WO2016115894A1 - 一种无线通信系统非授权频谱的频谱共享方法和装置 - Google Patents

一种无线通信系统非授权频谱的频谱共享方法和装置 Download PDF

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WO2016115894A1
WO2016115894A1 PCT/CN2015/087684 CN2015087684W WO2016115894A1 WO 2016115894 A1 WO2016115894 A1 WO 2016115894A1 CN 2015087684 W CN2015087684 W CN 2015087684W WO 2016115894 A1 WO2016115894 A1 WO 2016115894A1
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clean channel
evaluation
channel
clean
mode
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PCT/CN2015/087684
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English (en)
French (fr)
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杨维维
戴博
梁春丽
鲁照华
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中兴通讯股份有限公司
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W16/00Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
    • H04W16/14Spectrum sharing arrangements between different networks

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  • This application relates to, but is not limited to, the field of communications.
  • LTE Long Term Evolution
  • the licensed spectrum will no longer be able to withstand such a huge amount of data. Therefore, deploying LTE in the unlicensed spectrum and sharing the data traffic in the authorized carrier through the unlicensed spectrum is an important evolution direction of the subsequent LTE development.
  • M2M Machine to Machine
  • V2V Vehicle to Vehicle
  • unlicensed spectrum must be used in the form of LBT (listen-before-talk).
  • LBT listen-before-talk
  • FBE Frame Based Equipment
  • LBE Load Based Equipment
  • the process of LBT is as follows: Before transmission, the device needs to perform Clean Channel Assessment (CCA). If the channel is not occupied, Then the data is sent immediately, otherwise the data cannot be transmitted until the next fixed frame period.
  • the fixed frame is composed of a channel Occupancy Time (COT) and an idle period (Idle period), wherein the channel occupancy time is between 1 ms and 10 ms, and the minimum idle period is 5% of the channel occupation time.
  • COT channel Occupancy Time
  • Idle period idle period
  • the LBE process includes an initial CCA (initial CCA) process and an extended CCA (Extended CCA) process.
  • the LBT process is as follows: initial CCA process: Before transmission, the device needs to perform CCA, and judge whether the channel is occupied according to the channel estimation result. If the channel evaluation result indicates that the channel is empty, the data is immediately transmitted. Otherwise, the device cannot transmit data, and performs extended clean channel evaluation: generating a random number N, the value of N is a counter, the value range is [1, q], and then Perform CCA evaluation to determine whether the channel is occupied. If it is occupied, the value of N is unchanged, and the CCA detection is continued.
  • the device performs N times of CCA detection. If the detection channel is empty, the value of N is decremented, otherwise the value of N is unchanged, and data is transmitted when N is decremented to 0.
  • the channel occupancy time specified for the channel occupancy time control is 13 ms.
  • the related art regulation stipulates that the corresponding detection length of the CCA detection, that is, the clean channel evaluation length is not less than 20 us.
  • the present invention provides a spectrum sharing method and apparatus for unlicensed spectrum of a wireless communication system, which can implement coexistence of an LTE system and other non-LTE systems on an unlicensed spectrum.
  • a spectrum sharing method for an unlicensed spectrum in a wireless communication system comprising:
  • the transmitting node corresponding to the first system accesses the unlicensed spectrum in a predefined contention manner, and the transmitting node transmits data on the unlicensed spectrum, wherein the predefined contention manner includes the following One of the formulas:
  • Manner 1 The first clean channel evaluation process, wherein the clean channel evaluation length in the first clean channel evaluation process is variable;
  • Manner 2 The first clean channel assessment process, in which the second clean channel assessment process is also performed.
  • the predefined competition mode further includes one of the following ways:
  • Manner 3 The third clean channel evaluation process is performed first. If the evaluation result is that the channel is occupied, the mode 1 or the mode 2 is performed. If the evaluation result is that the channel is not occupied, the unlicensed spectrum is accessed.
  • Manner 4 The third clean channel evaluation process is performed first. If the evaluation result is that the channel is occupied, the mode 1 or the mode 2 is performed. If the evaluation result is that the channel is not occupied, the third clean channel evaluation is performed. If the result of the evaluation is that the channel is occupied, the mode 1 or the mode 2 is performed. If the result of the evaluation is that the channel is not occupied, the unlicensed spectrum is accessed.
  • the clean channel assessment length in the first clean channel assessment process is variable, including:
  • the length of the clean channel evaluation is determined according to the N, and when the N value is greater than m, the clean channel evaluation length is determined to be X microseconds. And determining that the N value is less than or equal to m, determining that the clean channel evaluation length is Y microseconds, wherein m, X, and Y are preset positive integers greater than 0, and Y is greater than X.
  • the second clean channel assessment process is further performed during the first clean channel assessment process, including:
  • the clean channel evaluation in the second clean channel evaluation process is performed, and if the evaluation result is that the channel is not occupied, Then, the clean channel evaluation in the second clean channel evaluation process is continued, and if the evaluation result is that the channel is occupied, the remaining clean channel evaluation in the first clean channel evaluation process is performed, where n is greater than 0. Integer.
  • the first clean channel assessment process is an extended clean channel assessment process
  • the second clean channel assessment process is an additional initial clean channel assessment process.
  • the third clean channel assessment process is an initial clean channel assessment process.
  • the value of the N is related to one or more of the following information:
  • the clean channel evaluation length corresponding to the second clean channel evaluation process is the same as the clean channel evaluation length corresponding to the third clean channel evaluation process; or the clean channel assessment corresponding to the third clean channel evaluation process The length is greater than the clean channel evaluation length corresponding to the second clean channel evaluation process.
  • the first system is an LTE system.
