JP5389894B2 - 無線通信システムにおけるアンテナダイバーシティを与える方法および装置 - Google Patents
無線通信システムにおけるアンテナダイバーシティを与える方法および装置 Download PDFInfo
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- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
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- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/0001—Systems modifying transmission characteristics according to link quality, e.g. power backoff
- H04L1/0023—Systems modifying transmission characteristics according to link quality, e.g. power backoff characterised by the signalling
- H04L1/0026—Transmission of channel quality indication
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- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/0413—MIMO systems
- H04B7/0456—Selection of precoding matrices or codebooks, e.g. using matrices antenna weighting
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/06—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
- H04B7/0602—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using antenna switching
- H04B7/0608—Antenna selection according to transmission parameters
- H04B7/061—Antenna selection according to transmission parameters using feedback from receiving side
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/06—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
- H04B7/0613—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
- H04B7/0667—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of delayed versions of same signal
- H04B7/0671—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of delayed versions of same signal using different delays between antennas
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/06—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
- H04B7/0686—Hybrid systems, i.e. switching and simultaneous transmission
- H04B7/0691—Hybrid systems, i.e. switching and simultaneous transmission using subgroups of transmit antennas
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/02—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas
- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/06—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
- H04B7/0697—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using spatial multiplexing
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/02—Arrangements for detecting or preventing errors in the information received by diversity reception
- H04L1/06—Arrangements for detecting or preventing errors in the information received by diversity reception using space diversity
