CN105144647A - 用于增强型4tx码本的码本子采样的用户设备和方法 - Google Patents

用于增强型4tx码本的码本子采样的用户设备和方法 Download PDF

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CN105144647A
CN105144647A CN201480023271.7A CN201480023271A CN105144647A CN 105144647 A CN105144647 A CN 105144647A CN 201480023271 A CN201480023271 A CN 201480023271A CN 105144647 A CN105144647 A CN 105144647A
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pmi
pucch
codebook subsampling
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CN105144647B (zh
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陈晓刚
朱媛
李庆华
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Apple Inc
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Intel IP Corp
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Abstract

本文一般地描述了用于在3GPP?LTE无线网络中针对增强型4TX码本进行码本子采样的用户设备(UE)和方法的实施例。在一些实施例中,物理上行链路控制信道(PUCCH)被配置用于传输信道状态信息(CSI)反馈,CSI反馈包括秩指示符(RI)和预编码矩阵(W1)。秩指示符(RI)和预编码矩阵(W1)被联合编码,并且针对以下各项中的至少一个针对增强型4Tx码本执行码本子采样:PUCCH?1-1子模式1中的PUCCH报告类型5(RI/第一PMI);PUCCH?1-1子模式2中的PUCCH报告类型2c(CQI/第一PMI/第二PMI);以及PUCCH?2-1中的PUCCH报告类型1a(子带CQI/第二PMI)。

Description

用于增强型4TX码本的码本子采样的用户设备和方法
优先权声明
本申请要求于2013年12月17日提交的美国专利申请序列号No.14/108,648的优先权,该美国专利申请要求于2013年5月31日提交的美国临时专利申请序列号No.61/829,968的优先权,这两个专利申请中的每个申请都以其整体通过引用结合于此。
技术领域
实施例与无线通信有关。一些实施例涉及蜂窝网络(例如根据长期演进(LTE)的3GPP标准(3GPPLTE)中的一个标准进行操作的E-UTRAN网络)中的多输入多输出(MIMO)码本子采样(codebooksubsampling)。
背景技术
闭环MIMO系统通常通过反馈路径将信道状态信息从接收器发送到发送器。信道状态信息可以被用于采用波束形成(beamforming)对当前信道条件进行补偿以增加接收器处的信噪比(SNR)水平。在这些传统系统中的一些传统系统中,波束形成矩阵可以基于信道条件在接收器处被生成。波束形成矩阵然后可以作为反馈被提供给发送器。该反馈消耗带宽,否则消耗的带宽可能可用于数据流量。为了降低与该反馈相关联的开销,可以提供已知的码本的码字,而不是提供实际的波束形成矩阵。码字可以指示哪个波束形成矩阵将被发送器使用。
在MIMO系统中,码本的尺寸可能随发送天线的数量Nt和发送的数据流的数量Ns而显著增加。在一些传统系统中,码本的尺寸可以基于发送天线的数量和数据流的数量。这引起反馈的显著增加。