  • a spectrum sharing device for an unlicensed spectrum in a wireless communication system the device being located at a corresponding transmission node of the first system, the device comprising a first module and a second module, wherein:
  • the first module is configured to: access the unlicensed spectrum in a predefined contention manner
  • the second module is configured to: transmit data on an unlicensed spectrum
  • the predefined competition mode includes one of the following ways:
  • Manner 1 The first clean channel evaluation process, wherein the clean channel evaluation length in the first clean channel evaluation process is variable;
  • Manner 2 The first clean channel assessment process, in which the second clean channel assessment process is also performed.
  • the predefined competition mode further includes one of the following ways:
  • Mode 3 First, the third clean channel evaluation process is performed. If the evaluation result is that the channel is occupied, And performing the mode 1 or the mode 2, if the evaluation result is that the channel is not occupied, accessing the unlicensed spectrum;
  • Manner 4 The third clean channel evaluation process is performed first. If the evaluation result is that the channel is occupied, the mode 1 or the mode 2 is performed. If the evaluation result is that the channel is not occupied, the third clean channel evaluation is performed. If the result of the evaluation is that the channel is occupied, the mode 1 or the mode 2 is performed. If the result of the evaluation is that the channel is not occupied, the unlicensed spectrum is accessed.
  • the first module is configured to adopt a mode
  • the length of the clean channel evaluation is determined according to the N, and when the N value is greater than m, the clean channel evaluation length is determined to be X microseconds. And determining that the N value is less than or equal to m, determining that the clean channel evaluation length is Y microseconds, wherein m, X, and Y are preset positive integers greater than 0, and Y is greater than X.
  • the first module is configured to: when adopting mode 2,
  • the clean channel evaluation in the second clean channel evaluation process is performed, and if the evaluation result is that the channel is not occupied, Then, the clean channel evaluation in the second clean channel evaluation process is continued, and if the evaluation result is that the channel is occupied, the remaining clean channel evaluation in the first clean channel evaluation process is performed, where n is greater than 0. Integer.
  • the first clean channel assessment process is an extended clean channel assessment process; and the second clean channel assessment process is an additional initial clean channel assessment process.
  • the third clean channel assessment process is an initial clean channel assessment process.
  • the clean channel evaluation length corresponding to the second clean channel evaluation process is the same as the clean channel evaluation length corresponding to the third clean channel evaluation process; or the clean channel assessment corresponding to the third clean channel evaluation process The length is greater than the clean channel evaluation length corresponding to the second clean channel evaluation process.
  • a computer readable storage medium storing computer executable instructions for performing the method of any of the above.
  • the embodiments of the present invention solve the problem of coexistence of multiple systems on the unlicensed spectrum, implement friendly coexistence between the LTE system and other non-LTE systems, and fully utilize the idle resources of the non-LTE system in the transmission of the LTE system. Increased resource utilization of unlicensed spectrum for greater data rate transmission.
  • Figure 1 is a flow chart of the first embodiment
  • FIG. 2 is a schematic structural view of a device of Embodiment 2;
  • FIG. 7 is a flowchart of Application Example 3.
  • the embodiment provides a spectrum sharing method for an unlicensed spectrum in a wireless communication system. As shown in FIG. 1 , the method includes:
  • Step 1 The transmission node corresponding to the first system accesses the unlicensed frequency in a predefined contention manner.
  • Step two the transmitting node transmits data on an unlicensed spectrum
  • the predefined competition mode includes one of the following ways:
  • Manner 1 The first clean channel evaluation process, wherein the clean channel evaluation length in the first clean channel evaluation process is variable;
  • the N-th clean channel evaluation performed in the first clean channel evaluation process the length of the clean channel evaluation is determined according to the N, and when the N value is greater than m, the clean channel evaluation length is determined to be X. In microseconds, when it is judged that the value of N is less than or equal to m, it is determined that the clean channel evaluation length is Y microseconds, wherein m, X, and Y are preset positive integers greater than 0, and Y is greater than X.
  • Manner 2 The first clean channel assessment process, in which the second clean channel assessment process is also performed.
  • a clean channel evaluation in the second clean channel evaluation process is performed, if the evaluation result is a channel not If occupied, the clean channel evaluation in the second clean channel evaluation process is continued, and if the evaluation result is that the channel is occupied, the remaining clean channel evaluation in the first clean channel evaluation process is performed, where n is greater than 0. Positive integer.
  • the predefined competition mode further includes one of the following ways:
  • Manner 3 The third clean channel evaluation process is performed first. If the evaluation result is that the channel is occupied, the mode 1 or the mode 2 is performed. If the evaluation result is that the channel is not occupied, the unlicensed spectrum is accessed.
  • Manner 4 The third clean channel evaluation process is performed first. If the evaluation result is that the channel is occupied, the mode 1 or the mode 2 is performed. If the evaluation result is that the channel is not occupied, the third clean channel evaluation is performed. If the result of the evaluation is that the channel is occupied, the mode 1 or the mode 2 is performed. If the result of the evaluation is that the channel is not occupied, the unlicensed spectrum is accessed.
  • the first clean channel assessment process is an extended clean channel assessment process; the second clean channel assessment process is an additional initial clean channel assessment process; and the third clean channel assessment process is an initial clean channel assessment process.
  • the clean channel evaluation length corresponding to the second clean channel evaluation process is the same as the clean channel evaluation length corresponding to the third clean channel evaluation process; or the third clean channel evaluation process is correspondingly clean.
  • the channel evaluation length is greater than the clean channel evaluation length corresponding to the second clean channel evaluation process.
  • This embodiment provides an apparatus for implementing the method of the first embodiment.
  • the apparatus is located at a corresponding transmission node of the first system. As shown in FIG. 2, the apparatus includes a first module 21 and a second module 22, where:
  • the first module 21 is configured to: access the unlicensed spectrum in a predefined contention manner;
  • the second module 22 is configured to: transmit data on an unlicensed spectrum
  • the predefined competition modes include mode one and mode two, and also includes mode three and mode four: refer to the first embodiment for description of each mode.
