JP5987231B2 - 拡張物理ダウンリンク制御チャネル(ePDCCH)における改善 - Google Patents
拡張物理ダウンリンク制御チャネル(ePDCCH)における改善 Download PDFInfo
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- JP5987231B2 JP5987231B2 JP2015500637A JP2015500637A JP5987231B2 JP 5987231 B2 JP5987231 B2 JP 5987231B2 JP 2015500637 A JP2015500637 A JP 2015500637A JP 2015500637 A JP2015500637 A JP 2015500637A JP 5987231 B2 JP5987231 B2 JP 5987231B2
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Description
[項目1]
ノードから、物理リソースブロック(PRB)のペアの拡張物理ダウンリンク制御チャネル(ePDCCH)の分散制御チャネル要素(CCE)およびローカライズCCEを送信するための方法であって、
前記ノードにより、前記PRBのペアに対する少なくとも1つの分散CCEおよび少なくとも1つのローカライズCCEをプリコーディングする段階と、
少なくとも2つのユーザ機器に固有の基準信号(UERS)ポートを使用して、送信ダイバーシチのための前記少なくとも1つの分散CCEを送信する段階と、
前記PRBのペアの前記少なくとも1つのローカライズCCEを送信する段階とを備え、
前記少なくとも2つのUERSポートを使用して2つのCCEを送信する方法。
[項目2]
前記PRBのペアは、1つの分散CCEと、少なくとも3つのローカライズCCEとを含み、ビーム形成用のプリコーディングベクトルwは、前記ローカライズCCEのうちの1つのUERSポートに適用され、送信ダイバーシチのためのプリコーディングベクトルorth(w)は、前記分散CCEのUERSポートに適用され、orth(w)は、wに垂直なプリコーディングベクトルであり、wおよびorth(w)は、それぞれ、N t ×1ベクトルであり、
N t は、ノード送信アンテナの数を示し、前記少なくとも2つのUERSポートは、プリコーディングベクトルwを用いてプリコードされた前記ローカライズCCEと、プリコーディングベクトルorth(w)を用いてプリコードした前記分散CCEを送信する、項目1に記載の方法。
[項目3]
前記PRBのペアは、少なくとも2つの分散CCEと、少なくとも1つのローカライズCCEとを含み、送信ダイバーシチのための2つのプリコーディングベクトルは、前記分散CCEの2つのUERSポートに適用され、送信ダイバーシチのための前記2つのプリコーディングベクトルは、複数のプリコーディングベクトルw1、w2、w3、およびw4からなる群から選択され、各プリコーディングベクトルは、N t ×1ベクトルであり、
N t は、ノード送信アンテナの数を示す、項目1または2に記載の方法。
[項目4]
項目1に記載の方法を実行するコンピュータプログラムコード手段を備えるコンピュータプログラム。
[項目5]
少なくとも1つの拡張物理ダウンリンク制御チャネル(ePDCCH)に対する物理リソースブロック(PRB)のペアの分散制御チャネル要素(CCE)およびローカライズCCEを受信する無線デバイスであって、
前記PRBのペア内の送信ダイバーシチのための少なくとも1つの分散CCEと、少なくとも1つのローカライズCCEとを受信するトランシーバモジュールと、
前記少なくとも2つのUERSポートを監視し、ダウンリンクチャネルを推定するチャネル推定器とを備え、
前記少なくとも2つのユーザ機器に固有の基準信号(UERS)ポートを使用して、2つのCCEを受信する無線デバイス。
[項目6]
前記PRBのペアは、1つの分散CCEおよび少なくとも3つのローカライズCCEを含み、前記チャネル推定器は、前記ローカライズCCEのうちの1つのUERSポートに適用されるビーム成形用のプリコーディングベクトルwを用いてプリコードしたダウンリンクチャネルと、前記分散CCEのUERSポートに適用される送信ダイバーシチのためのプリコーディングベクトルorth(w)を用いてプリコードされた前記ダウンリンクチャネルとをデコードし、