因此,针对用于具有减少的反馈的波束形成的MIMO系统和方法存在通用的需求。针对可以利用较小的码本的MIMO系统和方法也存在通用的需求。针对提供改善的性能而未增加反馈的MIMO系统和方法也存在通用的需求。
附图说明
图1示出了根据一些实施例的无线网络;以及
图2示出了根据一些实施例的用户设备(UE)的功能框图。
具体实施方式
下面的描述和附图充分地说明了使得本领域技术人员能够实施的具体的实施例。其它实施例可以包含结构、逻辑、电气、过程和其它方面的改变。一些实施例的部分和特征可以被包括在其它实施例的部分和特征中或可以被其它实施例的部分和特征替代。权利要求中提出的实施例涵盖那些权利要求的所有可用的等同形式。
图1示出了根据一些实施例的无线网络。无线网络可以被配置为根据长期演进(LTE)的3GPP标准(3GPPLTE)中的一个标准进行操作。在这些实施例中,无线网络100可以包括一个或多个增强型节点B(eNB)104,该一个或多个eNB104被布置用于与用户设备(UE,例如UE102)进行通信。如下面更详细描述的,UE102可以给eNB104提供反馈103用于执行MIMO波束形成等。
根据一些实施例,UE102可以被布置用于在3GPPLTE网络中对增强型4TX码本进行码本子采样。在这些实施例中,UE102可以配置物理上行链路控制信道(PUCCH)用于传输信道状态信息(CSI)反馈,CSI反馈包括秩指示符(RI)和预编码矩阵(W1),UE102可以对秩指示符(RI)和预编码矩阵(W1)进行联合编码,并且可以针对以下各项针对增强型4Tx码本执行码本子采样:PUCCH1-1子模式1中的PUCCH报告类型5(RI/第一PMI);PUCCH1-1子模式2中的PUCCH报告类型2c(CQI/第一PMI/第二PMI);以及PUCCH2-1中的PUCCH报告类型1a(子带CQI/第二PMI)。下面更详细地描述了这些实施例。
在一些实施例中,针对PUCCH1-1子模式1中的PUCCH报告类型5(RI/第一PMI),当UE102支持最大四层数据传输(即,RI=1、2、3或4)时,UE102可以在至少针对秩指示符二(RI=2)配置CSI传输(例如,见表2-1)之前通过采用码本子采样对R1和W1进行联合编码。
在一些实施例中,当支持最大四层数据传输(例如,见表2-1)时,预编码矩阵索引2、4、6、8、10、12和14被用于RI=2的码本子采样,以将RI反馈的PUCCH有效载荷尺寸限制到5位。
在一些实施例中,当支持最大四层数据传输时,预编码矩阵索引0-7被用于RI=2的码本子采样,以将RI反馈的PUCCH有效载荷尺寸限制到5位(例如,见表2-2)。
在一些实施例中,当支持最大四层数据传输时,预编码矩阵索引0-6和8-14被用于RI=2的码本子采样,以将RI反馈的PUCCH有效载荷尺寸限制到5位(例如,见表3-1)。
在一些实施例中,当支持最大四层数据传输(例如,见表3-1)时,预编码矩阵索引0-13被用于RI=2的码本子采样,以将RI反馈的PUCCH有效载荷尺寸限制到5位。
在一些实施例中,当支持最大两层数据传输(即,RI=1或2)时,RI和W1被联合编码。在这些实施例中,UE102可以阻止执行码本采样(见表1)。
在一些实施例中,当CSI反馈包括信道质量指示符(CQI)和预编码矩阵指示符(PMI)时,UE102可以将PUCCH有效载荷配置为11位用于CSI反馈。当CSI反馈包括RI时,UE102可以将PUCCH有效载荷配置为5位用于CSI反馈。在这些实施例中,只要包括RI(即使无PMI),有效载荷就应该小于或等于5位。
在一些实施例中,针对PUCCH1-1子模式2中的PUCCH报告类型2c(CQI/第一PMI/第二PMI),该方法包括根据表4-1或表4-2执行RI=1或RI=2的码本子采样。
在一些实施例中,针对PUCCH2-1中的PUCCH报告类型1a(子带CQI/第二PMI),该方法包括根据表5、表6或表7执行RI=1、RI=2、RI=3或RI=4的码本子采样。
在一些实施例中,双码本结构可以被用于增强型4Tx码本。提出了如下的两个解决方案用于向下选择:
解决方案2a:
W 1 = X n 0 0 X n 其中,n=0,1,..,15
X n = 1 1 1 1 q 1 n q 1 n + 8 q 1 n + 16 q 1 n + 24 其中,q1=ej2π/32
针对秩1, W 2 , n ∈ { 1 2 Y α ( i ) Y , 1 2 Y j α ( i ) Y , 1 2 Y - α ( i ) Y , 1 2 Y - j α ( i ) Y }
并且Y∈{e1,e2,e3,e4}且α(i)=q1 2(i-1)
针对秩2, W 2 , n ∈ { 1 2 Y 1 Y 2 Y 1 - Y 2 , 1 2 Y 1 Y 2 jY 1 - jY 2 }
并且(Y1,Y2)=(ei,ek)∈{(e1,e1),(e2,e2),(e3,e3),(e4,e4),(e1,e2),(e2,e3),(e1,e4),(e2,e4)}
解决方案2b:
W 1 = X n 0 0 X n 其中,n=0,1,..,15
X n = 1 1 1 1 q 1 n q 1 n + 8 q 1 n + 16 q 1 n + 24 其中q1=ej2π/32
针对秩1, W 2 , n ∈ { 1 2 Y α ( i ) Y , 1 2 Y j α ( i ) Y , 1 2 Y - α ( i ) Y , 1 2 Y - j α ( i ) Y }
并且Y∈{e1,e2,e3,e4}且α(i)=q1 2(i-1)
针对秩2,
W 2 , n ∈ { 1 2 Y 1 Y 2 Y 1 Y 2 , 1 2 Y 1 Y 2 Y 1 - Y 2 , 1 2 Y 1 Y 2 - Y 1 Y 2 , 1 2 Y 1 Y 2 - Y 1 - Y 2 } ( Y 1 , Y 2 ) ∈ { ( e 2 , e 4 ) }
并且
W 2 , n ∈ { 1 2 Y 1 Y 2 Y 1 - Y 2 , 1 2 Y 1 Y 2 jY 1 - jY 2 } ( Y 1 , Y 2 ) ∈ { ( e 1 , e 1 ) , ( e 2 , e 2 ) , ( e 3 , e 3 ) , ( e 4 , e 4 ) }
并且
W 2 , n ∈ { 1 2 Y 1 Y 2 Y 2 - Y 1 , } ( Y 1 , Y 2 ) ∈ { ( e 1 , e 3 ) , ( e 2 , e 4 ) , ( e 3 , e 1 ) , ( e 4 , e 2 ) }
类似于8Tx双码本,码本子采样应该被应用于定期的CSI反馈以满足PUCCH反馈信道容量。本公开提出用于定期CSI反馈中的增强型4Tx码本的码本子采样方案。
根据实施例,为了实现可靠的CSI反馈,PUCCH有效载荷应该仅仅是:
如果当前CSI反馈实例包括CQI/PMI反馈,为11位;
如果当前CSI反馈实例包括RI反馈,为5位。
因而,码本子采样可以被应用于:PUCCH1-1子模式1中的PUCCH报告类型5(RI/第一PMI);PUCCH1-1子模式2中的PUCCH报告类型2c(CQI/第一PMI/第二PMI);PUCCH2-1中的PUCCH报告类型1a(子带CQI/第二PMI);用于增强型4Tx码本。
针对PUCCH1-1子模式1的码本子采样:
由于针对秩3~4增强型4Tx码本重新使用第8版(Rel.8)码本并且W1是单位矩阵,W1的子采样(第一PMI)仅需要考虑秩1~2。为了将PUCCH报告类型5的有效载荷尺寸限制在5位内,可以使用下面的方案:
Alt1):如果UE支持最大2层传输,则不需要子采样。RI和W1可以按表1被联合编码。
表1
如果UE支持的最大层是4,则RI和W1可以按表2-1或表2-2被联合编码。
秩1的原则是保持尽可能多的W1。针对秩2,表2-1被优化以对秩2的W1均匀子采样用于解决方案2a;表2-2被优化用于解决方案2b以避免重复的码字。
要注意的是,表2-1和表2-2还可以被用作统一的解决方案,即使UE支持最大2层传输。
表2-1
表2-2