  • the transport node corresponding to LTE accesses the unlicensed spectrum in a predefined contention mode, and the transport node transmits data on the unlicensed spectrum.
  • the implementation steps are shown in Figure 3:
  • Step 102 Generate a random count N; wherein the value range of N is related to at least one of the following:
  • CCA Clean Channel Assessment
  • Step 106 judging whether the channel is occupied according to the channel evaluation result, if it is occupied, return to step 104; otherwise, proceed to step 108;
  • Step 108; N N-1;
  • Step 110 Determine whether N is greater than 0, if greater than 0, return to step 204, otherwise proceed to step 212;
  • Step 112 Send data.
  • the access mode is still used to access the unlicensed spectrum.
  • the corresponding channel evaluation length in the extended CCA process is still variable in the embodiment, and the first embodiment is the same as the first embodiment.
  • the method can ensure that the detection length of the LTE system and the WIFI system before the access is equal, thereby achieving the friendly coexistence of the LTE system and the WIFI, and the implementation steps are as shown in FIG. 4:
  • Step 202 Generate a random count N, where the value range of N is related to at least one of the following:
  • Step 206 Perform channel estimation by channel estimation length, if the evaluation result is channel occupancy, it is always detected, otherwise proceeds to step 208, optionally, the channel evaluation length is 20 us;
  • Step 208 Perform channel estimation by channel evaluation length. If the evaluation result is channel occupancy, go back to step 204, otherwise go to step 210. Optionally, the channel evaluation length is 20 us.
  • Step 212 Determine whether the value of N is greater than 0, if greater than 0, return to step 208, otherwise proceed to step 214;
  • Step 214 Send data.
  • the third embodiment of the LTE system accesses the unlicensed spectrum: the transport node corresponding to the LTE system performs the third clean channel evaluation process before accessing the unlicensed spectrum in a predefined contention manner, and the third clean channel evaluation process in this embodiment
  • the initial clean channel evaluation process it is determined whether to directly access the unlicensed spectrum or enter other competition modes according to the result of the initial channel estimation process (competition mode 1 or competition mode 2).
  • the LTE system can achieve friendly coexistence with the WIFI system under the full compliance with the existing European regulations, and solve the LTE system and the WIFI system. The collision problem of feeding information.
  • the competition mode entered in this embodiment is competition mode 1, and the implementation steps are as shown in FIG. 5:
  • Step 302 Perform channel estimation by using channel estimation length.
  • the channel evaluation length is greater than 20 us.
  • Step 304 Determine, according to the channel estimation result, whether the channel is occupied. If it is occupied, proceed to step 306, otherwise send data;
  • Step 306 Generate a random count N; wherein the value range of N is related to at least one of the following
  • CCA clean channel assessment
  • Step 310 Determine whether the channel is occupied, if it is occupied, return to step 308; otherwise, proceed to step 312;
  • Step 314 Determine whether N is greater than 0, if greater than 0, return to step 308, otherwise proceed to step 316;
  • Step 316 Send data.
  • the competition mode entered in this embodiment is the competition mode 2, and the implementation steps are as shown in FIG. 6:
  • Step 402 Perform channel estimation by using channel estimation length.
  • the channel evaluation length is greater than 20 us.
  • Step 404 Determine, according to the channel evaluation result, whether the channel is occupied. If it is occupied, proceed to step 406, otherwise send data;
  • Step 406 Generate a random count N; wherein the value range of N is related to at least one of the following
  • Step 410 Perform channel estimation by using the channel evaluation length. If the evaluation result is channel occupancy, it is always detected. Otherwise, the process proceeds to step 412. Optionally, the channel evaluation length is 20 us.
  • Step 412 Perform channel estimation by channel evaluation length. If the evaluation result is channel occupancy, go back to step 408, otherwise go to step 414. Optionally, the channel evaluation length is 20 us.
  • Step 416 Determine whether the value of N is greater than 0, if greater than 0, return to step 412, otherwise proceed to step 418;
  • Step 418 Send data.
  • the transmitting node first performs an initial clean channel evaluation process. If the evaluation result is that the channel is occupied, then the unlicensed spectrum is accessed in either the competitive mode or the competitive mode. Then, an initial channel estimation process is performed, and if the initial channel evaluation result is that the channel is not occupied, the data is transmitted; otherwise, the unlicensed spectrum is accessed in the contention mode 1 or the contention mode 2, wherein the clean channel evaluation corresponding to the initial channel estimation process is performed.
  • the length is the fourth clean channel evaluation length; with the method of the embodiment, the LTE system can achieve friendly coexistence with the WIFI system under the provisions of the existing European regulations, and solve the collision problem of the feedback information of the LTE system and the WIFI system.
  • the competition mode 2 is taken as an example for description, and the implementation steps are as shown in FIG. 7:
  • Step 502 Channel evaluation length for channel estimation, optionally, the clean channel evaluation length is 20 us;
  • Step 504 Determine whether the channel is occupied according to the channel evaluation result, if it is occupied, proceed to step 510, otherwise proceed to step 506;
  • Step 506 Perform channel estimation again by using the channel evaluation length.
  • Step 508 Determine whether the channel is occupied according to the channel evaluation result, and if it is still occupied, proceed to step 510, otherwise send data;
  • Step 510 Generate a random count N; wherein the value range of N is related to at least one of the following:
  • Step 514 Perform channel estimation by channel evaluation length, if the evaluation result is channel occupancy, it is always detected, otherwise proceeds to step 516, and the optional channel evaluation length is 20 us;
  • Step 516 Perform channel estimation by channel estimation length. If the evaluation result is channel occupancy, go back to step 512, otherwise proceed to step 518, and the optional channel evaluation length is 20 us;
  • Step 520 Determine whether the value of N is greater than 0, if greater than 0, return to step 516, otherwise proceed to step 522;
  • Step 522 Send data.