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/20—Arrangements for detecting or preventing errors in the information received using signal quality detector
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W52/00—Power management, e.g. TPC [Transmission Power Control], power saving or power classes
- H04W52/04—TPC
- H04W52/38—TPC being performed in particular situations
- H04W52/42—TPC being performed in particular situations in systems with time, space, frequency or polarisation diversity
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L27/00—Modulated-carrier systems
- H04L27/26—Systems using multi-frequency codes
- H04L27/2601—Multicarrier modulation systems
- H04L27/2602—Signal structure
- H04L27/26035—Maintenance of orthogonality, e.g. for signals exchanged between cells or users, or by using covering codes or sequences
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- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02D—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
- Y02D30/00—Reducing energy consumption in communication networks
- Y02D30/70—Reducing energy consumption in communication networks in wireless communication networks
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Description
なお、i=1,...,Tの場合、hi(k)は、サブキャリアkに対する送信アンテナiと単一の受信アンテナとの間の結合または複素チャネル利得を示す。
・空間ダイバーシティ次数(D)−送信される出力シンボルによって観察される空間ダイバーシティの量
・チャネル推定オーバヘッド次数(C)−各受信アンテナに対して受信機によって推定される仮想アンテナの数
全体的に、M≦min{T,R}、D≦T、およびC≦Tである。空間ダイバーシティは、複数の送信アンテナの使用から生じる送信ダイバーシティを指し、複数の受信アンテナの使用から生じる受信ダイバーシティを含まない。
なお、s(k)は、1つのシンボル周期においてサブキャリアkで送信されるM個の出力シンボルを含むM×1ベクトルであり、
P(k)は、サブキャリアkに対するV×M置換行列であり、
U=〔u 1 u 2...u V〕は、T×V正規直交行列であり、
x(k)は、1つのシンボル周期においてサブキャリアkでT個の送信アンテナから送信されるT個の送信シンボルを含むT×1ベクトルである。
=H(k)・U・P(k)・s(k)+n(k)
=H eff(k)・P(k)・s(k)+n(k)
=H used(k)・s(k)+n(k) 式(4)
なお、r(k)は、1つのシンボル周期においてサブキャリアkでR個の受信アンテナからのR個の受信されたシンボルを含むR×1ベクトルであり、
H eff(k)は、サブキャリアkに対するR×V有効チャネル応答行列であり、
H used(k)は、サブキャリアkに対するR×M使用チャネル応答行列であり、 n(k)は、サブキャリアkに対するR×1雑音ベクトルである。
=〔H(k)・u 1 H(k)・u 2...H(k)・u V〕 式(5)
H used(k)=H eff(k)・P(k)
=〔H(k)・u (1) H(k)・u (2)...H(k)・u (M)〕 式(6)
なお、{u (1) u (2)...u (M)}⊂{u 1 u 2...u V}である。
なお、Fは、T×Tフーリエ行列の最初のV行を含むT×V行列であり、
Λは、FのT行に対するTのスケーリング値を含むT×T対角行列である。
・仮想アンテナの数を容易に選択する柔軟性、
・任意の数の出力シンボルを利用可能な仮想アンテナ数以下で送信する柔軟性、および、
・送信される出力シンボルの数および利用可能な仮想アンテナの数に関係なく、T個の送信アンテナのすべてを送信に利用すること、を有する。
以下に本件出願当初の特許請求の範囲に記載された発明を付記する。
[1]
V個の仮想アンテナの中から送信に使用するM個の仮想アンテナを選択し、出力シンボルをM個の仮想アンテナにマップし、マップされた出力シンボルを供給して、T個の送信アンテナから送信するように構成されている少なくとも1つのプロセッサであって、Mは1に等しいか、または1より大きく、VはMに等しいか、またはMより大きく、TはVに等しいか、またはVより大きい、少なくとも1つのプロセッサと、