Alt2):除表2-1和表2-2相应地被变为表3-2和表3-2以有效地使用可以在5位内表示的32个W1假设外,另一替代方式与alt1)相同。
表3-1
表3-2
针对PUCCH1-1子模式2的码本子采样:
由于秩3~4的增强型4Tx码本重新使用第8版码本并且W1是单位矩阵,针对秩3~4,W2可以由4位表示。因而,针对秩3~4中的PUCCH1-1子模式2,不需要子采样。
针对秩1~2,表4-1或表4-2可以被用于码本子采样。秩1的子采样的原则是在eNB的AoD(angleofdeparture,发射角)范围内均匀分布DFT预编码向量。秩2的子采样的原则是保持所有2个可能的共相位(co-phasing),而用W1尽可能多的覆盖eNB的AoD范围。
ei的定义相同,即,ei是4x1向量,其中第i个分量等于1并且其它分量等于0。例如,e1=[1000]’;
表4-1
表4-2
针对PUCCH2-1的码本子采样:
关于PUCCH报告类型1a,即子带CQI/第二PMI报告,可以应用表5或表6或表7的码本子采样。
表5
表6
表7
图2示出了根据一些实施例的UE的功能框图。UE200可以适用于用作UE102(图1)。UE200可以包括物理层电路202,用于使用一个或多个天线201将信号发送到eNB104(图1)和从eNB104接收信号。UE200还可以包括介质访问控制层(MAC)电路204,用于控制对无线介质的访问。UE200还可以包括被布置为执行本文所描述的操作的处理电路206和存储器208。
在一些实施例中,UE200可以是以下便携式无线通信设备的一部分:例如,个人数字助手(PDA)、具有无线通信能力的膝上型计算机或便携式计算机、网络平板、无线电话、智能手机、无线耳机、寻呼机、即时通讯设备、数码相机、接入点、电视、医疗设备(例如,心率监测器、血压监测器等)或可以无线接收和/或发送信息的其它设备。在一些实施例中,UE200可以包括以下各项中的一个或多个:键盘、显示器、非易失性存储器端口、多个天线、图形处理器、应用处理器、扬声器、以及其它移动设备元件。显示器可以是包括触摸屏的LCD屏幕。
由UE200所利用的一个或多个天线201可以包括一个或多个定向天线或全向天线,例如包括偶极天线、单极天线、贴片天线(patchantennas)、环形天线(loopantennas)、微带天线或适用于传输RF信号的其它类型的天线。在一些实施例中,替代两个或多个天线,可以使用具有多个孔径的单个天线。在一些多输入多输出(MIMO)实施例中,天线可以被有效地分离,以利用可在每个天线与发送站的天线之间产生的空间分集和不同的信道特征。在一些MIMO实施例中,这些天线可以被分开高达1/10的波长或更远。
虽然UE200被示出为具有数个独立的功能元件,但是这些功能元件中的一个或多个可以被组合并且可以由软件配置的元件(例如,包括数字信号处理器(DSP)的处理元件)和/或其它硬件元件的组合来实现。例如,一些元件可以包括一个或多个微处理器、DSP、专用集成电路(ASIC)、射频集成电路(RFIC)以及用于执行至少本文所描述的功能的各种硬件和逻辑电路的组合。在一些实施例中,功能元件可以是在一个或多个处理元件上操作的一个或多个处理。
实施例可以在硬件、固件和软件中的一个或其组合中被实现。实施例还可以被实现为存储于计算机可读存储介质上的指令,指令可以由至少一个处理器读取和执行从而执行本文所描述的操作。计算机可读存储介质可以包括用于将信息存储为机器(例如,计算机)可读的形式的任何非暂态机制。例如,计算机可读存储介质可以包括只读存储器(ROM)、随机存取存储器(RAM)、磁盘存储介质、光存储介质、闪速存储器设备、以及其它存储设备和介质。在这些实施例中,一个或多个处理器可以被配置有用于执行本文所描述的操作的指令。