  • all or part of the steps of the above embodiments may also be implemented by using an integrated circuit. These steps may be separately fabricated into individual integrated circuit modules, or multiple modules or steps may be fabricated into a single integrated circuit module. achieve.
  • the devices/function modules/functional units in the above embodiments may be implemented by a general-purpose computing device, which may be centralized on a single computing device or distributed over a network of multiple computing devices.
  • the device/function module/functional unit in the above embodiment When the device/function module/functional unit in the above embodiment is implemented in the form of a software function module and sold or used as a stand-alone product, it can be stored in a computer readable storage medium.
  • the above mentioned computer readable storage medium may be a read only memory, a magnetic disk or an optical disk or the like.
  • the embodiments of the present invention solve the problem of coexistence of multiple systems on the unlicensed spectrum, implement friendly coexistence between the LTE system and other non-LTE systems, and fully utilize the idle resources of the non-LTE system in the transmission of the LTE system. Increased resource utilization of unlicensed spectrum for greater data rate transmission.

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Abstract

本文公布一种无线通信系统非授权频谱的频谱共享方法和装置,所述方法包括:第一系统对应的传输节点以预定义的竞争方式接入非授权频谱,所述传输节点在非授权频谱上传输数据,其中,预定义的竞争方式包括以下方式之一:方式一:第一干净信道评估过程,其中,第一干净信道评估过程中的干净信道评估长度可变;方式二:第一干净信道评估过程,在第一干净信道评估过程中还进行第二干净信道评估过程。

Description

一种无线通信系统非授权频谱的频谱共享方法和装置 技术领域
本申请涉及但不限于通信领域。
背景技术
截止目前,众所周知LTE(Long Term Evolution,长期演进)是部署在授权载波中运营的。但是随着数据业务的快速增长,在不久的将来,授权频谱将不能再承受下如此巨大的数据量。因此,在非授权频谱中部署LTE,通过非授权频谱来分担授权载波中的数据流量,是后续LTE发展的一个重要的演进方向。
另外,对于非授权频谱,也是存在很多优势的:
1、免费或低费用,不需要购买非授权频谱,频谱资源为零成本;
2、准入要求低、成本低,个人、企业都可以参与部署,设备商的设备可以任意;
3、共享资源,多个不同系统都运营其中时或者同一系统的不同运营商运营其中时,通过一些共享资源的方式,提高频谱效率;
4、无线接入技术多;
5、无线接入站点多;
6、应用多,从资料看,多业务被提及可以在其中运营,例如机器对机器(Machine to machine,M2M)、车对车(Vehicle to vehicle,V2V)。
对于非授权频谱的使用,不同国家有着不同的管制,例如在欧洲市场,必须通过先听后说(LBT:listen-before-talk)的方式使用非授权频谱,对于LBT机制,以帧为基础的设备(FBE:Frame Based Equipment)和以负载为基础的设备(LBE:Load Based Equipment)对应的过程是不同的。
对于FBE,LBT的过程如下:在传输之前,设备需要进行干净信道评估(CCA:Clear Channel Assessment),评估结果若为信道没有被占用, 那么立即发送数据,否则直到下一个固定帧周期前,不能传输数据。固定帧由信道占用时间(COT:Channel Occupancy Time)和空闲周期(Idle period)组成,其中信道占用时间在1ms到10ms之间取值,最小的空闲周期为信道占用时间的5%,在空闲周期的最后,设备进行新的CCA检测。