少なくとも1つのプロセッサに結合されたメモリと、を含む装置。
[2]
少なくとも1つのプロセッサは、V個の仮想アンテナの中から、異なる周波数のサブキャリアに対するM個の仮想アンテナの異なるセットを選択するように構成されている[1]に記載の装置。
[3]
少なくとも1つのプロセッサは、V個の仮想アンテナを巡回することによって、複数の周波数のサブキャリアのそれぞれに対するM個の仮想アンテナのセットを選択するように構成されている[1]に記載の装置。
[4]
少なくとも1つのプロセッサは、V個の仮想アンテナの中から選択されるM個の仮想アンテナを表す置換行列を形成し、置換行列を出力シンボルに適用し、V個の仮想アンテナを形成するのに使用される正規直交行列を適用するように構成されている[1]に記載の装置。
[5]
少なくとも1つのプロセッサは、周波数のサブキャリアの第1のセットに割り当てられた第1の受信機に対して、V個の仮想アンテナの中から1つの仮想アンテナを選択し、周波数のサブキャリアの第2のセットに割り当てられた第2の受信機に対して、V個の仮想アンテナの中から2つ以上の仮想アンテナを選択し、第1の受信機に対する出力シンボルを1つの仮想アンテナの周波数のサブキャリアの第1のセットにマップし、第2の受信機に対する出力シンボルを2つ以上の仮想アンテナの周波数のサブキャリアの第2のセットにマップするように構成されている[1]に記載の装置。
[6]
少なくとも1つのプロセッサは、T個の送信アンテナにT個の異なる巡回遅延を適用するように構成されている[1]に記載の装置。
[7]
少なくとも1つのプロセッサは、M個の利得によってM個の仮想アンテナに対する出力シンボルをスケールするように構成されている[1]に記載の装置。
[8]
少なくとも1つのプロセッサは、V個の仮想アンテナの中の第1の仮想アンテナで第1のパイロットを送信し、V個の仮想アンテナの中の残りの仮想アンテナで第2のパイロットを送信するように構成されている[1]に記載の装置。
[9]
少なくとも1つのプロセッサは、第1の仮想アンテナの周波数のサブキャリアの第1のセットで第1のパイロットを送信し、V個の仮想アンテナの中の残りの仮想アンテナを巡回することによって周波数のサブキャリアの第2のセットで第2のパイロットを送信するように構成されている[8]に記載の装置。
[10]
少なくとも1つのプロセッサは、パイロットパターンに基づいて選択される少なくとも1つのシンボル周期において少なくとも1つの周波数のサブキャリアでパイロットシンボルを送信するように構成されている[1]に記載の装置。
[11]
少なくとも1つのプロセッサは、V個の仮想アンテナを形成するために利用可能な複数の正規直交行列の中から、正規直交行列を選択するように構成されている[1]に記載の装置。
[12]
少なくとも1つのプロセッサは、V個の仮想アンテナを形成するために利用可能な複数の正規直交行列の中から、正規直交行列を選択するフィードバックを受信するように構成されている[1]に記載の装置。
[13]
少なくとも1つのプロセッサは、マップされた出力シンボルに基づいて、T個の送信アンテナに対する直交周波数分割多重化(OFDM)シンボルを生成するように構成されている[1]に記載の装置。
[14]
少なくとも1つのプロセッサは、マップされた出力シンボルに基づいて、T個の送信アンテナに対するシングルキャリア周波数分割多元接続(SC−FDMA)シンボルを生成するように構成されている[1]に記載の装置。
[15]
少なくとも1つのプロセッサは、チャネル状態に基づいて、Mを動的に選択するように構成されている[1]に記載の装置。
[16]
少なくとも1つのプロセッサは、チャネル状態に基づいて、Vを動的に選択するように構成されている[1]に記載の装置。
[17]
V個の仮想アンテナを形成するのに使用される正規直交行列は、等しい送信電力がT個の送信アンテナに使用されるように定義される[1]に記載の装置。
[18]
V個の仮想アンテナを形成するのに使用される正規直交行列は、フーリエ行列またはウォルシュ行列に基づく[1]に記載の装置。
[19]
V個の仮想アンテナを形成するのに使用される正規直交行列は、異なるランダム位相によってフーリエ行列またはウォルシュ行列をスケールすることに基づく[1]に記載の装置。
[20]
V個の仮想アンテナの中から送信に使用するM個の仮想アンテナを選択するステップであって、Mは1であるか、または1より大きく、VはMに等しいか、またはMより大きいステップと、
出力シンボルをM個の仮想アンテナにマップするステップと、
マップされた出力シンボルを供給して、T個の送信アンテナから送信するステップであって、TはVに等しいか、またはVより大きいステップと、を含む方法。
[21]
V個の仮想アンテナの中から、異なる周波数のサブキャリアに対するM個の仮想アンテナの異なるセットを選択するステップとをさらに含む[20]に記載の方法。
[22]
T個の送信アンテナにT個の異なる巡回遅延を適用するステップをさらに含む[20]に記載の方法。
[23]
M個の仮想アンテナでパイロットを送信するステップをさらに含む[20]に記載の方法。
[24]
V個の仮想アンテナの中から送信に使用するM個の仮想アンテナを選択する手段であって、Mは1であるか、または1より大きく、VはMに等しいか、またはMより大きい手段と、
出力シンボルをM個の仮想アンテナにマップする手段と、
マップされた出力シンボルを供給して、T個の送信アンテナから送信する手段であって、TはVに等しいか、またはVより大きい手段と、を含む装置。
[25]