orth(w)は、wに垂直なプリコーディングベクトルであり、wおよびorth(w)は、それぞれ、N t ×1ベクトルであり、
N t は、ノード送信アンテナの数を示す、項目5に記載の無線デバイス。
[項目7]
前記PRBのペアは、少なくとも2つの分散CCEおよび少なくとも1つのローカライズCCEを含み、前記チャネル推定器は、前記少なくとも2つの分散CCEの2つのUERSポートに適用される送信ダイバーシチのための2つのプリコーディングベクトルを用いてプリコードされたダウンリンクチャネルをデコードし、送信ダイバーシチのための前記2つのプリコーディングベクトルは、複数のプリコーディングベクトルw1、w2、w3、およびw4からなる群から選択され、各プリコーディングベクトルは、N t ×1ベクトルであり、
N t は、ノード送信アンテナの数を示す、項目5または6に記載の無線デバイス。
[項目8]
前記無線デバイスは、ユーザ機器(UE)および移動局(MS)からなる群から選択され、前記無線デバイスは、アンテナ、タッチセンシティブディスプレイスクリーン、スピーカ、マイク、グラフィックスプロセッサ、アプリケーションプロセッサ、内部メモリ、不揮発性メモリポート、およびこれらの組み合わせのうち少なくとも1つを含む、項目5〜7のいずれか1項に記載の無線デバイス。
[項目9]
無線デバイスで少なくとも1つの拡張物理ダウンリンク制御チャネル(ePDCCH)を用いて物理ダウンリンク共有チャネル(PDSCH)の物理リソースブロック(PRB)配分のための方法を実行させるためのコンピュータプログラムであって、
ノードから、少なくとも1つのePDCCHのPRBを含むPDSCHのPRBのリソース配分(RA)を受信する手順と、
前記PDSCHのPRBのリソース配分から前記少なくとも1つのePDCCHのPRBを除外する手順とを含み、
前記PDSCHのPRBのリソース配分(RA)は、ePDCCHにより搬送されるダウンリンク制御情報(DCI)に含まれるコンピュータプログラム。
[項目10]
前記少なくとも1つのePDCCHのPRBは、前記無線デバイスに対するePDCCHのPRBを含む、項目9に記載のコンピュータプログラム。
[項目11]
前記少なくとも1つのePDCCHのPRBは、サブフレーム内の全てのePDCCHのPRBを含む、項目9または10に記載のコンピュータプログラム。
[項目12]
前記リソース配分のリソース配分タイプは、RAタイプ0のリソースブロック群(RBG)に基づくスケジューリング、複数の仮想リソースブロック(VRB)を使用するRAタイプ1のPRBに基づくスケジューリング、および複数のVRBを用いるRAタイプ2の隣接するPRBに基づくスケジューリングからなる分類から選択される、項目9〜11のいずれか1項に記載のコンピュータプログラム。
[項目13]
半永続的スケジューリング(SPS)のセル無線ネットワーク一時識別子(C−RNTI)と、「0」に設定したインジケータフィールドとを用いてスクランブルした仮想巡回冗長検査(CRC)の複数のパリティビットを使用して前記ePDCCHをデコードする手順を更に含む、項目9〜12のいずれか1項に記載のコンピュータプログラム。
[項目14]
前記ノードから、前記ePDCCHを受信する前に、無線リソース制御(RRC)シグナリングによりePDCCHについてのPRB構成情報を受信する手順を更に含む、項目9〜13のいずれか1項に記載のコンピュータプログラム。
[項目15]
拡張物理ダウンリンク制御チャネル(ePDCCH)検証の半永続的なスケジューリング(SPS)のセル無線ネットワーク一時識別子(C−RNTI)によりマスクしたスケジューリングについて構成されたユーザ機器(UE)であって、
少なくとも1つのePDCCHのPRBと重なり合い、前記ePDCCHが送信される群を含む、PDSCHのPRBのリソース配分(RA)を有するePDCCHにより搬送されたダウンリンク制御情報(DCI)を受信するトランシーバモジュールと、
前記PDSCHのPRBのリソース配分から、前記少なくとも1つのePDCCHのPRBを減じる処理モジュールと
を備えるユーザ機器(UE)。
[項目16]
前記少なくとも1つのePDCCHのPRBは、前記UEのePDCCHが送信される無線デバイスに対するePDCCHのPRBを含む、項目15に記載のUE。