对于LBE,LBE过程包括初始CCA(initial CCA)过程和扩展CCA(Extended CCA)过程,LBT的过程如下:初始CCA过程:在传输之前,设备需要进行CCA,根据信道评估结果判断信道是否被占用,如果信道评估结果表示为信道为空,立即发送数据,否则,设备不能发送数据,并且执行扩展干净信道评估:生成随机数N,N值为一个计数器,取值范围为[1,q],然后进行CCA评估,判断信道是否被占用,如果被占用,则N值不变,继续进行CCA检测,如果信道没有被占用,N值减1,判断N值是否减到0,如果减到0,那么发送数据,否则,继续进行CCA检测。即设备进行N次的CCA检测,如果检测信道为空,N值递减,否则N值不变,当N递减为0时发送数据。对于信道占用时间管制规定最大的信道占用时间为13ms。相关技术的管制还规定,CCA检测对应的检测长度即干净信道评估长度不小于20us。
但是对于非授权频谱,会有多个跨不同的通信标准的系统也工作在相同的频谱上,如WIFI系统、LTE系统。因此,LTE系统工作在非授权频谱上,解决与其他系统的共存问题是至关重要的。
发明内容
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
本文提供了一种无线通信系统非授权频谱的频谱共享方法和装置,能够在非授权频谱上实现LTE系统与其他非LTE系统的共存。
一种无线通信系统中非授权频谱的频谱共享方法,所述方法包括:
第一系统对应的传输节点以预定义的竞争方式接入非授权频谱,所述传输节点在非授权频谱上传输数据,其中,所述预定义的竞争方式包括以下方 式之一:
方式一:第一干净信道评估过程,其中,所述第一干净信道评估过程中的干净信道评估长度可变;
方式二:第一干净信道评估过程,在所述第一干净信道评估过程中还进行第二干净信道评估过程。
可选地,所述预定义的竞争方式还包括以下方式之一:
方式三:先进行第三干净信道评估过程,如果评估结果为信道被占用,则执行所述方式一或者所述方式二,如果评估结果为信道未占用,则接入所述非授权频谱;
方式四:先进行第三干净信道评估过程,如果评估结果为信道被占用,则执行所述方式一或者所述方式二,如果评估结果为信道未占用,则再进行所述第三干净信道评估过程,如果此次评估结果为信道被占用,则执行所述方式一或者所述方式二,如果此次评估结果为信道未占用,则接入所述非授权频谱。
可选地,所述第一干净信道评估过程中的干净信道评估长度可变,包括:
在所述第一干净信道评估过程中进行的N次干净信道评估中,所述干净信道评估的长度根据所述N确定,判断N值大于m时,确定所述干净信道评估长度为X微秒,判断N值小于等于m时,确定所述干净信道评估长度为Y微秒,其中,m、X和Y为大于0的预先设置的正整数,且Y大于X。
可选地,所述在第一干净信道评估过程中还进行第二干净信道评估过程,包括:
在所述第一干净信道评估过程中进行的N次干净信道评估中,当所述N值小于等于n时,进行第二干净信道评估过程中的干净信道评估,如果评估结果为信道未占用,则继续进行所述第二干净信道评估过程中的干净信道评估,如果评估结果为信道被占用,则进行所述第一干净信道评估过程中余下的干净信道评估,其中,n为大于0的正整数。
可选地,所述第一干净信道评估过程为扩展干净信道评估过程;所述第 二干净信道评估过程为额外的初始干净信道评估过程。
可选地,所述第三干净信道评估过程为初始干净信道评估过程。
可选地,所述N的取值与以下信息中的一个或多个有关:
第一系统的帧长;
第一系统上一次传输的传输长度;
第一系统检测到的信道信息;
第一系统检测到的其他站点的传输信息;
第一系统得到的用户设备UE上报的信道状态信息;
第一系统得到的UE上报的其他系统的系统信息。
可选地,所述第二干净信道评估过程对应的干净信道评估长度与所述第三干净信道评估过程对应的干净信道评估长度相同;或者,所述第三干净信道评估过程对应的干净信道评估长度大于所述第二干净信道评估过程对应的干净信道评估长度。
可选地,所述第一系统为LTE系统。
一种无线通信系统中非授权频谱的频谱共享装置,所述装置位于第一系统对应的传输节点,所述装置包括第一模块和第二模块,其中:
所述第一模块,设置为:以预定义的竞争方式接入非授权频谱;
所述第二模块,设置为:在非授权频谱上传输数据;
其中,所述预定义的竞争方式包括以下方式之一:
方式一:第一干净信道评估过程,其中,所述第一干净信道评估过程中的干净信道评估长度可变;
方式二:第一干净信道评估过程,在所述第一干净信道评估过程中还进行第二干净信道评估过程。
可选地,所述预定义的竞争方式还包括以下方式之一:
方式三:先进行第三干净信道评估过程,如果评估结果为信道被占用, 则执行所述方式一或者所述方式二,如果评估结果为信道未占用,则接入所述非授权频谱;
方式四:先进行第三干净信道评估过程,如果评估结果为信道被占用,则执行所述方式一或者所述方式二,如果评估结果为信道未占用,则再进行所述第三干净信道评估过程,如果此次评估结果为信道被占用,则执行所述方式一或者所述方式二,如果此次评估结果为信道未占用,则接入所述非授权频谱。
可选地,所述第一模块是设置为:采用方式一时,
在所述第一干净信道评估过程中进行的N次干净信道评估中,所述干净信道评估的长度根据所述N确定,判断N值大于m时,确定所述干净信道评估长度为X微秒,判断N值小于等于m时,确定所述干净信道评估长度为Y微秒,其中,m、X和Y为大于0的预先设置的正整数,且Y大于X。
可选地,所述第一模块是设置为:采用方式二时,
在所述第一干净信道评估过程中进行的N次干净信道评估中,当所述N值小于等于n时,进行第二干净信道评估过程中的干净信道评估,如果评估结果为信道未占用,则继续进行所述第二干净信道评估过程中的干净信道评估,如果评估结果为信道被占用,则进行所述第一干净信道评估过程中余下的干净信道评估,其中,n为大于0的正整数。
可选地,所述第一干净信道评估过程为扩展干净信道评估过程;所述第二干净信道评估过程为额外的初始干净信道评估过程。
可选地,所述第三干净信道评估过程为初始干净信道评估过程。
可选地,所述第二干净信道评估过程对应的干净信道评估长度与所述第三干净信道评估过程对应的干净信道评估长度相同;或者,所述第三干净信道评估过程对应的干净信道评估长度大于所述第二干净信道评估过程对应的干净信道评估长度。
一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令用于执行上述任一项的方法。
通过本发明实施例,解决非授权频谱上多个系统共存的问题,实现LTE系统与其他非LTE系统的友好共存,并且,能够充分的将非LTE系统的空闲资源用在LTE系统的传输上,提高了非授权频谱的资源利用率,实现更大数据速率传输。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