V個の仮想アンテナの中から、異なる周波数のサブキャリアに対するM個の仮想アンテナの異なるセットを選択する手段をさらに含む[24]に記載の装置。
[26]
T個の送信アンテナにT個の異なる巡回遅延を適用する手段をさらに含む[24]に記載の装置。
[27]
M個の仮想アンテナでパイロットを送信する手段をさらに含む[24]に記載の装置。
[28]
V個の仮想アンテナの中から第1の受信機への送信に使用するM1個の仮想アンテナを選択し、V個の仮想アンテナの中から第2の受信機への送信に使用するM2個の仮想アンテナを選択し、第1の受信機に対する出力シンボルをM1個の仮想アンテナにマップし、第2の受信機に対する出力シンボルをM2個の仮想アンテナにマップし、第1の受信機に対するマップされた出力シンボルを供給して、T個の送信アンテナの第1の周波数のサブキャリアで送信し、第2の受信機に対するマップされた出力シンボルを供給して、T個の送信アンテナの第2の周波数のサブキャリアで送信するように構成されている少なくとも1つのプロセッサであって、M1およびM2はそれぞれ1に等しいか、または1より大きく、VはM1およびM2に等しいか、またはM1およびM2より大きく、TはVに等しいか、またはVより大きい、少なくとも1つのプロセッサと、
少なくとも1つのプロセッサに結合されたメモリと、を含む装置。
[29]
少なくとも1つのプロセッサは、T個の送信アンテナにT個の異なる巡回遅延を適用するように構成されている[28]に記載の装置。
[30]
M1は、M2に等しくない[28]に記載の装置。
[31]
第1および第2の周波数のサブキャリアは、1つの周波数のサブキャリアであり、送信は、空間分割多元接続(SDMA)を使用して第1および第2の受信機に送信される[28]に記載の装置。
[32]
少なくとも1つのプロセッサは、送信に使用される各仮想アンテナでパイロットを送信するように構成されている[28]に記載の装置。
[33]
少なくとも1つのプロセッサは、マップされた出力シンボルに基づいて、直交周波数分割多重化(OFDM)変調技術またはシングルキャリア周波数分割多元接続(SC−FDMA)変調技術を使用して、T個の送信アンテナに対する送信シンボルを生成するように構成されている[28]に記載の装置。
[34]
V個の仮想アンテナの中から第1の受信機への送信に使用するM1個の仮想アンテナを選択する手段であって、M1は1に等しいか、または1より大きく、VはM1に等しいか、またはM1より大きい、手段と、
V個の仮想アンテナの中から第2の受信機への送信に使用するM2個の仮想アンテナを選択する手段であって、M2は1に等しいか、または1より大きく、かつVより小さいか、またはVに等しい、手段と、
第1の受信機に対する出力シンボルをM1個の仮想アンテナにマップする手段と、
第2の受信機に対する出力シンボルをM2個の仮想アンテナにマップする手段と、
第1の受信機に対するマップされた出力シンボルを供給して、T個の送信アンテナの第1の周波数のサブキャリアで送信する手段であって、TはVに等しいか、Vより大きい手段と、
第2の受信機に対するマップされる出力シンボルを供給して、T個の送信アンテナの第2の周波数のサブキャリアで送信する手段と、を含む装置。
[35]
T個の送信アンテナにT個の異なる巡回遅延を適用する手段をさらに含む[34]に記載の装置。
[36]
複数のマッピングパターンの中から選択される少なくとも1つのマッピングパターンに基づいて、出力シンボルを複数のアンテナにマップするように構成された少なくとも1つのプロセッサであって、各マッピングパターンは複数のアンテナに対する出力シンボルの特定のマッピングを指示する、少なくとも1つのプロセッサと、
少なくとも1つのプロセッサに結合されたメモリと、を含む装置。
[37]
少なくとも1つのプロセッサは、シンボル周期における異なる周波数のサブキャリアに対して、異なるマッピングパターンを選択するように構成されている[36]に記載の装置。
[38]
少なくとも1つのプロセッサは、シンボル周期に対して、異なるマッピングパターンを選択するように構成されている[36]に記載の装置。
[39]
少なくとも1つのプロセッサは、所定のパターンに基づいて、異なる周波数のサブキャリアまたは異なるシンボル周期に対して、複数のマッピングパターンの中から異なるマッピングパターンを選択するように構成されている[36]に記載の装置。
[40]
少なくとも1つのプロセッサは、所定のパターンにしたがって複数の周波数のサブキャリアのそれぞれに正規直交行列の異なる列を適用するように構成され、正規直交行列は複数のマッピングパターンに対する複数の列を含む[36]に記載の装置。
Claims (15)
- V個の仮想アンテナの中から送信に使用するM個の仮想アンテナを選択し、出力シンボルを前記M個の仮想アンテナにマップし、前記マップされた出力シンボルを供給して、T個の送信アンテナの全てから送信するように構成されている少なくとも1つのプロセッサであって、VはMに等しいか、またはMより大きく、TはVに等しいか、またはVより大きい、少なくとも1つのプロセッサと、
前記少なくとも1つのプロセッサに結合されたメモリと、を含み、
前記少なくとも1つのプロセッサは、周波数のサブキャリアの第1のセットに割り当てられた第1の受信機に対して、前記V個の仮想アンテナの中から1つの仮想アンテナを選択し、周波数のサブキャリアの第2のセットに割り当てられた第2の受信機に対して、前記V個の仮想アンテナの中から2つ以上の仮想アンテナを選択し、前記第1の受信機に対する出力シンボルを前記1つの仮想アンテナの周波数のサブキャリアの前記第1のセットにマップし、前記第2の受信機に対する出力シンボルを前記2つ以上の仮想アンテナの周波数のサブキャリアの前記第2のセットにマップするように構成され、