在一些实施例中,UE200可以被配置为根据OFDMA通信技术在多载波通信信道上接收OFDM通信信号。OFDM信号可以包括多个正交子载波。在一些宽带多载波实施例中,eNB(包括宏eNB104和微微(pico)eNB)可以是以下宽带无线接入(BWA)网络通信网络的一部分:例如,全球微波接入互操作性(WiMAX)通信网络或第三代合作伙伴计划(3GPP)通用陆地无线电接入网络(UTRAN)长期演进(LTE)或长期演进(LTE)通信网络,但是本发明的范围不限于此。在这些宽带多载波实施例中,UE200和eNB可以被配置为根据正交频分多址(OFDMA)技术进行通信。
在一些LTE实施例中,无线资源的基本单元是物理资源块(PRB)。PRB可以包括频域中的12个子载波x时域中的0.5ms。PRB可以成对分配(在时域中)。在这些实施例中,RPB可以包括多个资源要素(RE)。RE可以包括一个子载波x一个符号。
eNB可以发送两种类型的参考信号,包括解调制参考信号(DM-RS)、信道状态信息参考信号(CIS-RS)和/或公共参考信号(CRS)。DM-RS可以被UE用于数据解调制。参考信号可以在预定的PRB中被发送。
在一些实施例中,OFDMA技术可以是频域双工(FDD)技术和时域双工(TDD)技术中的一者,其中FDD技术使用不同的上行链路和下行链路频谱,TDD技术使用相同的频谱用于上行链路和下行链路。
在一些实施例中,UE200和eNB可以被配置为传送使用一个或多个其它调制技术(例如,扩频调制(例如,直接序列码分多址(DS-CDMA)和/或跳频码分多址(FH-CDMA))、时分多路复用(TDM)调制、和/或频分多路复用(FDM)调制)被发送的信号,但是实施例的范围不限于此。
在一些LTE实施例中,UE200可以计算数个不同的反馈值,这些不同的反馈值可以被用于执行针对闭环空间多路复用传输模式的信道适应。这些反馈值可以包括信道质量指示符(CQI)、秩指示符(RI)和预编码矩阵指示符(PMI)。通过CQI,发送器选择数个调制符号集和编码速率组合中的一个。RI通知发送器关于当前MIMO信道的有用传输层的数量,并且PMI指示被应用在发送器处的预编码矩阵的码本索引(取决于发送天线的数量)。eNB所使用的编码速率可以基于CQI。PMI可以是由UE计算的并且被报告给eNB的向量。在一些实施例中,UE可以发送包含CQI/PMI或RI的格式2、2a或2b的物理上行链路控制信道(PUCCH)。
在这些实施例中,CQI可以是关于UE200所经历的下行链路移动无线电信道质量的指示。CQI允许UE200向eNB提出针对给定无线电链路质量使用的最佳调制方案和编码速率,从而使得产生的传输块错误率将不超过特定值(例如,10%)。在一些实施例中,UE可以报告带宽CQI值,该值指系统带宽的信道质量。UE还可以报告可以由更高层配置的特定数量资源块的每个子带的子带CQI值。子带的完整的集合可以覆盖系统带宽。在空间多路复用的情况下,可以报告每个码字的CQI。
在一些实施例中,PMI可以指示针对给定无线电条件,eNB所使用的最佳预编码矩阵。PMI值引用码本表。网络配置由PMI报告表示的资源块的数量。在一些实施例中,为了覆盖系统带宽,可以提供多个PMI报告。PMI报告还可以被提供用于闭环空间多路复用、多用户MIMO和闭环秩1预编码MIMO模式。
在一些协作多点(CoMP)实施例中,网络可以被配置用于向UE进行联合传输,其中两个或多个协作/协同点(例如,远程无线电头端(RRH))联合发送。在这些实施例中,联合传输可以是MIMO传输并且协作点被配置为执行联合波束形成。
摘要是为了符合要求摘要允许读者确定本技术公开的性质和主旨的37C.F.R部分1.72(b)而提供的。摘要是按照不被用于限制或解释权利要求的范围或意义的理解而提交的。下面的权利要求因此被合并到详细的描述中,其中每个权利要求自己作为单独的实施例。

Claims (12)

1.一种由用户设备(UE)执行的、用于在3GPPLTE网络中针对增强型4TX码本进行码本子采样的方法,所述方法包括:
配置物理上行链路控制信道(PUCCH)用于传输信道状态信息(CSI)反馈,所述CSI反馈包括秩指示符(RI)和预编码矩阵(W1);
对秩指示符(RI)和预编码矩阵(W1)进行联合编码;以及
针对以下各项中的至少一个,针对增强型4Tx码本执行码本子采样:
PUCCH1-1子模式1中的PUCCH报告类型5(RI/第一PMI);
PUCCH1-1子模式2中的PUCCH报告类型2c(CQI/第一PMI/第二PMI);以及
PUCCH2-1中的PUCCH报告类型1a(子带CQI/第二PMI)。
2.如权利要求1所述的方法,其中,针对PUCCH1-1子模式1中的所述PUCCH报告类型5(RI/第一PMI),当所述UE支持最大四层数据传输时,所述方法包括:在至少针对秩指示符二配置所述CSI传输之前,通过采用码本子采样对所述R1和所述W1进行联合编码。
3.如权利要求2所述的方法,其中,当支持最大四层数据传输时,预编码矩阵索引2、4、6、8、10、12和14被用于RI=2的码本子采样,以将RI反馈的所述PUCCH有效载荷尺寸限制到5位。
4.如权利要求2所述的方法,其中,当支持最大四层数据传输时,预编码矩阵索引0-7被用于RI=2的码本子采样,以将RI反馈的所述PUCCH有效载荷尺寸限制到5位。
5.如权利要求2所述的方法,其中,当支持最大四层数据传输时,预编码矩阵索引0-6和8-14被用于RI=2的码本子采样,以将RI反馈的所述PUCCH有效载荷尺寸限制到5位。
6.如权利要求2所述的方法,其中,当支持最大四层数据传输时,预编码矩阵索引0-13被用于RI=2的码本子采样,以将RI反馈的所述PUCCH有效载荷尺寸限制到5位。
7.如权利要求2所述的方法,其中,当所述UE支持最大两层数据传输时,所述RI和W1被联合编码,并且
其中,所述方法包括阻止执行码本采样。
8.如权利要求2所述的方法,还包括:
当所述CSI反馈包括信道质量指示符(CQI)和预编码矩阵指示符(PMI)时,将PUCCH有效载荷配置为11位用于所述CSI反馈;以及
当所述CSI反馈包括所述RI时,将PUCCH有效载荷配置为5位用于CSI反馈。
9.如权利要求1所述的方法,其中,针对PUCCH1-1子模式2中的PUCCH报告类型2c(CQI/第一PMI/第二PMI),所述方法包括根据表4-1或表4-2执行RI=1或RI=2的码本子采样:
表4-1
表4-2
10.如权利要求1所述的方法,其中,针对PUCCH2-1中的PUCCH报告类型1a(子带CQI/第二PMI),所述方法包括根据表5、表6或表7执行RI=I、RI=2、RI=3或RI=4的码本子采样:
表5
表6
表7
11.一种具有处理电路的用户设备(UE),所述处理电路被布置为当在3GPPLTE网络中操作时针对增强型4TX码本执行码本子采样,所述处理电路被布置为:
配置物理上行链路控制信道(PUCCH)用于传输信道状态信息(CSI)反馈,所述CSI反馈包括秩指示符(RI)和预编码矩阵(W1);
对秩指示符(RI)和预编码矩阵(W1)进行联合编码;以及
针对以下各项中的至少一个,针对增强型4Tx码本执行码本子采样:
PUCCH1-1子模式1中的PUCCH报告类型5(RI/第一PMI);
PUCCH1-1子模式2中的PUCCH报告类型2c(CQI/第一PMI/第二PMI);以及
PUCCH2-1中的PUCCH报告类型1a(子带CQI/第二PMI)。
12.一种存储有指令的非暂态计算机可读存储介质,所述指令用于由一个或多个处理器执行,以执行用于当在3GPPLTE网络中操作时针对增强型4TX码本执行码本子采样的操作,所述操作用于:
配置物理上行链路控制信道(PUCCH)用于传输信道状态信息(CSI)反馈,所述CSI反馈包括秩指示符(RI)和预编码矩阵(W1);
对秩指示符(RI)和预编码矩阵(W1)进行联合编码;以及
针对以下各项中的至少一个,针对增强型4Tx码本执行码本子采样:
PUCCH1-1子模式1中的PUCCH报告类型5(RI/第一PMI);
PUCCH1-1子模式2中的PUCCH报告类型2c(CQI/第一PMI/第二PMI);以及
PUCCH2-1中的PUCCH报告类型1a(子带CQI/第二PMI)。
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