图1为实施例一流程图;
图2为实施例二装置结构示意图;
图3为应用示例一的实施例一的流程图;
图4为应用示例一的实施例三的流程图;
图5为应用示例二的实施例一的流程图;
图6为应用示例二的实施例二的流程图;
图7为应用示例三的流程图。
本发明的实施方式
下文中将结合附图对本发明的实施方式进行详细说明。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互任意组合。
在附图的流程图示出的步骤可以在诸如一组计算机可执行指令的计算机系统中执行。并且,虽然在流程图中示出了逻辑顺序,但是在某些情况下,可以以不同于此处的顺序执行所示出或描述的步骤。
实施例一
本实施例提供一种无线通信系统中非授权频谱的频谱共享方法,如图1所示,包括:
步骤一,第一系统对应的传输节点以预定义的竞争方式接入非授权频 谱;
步骤二,所述传输节点在非授权频谱上传输数据;
其中,所述预定义的竞争方式包括以下方式之一:
方式一:第一干净信道评估过程,其中,所述第一干净信道评估过程中的干净信道评估长度可变;
其中,在所述第一干净信道评估过程中进行的N次干净信道评估中,所述干净信道评估的长度根据所述N确定,判断N值大于m时,确定所述干净信道评估长度为X微秒,判断N值小于等于m时,确定所述干净信道评估长度为Y微秒,其中,m、X和Y为大于0的预先设置的正整数,且Y大于X。
方式二:第一干净信道评估过程,在所述第一干净信道评估过程中还进行第二干净信道评估过程。
其中,在所述第一干净信道评估过程中进行的N次干净信道评估中,当所述N值小于等于n时,进行第二干净信道评估过程中的干净信道评估,如果评估结果为信道未占用,则继续进行所述第二干净信道评估过程中的干净信道评估,如果评估结果为信道被占用,则进行所述第一干净信道评估过程中余下的干净信道评估,其中,n为大于0的正整数。
在一个实施例中,该预定义的竞争方式还包括以下方式之一:
方式三:先进行第三干净信道评估过程,如果评估结果为信道被占用,则执行所述方式一或者所述方式二,如果评估结果为信道未占用,则接入所述非授权频谱;
方式四:先进行第三干净信道评估过程,如果评估结果为信道被占用,则执行所述方式一或者所述方式二,如果评估结果为信道未占用,则再进行所述第三干净信道评估过程,如果此次评估结果为信道被占用,则执行所述方式一或者所述方式二,如果此次评估结果为信道未占用,则接入所述非授权频谱。
在一个实施例中,上述第一干净信道评估过程为扩展干净信道评估过程;第二干净信道评估过程为额外的初始干净信道评估过程;第三干净信道评估过程为初始干净信道评估过程。
在一个实施例中,所述第二干净信道评估过程对应的干净信道评估长度与所述第三干净信道评估过程对应的干净信道评估长度相同;或者,所述第三干净信道评估过程对应的干净信道评估长度大于所述第二干净信道评估过程对应的干净信道评估长度。
实施例二
本实施例提供实现实施例一方法的装置,该装置位于第一系统对应的传输节点,如图2所示,该装置包括第一模块21和第二模块22,其中:
所述第一模块21,设置为:以预定义的竞争方式接入非授权频谱;
所述第二模块22,设置为:在非授权频谱上传输数据;
预定义的竞争方式包括方式一、方式二,还包括方式三和方式四:各方式描述参见实施例一。
应用示例一:
LTE对应的传输节点以预定义的竞争方式接入非授权频谱,传输节点在非授权频谱上传输数据。
实施例一
本实施例采用竞争方式一接入非授权频谱:扩展干净信道评估(Extended CCA:Extended Clear Channel Assessment)过程中对应的信道评估长度可变:当扩展干净信道评估过程中的随机计数N的值大于m时,信道评估长度为X us,当N的值小于等于m时,信道评估长度为Y us;其中,m,X和Y为大于0的正整数,Y大于X;可选的,m=1,X=20,Y=40;采用本实施例方法可以保证在接入前LTE系统和WIFI系统的检测长度相当,从而达到LTE系统和WIFI系统的友好共存。实现步骤如图3所示:
步骤102:生成随机计数N;其中N的取值范围与以下至少之一有关:
LTE系统的帧长;
LTE系统上一次传输的传输长度;
LTE系统检测到的信道信息;
LTE系统检测到的其他站点的传输信息;
LTE系统得到的UE(User Equipment,用户设备)上报的信道状态信息;
LTE系统得到的UE上报的其他系统的系统信息;
步骤104:根据N值,确定扩展干净信道评估过程中干净信道评估(CCA:Clear Channel Assessment)的净信道评估长度;当N大于m时,信道评估长度为X us,当N小于等于m时,信道评估长度为Y us,可选的,m=1,X=20,Y=40;根据得到的CCA长度进行信道评估;
步骤106:根据信道评估结果判断信道是否被占用,如果占用,回到步骤104;否则进入步骤108;
步骤108;N=N-1;
步骤110:判断N是否大于0,如果大于0,回到步骤204,否则进入步骤212;
步骤112:发送数据。
实施例二
本实施例仍采用竞争方式一接入非授权频谱,与实施例一相同的是本实施例中扩展干净信道评估(Extended CCA)过程中对应的信道评估长度仍然是可变的,与实施例一的区别在于,当扩展干净信道评估过程中的随机计数N的值为m时,确定信道评估长度为X us,否则确定信道评估长度为Y us,可选的,X=20,Y=40,m为大于0的正整数。
实施例三
本实施例采用竞争方式二接入非授权频谱:扩展干净信道评估过程中还需要进行额外的初始干净信道评估过程:当扩展干净信道评估过程中的随机计数N的值小于等于n,先进行额外初始干净信道评估过程再进行扩展干净信道评估过程,其中,n为大于0的正整数;可选的,n=1,采用本实施例方 法可以保证在接入前LTE系统和WIFI系统的检测长度相当,从而达到LTE系统和WIFI的友好共存,实现步骤如图4所示:
步骤202:生成随机计数N,其中N的取值范围与以下至少之一有关:
LTE系统的帧长;
LTE系统上一次传输的传输长度;
LTE系统检测到的信道信息;