ここにおいて、前記仮想アンテナのVは、所望の空間多重化次数、所望の空間ダイバーシティ次数、および所望のチャネル推定オーバヘッド次数に基づいて選択される、装置。 - V個の仮想アンテナの中から第1の受信機への送信に使用するM1個の仮想アンテナを選択し、前記V個の仮想アンテナの中から第2の受信機への送信に使用するM2個の仮想アンテナを選択し、前記第1の受信機に対する出力シンボルを前記M1個の仮想アンテナにマップし、前記第2の受信機に対する出力シンボルを前記M2個の仮想アンテナにマップし、前記第1の受信機に対する前記マップされた出力シンボルを供給して、T個の送信アンテナの全てから第1の周波数のサブキャリアで送信し、前記第2の受信機に対する前記マップされた出力シンボルを供給して、前記T個の送信アンテナの第2の周波数のサブキャリアで送信するように構成されている少なくとも1つのプロセッサであって、VはM1およびM2に等しいか、またはM1およびM2より大きく、TはVに等しいか、またはVより大きい、少なくとも1つのプロセッサと、
ここにおいて、前記仮想アンテナのVは、所望の空間多重化次数、所望の空間ダイバーシティ次数、および所望のチャネル推定オーバヘッド次数に基づいて選択される、
前記少なくとも1つのプロセッサに結合されたメモリと、
を含む装置。 - 前記少なくとも1つのプロセッサは、前記T個の送信アンテナにT個の異なる巡回遅延を適用するように構成されている請求項2に記載の装置。
- M1は、M2に等しくない請求項2に記載の装置。
- 前記第1および第2の周波数のサブキャリアは、1つの周波数のサブキャリアであり、送信は、空間分割多元接続(SDMA)を使用して前記第1および第2の受信機に送信される請求項2に記載の装置。
- 前記少なくとも1つのプロセッサは、送信に使用される前記M1個およびM2個の仮想アンテナの各々でパイロットを送信するように構成されている請求項2に記載の装置。
- 前記少なくとも1つのプロセッサは、前記マップされた前記第1の受信機に対する出力シンボルと前記マップされた前記第2の受信機に対する出力シンボルとに基づいて、直交周波数分割多重化(OFDM)変調技術またはシングルキャリア周波数分割多元接続(SC−FDMA)変調技術を使用して、前記T個の送信アンテナに対する送信シンボルを生成するように構成されている請求項2に記載の装置。
- V個の仮想アンテナの中から第1の受信機への送信に使用するM1個の仮想アンテナを選択する手段であって、VはM1に等しいか、またはM1より大きい、手段と、
前記V個の仮想アンテナの中から第2の受信機への送信に使用するM2個の仮想アンテナを選択する手段であって、M2はVより小さいか、またはVに等しい、手段と、
ここにおいて、前記仮想アンテナのVは、所望の空間多重化次数、所望の空間ダイバーシティ次数、および所望のチャネル推定オーバヘッド次数に基づいて選択される、
前記第1の受信機に対する出力シンボルを前記M1個の仮想アンテナにマップする手段と、
前記第2の受信機に対する出力シンボルを前記M2個の仮想アンテナにマップする手段と、
前記第1の受信機に対する前記マップされた出力シンボルを供給して、T個の送信アンテナの全てから第1の周波数のサブキャリアで送信する手段であって、TはVに等しいか、Vより大きい手段と、
前記第2の受信機に対する前記マップされた出力シンボルを供給して、前記T個の送信アンテナの第2の周波数のサブキャリアで送信する手段と、
を含む装置。 - 前記T個の送信アンテナにT個の異なる巡回遅延を適用する手段をさらに含む請求項8に記載の装置。
- V個の仮想アンテナの中から第1の受信機への送信に使用するM1個の仮想アンテナを選択することと、ここにおいて、VはM1に等しいか、またはM1より大きく、
前記V個の仮想アンテナの中から第2の受信機への送信に使用するM2個の仮想アンテナを選択することと、ここにおいて、M2はVより小さいか、またはVに等しく、
ここにおいて、前記仮想アンテナのVは、所望の空間多重化次数、所望の空間ダイバーシティ次数、および所望のチャネル推定オーバヘッド次数に基づいて選択される、
前記第1の受信機に対する出力シンボルを前記M1個の仮想アンテナにマップすることと、
前記第2の受信機に対する出力シンボルを前記M2個の仮想アンテナにマップすることと、
前記第1の受信機に対する前記マップされた出力シンボルを供給して、T個の送信アンテナの全てから第1の周波数のサブキャリアで送信することと、ここにおいて、TはVに等しいか、またはVより大きい、
前記第2の受信機に対する前記マップされた出力シンボルを供給して、前記T個の送信アンテナの第2の周波数のサブキャリアで送信することと、
を備える方法。 - 前記T個の送信アンテナにT個の異なる巡回遅延を適用することをさらに備える請求項10に記載の方法。
- M1は、M2に等しくない請求項10に記載の方法。
- 前記第1および第2の周波数のサブキャリアは、1つの周波数のサブキャリアであり、送信は、空間分割多元接続(SDMA)を使用して前記第1および第2の受信機に送信される請求項10に記載の方法。
- 送信に使用される前記M1個およびM2個の仮想アンテナの各々でパイロットを送信することをさらに備える請求項10に記載の方法。
- 前記マップされた前記第1の受信機に対する出力シンボルと前記マップされた前記第2の受信機に対する出力シンボルとに基づいて、直交周波数分割多重化(OFDM)変調技術またはシングルキャリア周波数分割多元接続(SC−FDMA)変調技術を使用して、前記T個の送信アンテナに対する送信シンボルを生成することをさらに備える請求項10に記載の方法。
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