographically separated. In this structure, the radio frequency part of the base station is called a radio equipment (RE, Radio Equipment); the radio frequency control part and the baseband part of the base station are collectively called a radio equipment controller (REC, Radio Equipment Controller). One REC can carry one or more REs to form a distributed base station. REs and RECs can be placed together, or the REs can be placed far away through optical fibers or cables. Because in the distributed base station, the radio frequency device RE of the base station can be placed far away according to the actual ne...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H04Q7/30H03L7/08H04B1/38H04W88/08
Inventor 王珏平
Owner HUAWEI TECH CO LTD
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