LTE系统检测到的其他站点的传输信息;
LTE系统得到的UE上报的信道状态信息;
LTE系统得到的UE上报的其他系统的系统信息;
步骤204:判断N值是否大于n;如N大于n,进入步骤208,否则进入步骤206,可选的,n=1;
步骤206:以信道评估长度进行信道评估,如果评估结果为信道占用,则一直检测,否则进入步骤208,可选的,信道评估长度为20us;
步骤208:以信道评估长度进行信道评估,如果评估结果为信道占用,回到步骤204,否则进行步骤210,可选的,信道评估长度为20us;
步骤210:N=N-1;
步骤212:判断N值是否大于0,如果大于0,回到步骤208,否则进入步骤214;
步骤214:发送数据。
应用示例二
本实施例采用竞争方式三接入非授权频谱:LTE系统对应的传输节点以预定义的竞争方式接入非授权频谱之前先进行第三干净信道评估过程,本实施例中第三干净信道评估过程为初始干净信道评估过程,根据初始信道评估过程的结果确定是直接接入非授权频谱还是进入其他竞争方式(竞争方式一或竞争方式二)。采用本实施例方法,LTE系统在完全遵守已有欧洲法规的规定下可以达到和WIFI系统的友好共存,并且解决LTE系统和WIFI系统反 馈信息的碰撞问题。
实施例一
本实施例中进入的竞争方式为竞争方式一,实现步骤如图5所示:
步骤302:以信道评估长度进行信道评估,可选的,信道评估长度大于20us;
步骤304:根据信道评估结果判断信道是否被占用,如果占用,进行步骤306,否则发送数据;
步骤306:生成随机计数N;其中N的取值范围与以下至少之一有关
LTE系统的帧长;
LTE系统上一次传输的传输长度;
LTE系统检测到的信道信息;
LTE系统检测到的其他站点的传输信息;
LTE系统得到的UE上报的信道状态信息;
LTE系统得到的UE上报的其他系统的系统信息;
步骤308:根据N值,确定扩展干净信道评估过程中干净信道评估(CCA)的信道评估长度;当N大于m时,信道评估长度为X us,当N小于等于m时,信道评估长度为Y us,可选的,m=1,X=20,Y=40;根据得到的CCA长度进行信道评估;
步骤310:判断信道是否被占用,如果占用,回到步骤308;否则进入步骤312;
步骤312;N=N-1;
步骤314:判断N是否大于0,如果大于0,回到步骤308,否则进入步骤316;
步骤316:发送数据。
实施例二
本实施例中进入的竞争方式为竞争方式二,实现步骤如图6所示:
步骤402:以信道评估长度进行信道评估,可选的,信道评估长度大于20us;
步骤404:根据信道评估结果判断信道是否被占用,如果占用,进行步骤406,否则发送数据;
步骤406:生成随机计数N;其中N的取值范围与以下至少之一有关
LTE系统的帧长;
LTE系统上一次传输的传输长度;
LTE系统检测到的信道信息;
LTE系统检测到的其他站点的传输信息;
LTE系统得到的UE上报的信道状态信息;
LTE系统得到的UE上报的其他系统的系统信息;
步骤408:判断N值是否大于n;如N大于n,进入步骤412,否则进入步骤410,可选的,n=1;
步骤410:以信道评估长度进行信道评估,如果评估结果为信道占用,则一直检测,否则进入步骤412,可选的,信道评估长度为20us;
步骤412:以信道评估长度进行信道评估,如果评估结果为信道占用,回到步骤408,否则进行步骤414,可选的,信道评估长度为20us;
步骤414:N=N-1;
步骤416:判断N值是否大于0,如果大于0,回到步骤412,否则进入步骤418;
步骤418:发送数据。
应用示例三
在本实施例中,传输节点首先进行初始干净信道评估过程,如果评估结果为信道被占用,那么再以竞争方式一或者竞争方式二接入非授权频谱,否 则再进行一次初始信道评估过程,如果初始信道评估结果为信道没有被占用,那么就发送数据;否则以竞争方式一或者竞争方式二接入非授权频谱,其中初始信道评估过程对应的干净信道评估长度为第四干净信道评估长度;采用本实施例方法,LTE系统在完全遵守已有欧洲法规的规定下可以达到和WIFI系统的友好共存,并且解决LTE系统和WIFI系统反馈信息的碰撞问题。
本实施例中以采用竞争方式二为例进行说明,实施步骤如图7所示:
步骤502:信道评估长度进行信道评估,可选的,干净信道评估长度为20us;
步骤504:根据信道评估结果判断信道是否被占用,如果占用,进行步骤510,否则进入步骤506;
步骤506:以信道评估长度再进行信道评估;
步骤508:根据信道评估结果判断信道是否被占用,如果仍占用,进行步骤510,否则发送数据;
步骤510:生成随机计数N;其中N的取值范围与以下至少之一有关:
LTE系统的帧长;
LTE系统上一次传输的传输长度;
LTE系统检测到的信道信息;
LTE系统检测到的其他站点的传输信息;
LTE系统得到的UE上报的信道状态信息;
LTE系统得到的UE上报的其他系统的系统信息;
步骤512:判断N值是否大于n;如N大于n,进入步骤516,否则进入步骤514,可选的,n=1;
步骤514:以信道评估长度进行信道评估,如果评估结果为信道占用,则一直检测,否则进入步骤516,可选的信道评估长度为20us;
步骤516:以信道评估长度进行信道评估,如果评估结果为信道占用,回到步骤512,否则进行步骤518,可选的信道评估长度为20us;
步骤518:N=N-1;
步骤520:判断N值是否大于0,如果大于0,回到步骤516,否则进入步骤522;
步骤522:发送数据。
本领域普通技术人员可以理解上述实施例的全部或部分步骤可以使用计算机程序流程来实现,所述计算机程序可以存储于一计算机可读存储介质中,所述计算机程序在相应的硬件平台上(如系统、设备、装置、器件等)执行,在执行时,包括方法实施例的步骤之一或其组合。
可选地,上述实施例的全部或部分步骤也可以使用集成电路来实现,这些步骤可以被分别制作成一个个集成电路模块,或者将它们中的多个模块或步骤制作成单个集成电路模块来实现。
上述实施例中的装置/功能模块/功能单元可以采用通用的计算装置来实现,它们可以集中在单个的计算装置上,也可以分布在多个计算装置所组成的网络上。
上述实施例中的装置/功能模块/功能单元以软件功能模块的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。上述提到的计算机可读取存储介质可以是只读存储器,磁盘或光盘等。
工业实用性
通过本发明实施例,解决非授权频谱上多个系统共存的问题,实现LTE系统与其他非LTE系统的友好共存,并且,能够充分的将非LTE系统的空闲资源用在LTE系统的传输上,提高了非授权频谱的资源利用率,实现更大数据速率传输。

Claims (15)

  1. 一种无线通信系统中非授权频谱的频谱共享方法,所述方法包括:
    第一系统对应的传输节点以预定义的竞争方式接入非授权频谱,所述传输节点在非授权频谱上传输数据,其中,所述预定义的竞争方式包括以下方式之一:
    方式一:第一干净信道评估过程,其中,所述第一干净信道评估过程中的干净信道评估长度可变;
    方式二:第一干净信道评估过程,在所述第一干净信道评估过程中还进行第二干净信道评估过程。
  2. 根据权利要求1所述的方法,其中,
    所述预定义的竞争方式还包括以下方式之一:
    方式三:先进行第三干净信道评估过程,如果评估结果为信道被占用,则执行所述方式一或者所述方式二,如果评估结果为信道未占用,则接入所述非授权频谱;
    方式四:先进行第三干净信道评估过程,如果评估结果为信道被占用,则执行所述方式一或者所述方式二,如果评估结果为信道未占用,则再进行所述第三干净信道评估过程,如果此次评估结果为信道被占用,则执行所述方式一或者所述方式二,如果此次评估结果为信道未占用,则接入所述非授权频谱。
  3. 根据权利要求1所述的方法,其中,
    所述第一干净信道评估过程中的干净信道评估长度可变,包括:
    在所述第一干净信道评估过程中进行的N次干净信道评估中,所述干净信道评估的长度根据所述N确定,判断N值大于m时,确定所述干净信道评估长度为X微秒,判断N值小于等于m时,确定所述干净信道评估长度为Y微秒,其中,m、X和Y为大于0的预先设置的正整数,且Y大于X。
  4. 根据权利要求1所述的方法,其中,
    所述在第一干净信道评估过程中还进行第二干净信道评估过程,包括:
    在所述第一干净信道评估过程中进行的N次干净信道评估中,当所述N值小于等于n时,进行第二干净信道评估过程中的干净信道评估,如果评估结果为信道未占用,则继续进行所述第二干净信道评估过程中的干净信道评估,如果评估结果为信道被占用,则进行所述第一干净信道评估过程中余下的干净信道评估,其中,n为大于0的正整数。
  5. 根据权利要求1-4中任一权利要求所述的方法,其中,
    所述第一干净信道评估过程为扩展干净信道评估过程;所述第二干净信道评估过程为额外的初始干净信道评估过程。
  6. 根据权利要求2所述的方法,其中,
    所述第三干净信道评估过程为初始干净信道评估过程。
  7. 根据权利要求3或4所述的方法,其中,
    所述N的取值与以下信息中的一个或多个有关:
    第一系统的帧长;
    第一系统上一次传输的传输长度;
    第一系统检测到的信道信息;
    第一系统检测到的其他站点的传输信息;
    第一系统得到的用户设备UE上报的信道状态信息;
    第一系统得到的UE上报的其他系统的系统信息。
  8. 根据权利要求2所述的方法,其中,
    所述第二干净信道评估过程对应的干净信道评估长度与所述第三干净信道评估过程对应的干净信道评估长度相同;或者,所述第三干净信道评估过程对应的干净信道评估长度大于所述第二干净信道评估过程对应的干净信道评估长度。
  9. 一种无线通信系统中非授权频谱的频谱共享装置,所述装置位于第一系统对应的传输节点,所述装置包括第一模块和第二模块,其中:
    所述第一模块,设置为:以预定义的竞争方式接入非授权频谱;
    所述第二模块,设置为:在非授权频谱上传输数据;
    其中,所述预定义的竞争方式包括以下方式之一:
    方式一:第一干净信道评估过程,其中,所述第一干净信道评估过程中的干净信道评估长度可变;
    方式二:第一干净信道评估过程,在所述第一干净信道评估过程中还进行第二干净信道评估过程。
  10. 根据权利要求8所述的装置,其中,
    所述预定义的竞争方式还包括以下方式之一:
    方式三:先进行第三干净信道评估过程,如果评估结果为信道被占用,则执行所述方式一或者所述方式二,如果评估结果为信道未占用,则接入所述非授权频谱;
    方式四:先进行第三干净信道评估过程,如果评估结果为信道被占用,则执行所述方式一或者所述方式二,如果评估结果为信道未占用,则再进行所述第三干净信道评估过程,如果此次评估结果为信道被占用,则执行所述方式一或者所述方式二,如果此次评估结果为信道未占用,则接入所述非授权频谱。
  11. 根据权利要求10所述的装置,其中,
    所述第一模块是设置为:采用方式一时,在所述第一干净信道评估过程中进行的N次干净信道评估中,所述干净信道评估的长度根据所述N确定,判断N值大于m时,确定所述干净信道评估长度为X微秒,判断N值小于等于m时,确定所述干净信道评估长度为Y微秒,其中,m、X和Y为大于0的预先设置的正整数,且Y大于X。
  12. 根据权利要求9所述的装置,其中,
    所述第一模块是设置为:采用方式二时,在所述第一干净信道评估过程中进行的N次干净信道评估中,当所述N值小于等于n时,进行第二干净信道评估过程中的干净信道评估,如果评估结果为信道未占用,则继续进行所述第二干净信道评估过程中的干净信道评估,如果评估结果为信道被占用,则进行所述第一干净信道评估过程中余下的干净信道评估,其中,n为大于0的正整数。
  13. 根据权利要求9-12中任一权利要求所述的装置,其中,
    所述第一干净信道评估过程为扩展干净信道评估过程;所述第二干净信道评估过程为额外的初始干净信道评估过程。
  14. 根据权利要求10所述的装置,其中,
    所述第三干净信道评估过程为初始干净信道评估过程。
  15. 一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令用于执行权利要求1-8任一项的方法。
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