[項目17]
前記少なくとも1つのePDCCHのPRBは、ePDCCHが送信されるサブフレーム内の全てのePDCCHのPRBを含む、項目15または16に記載のUE。
[項目18]
前記リソース配分のためのリソース配分タイプは、RAタイプ0のリソースブロック群(RBG)に基づくスケジューリング、複数の仮想リソースブロック(VRB)を使用するRAタイプ1のPRBに基づくスケジューリング、および複数のVRBを使用するRAタイプ2の隣接するPRBに基づくスケジューリングからなる分類から選択される、項目15〜17のいずれか1項に記載のUE。
[項目19]
前記SPSのC−RNTIを用いてスクランブルした仮想巡回冗長検査(CRC)の複数のパリティビットを使用して前記ePDCCHをデコードするデコーダを更に備え、
前記処理モジュールは、有効な半永続的なアクティブ化またはリリースの前記ePDCCHにおけるインジケータフィールドが「0」の値であるかを更に検査する、項目15〜18のいずれか1項に記載のUE。
[項目20]
前記UEは、アンテナ、タッチセンシティブディスプレイ画面、スピーカ、マイク、グラフィックスプロセッサ、アプリケーションプロセッサ、内部メモリ、不揮発性メモリポート、およびそれらの組み合わせのうち少なくとも1つを備える、項目15〜19のいずれか1項に記載のUE。
Claims (14)
- ノードから、物理リソースブロック(PRB)のペアの拡張物理ダウンリンク制御チャネル(ePDCCH)の分散制御チャネル要素(CCE)およびローカライズCCEを送信するための方法であって、
前記ノードにより、前記PRBのペアに対する少なくとも1つの分散CCEおよび少なくとも1つのローカライズCCEをプリコーディングする段階と、
少なくとも2つのユーザ機器に固有の基準信号(UERS)ポートを使用して、送信ダイバーシチのための前記少なくとも1つの分散CCEを送信し、前記PRBのペアの前記少なくとも1つのローカライズCCEを送信する段階であって、前記少なくとも2つのUERSポートを使用して2つのCCEを送信する段階と
を備え、
前記方法は、
ビーム形成用のプリコーディングベクトルwを、前記ローカライズCCEのうちの1つのためのUERSポートに適用し、送信ダイバーシチのためのプリコーディングベクトルorth(w)を、前記分散CCEのためのUERSポートに適用する段階
を備え、
orth(w)が、wに直交するプリコーディングベクトルであり、wおよびorth(w)が、それぞれ、N t ×1ベクトルであり、N t が、ノード送信アンテナの数を示し、
前記少なくとも2つのUERSポートは、プリコーディングベクトルwを用いてプリコードされた前記ローカライズCCEと、プリコーディングベクトルorth(w)を用いてプリコードした前記分散CCEとを送信する、
方法。 - 前記PRBのペアは、1つの分散CCEと、少なくとも3つのローカライズCCEとを含む、
請求項1に記載の方法。 - 前記PRBのペアは、少なくとも2つの分散CCEと、少なくとも1つのローカライズCCEとを含み、
前記方法は、
送信ダイバーシチのための2つのプリコーディングベクトルを、前記分散CCEのための2つのUERSポートに適用する段階
を備える請求項1または2に記載の方法。 - 送信ダイバーシチのための前記2つのプリコーディングベクトルは、複数のプリコーディングベクトルw1、w2、w3、およびw4からなる群から選択され、各プリコーディングベクトルは、Nt×1ベクトルであり、
Ntは、ノード送信アンテナの数を示す、
請求項3に記載の方法。 - 請求項1から4のいずれか1項に記載の方法をコンピュータに実行させるためのプログラム。
- 請求項5に記載のプログラムを格納するコンピュータ可読記憶媒体。
- 請求項1から4のいずれか1項に記載の方法を実行するノード。
- 少なくとも1つの拡張物理ダウンリンク制御チャネル(ePDCCH)に対する物理リソースブロック(PRB)のペアの分散制御チャネル要素(CCE)およびローカライズCCEを受信する無線デバイスであって、
前記PRBのペア内の送信ダイバーシチのための少なくとも1つの分散CCEと、少なくとも1つのローカライズCCEとを受信するトランシーバモジュールであって、前記少なくとも2つのユーザ機器に固有の基準信号(UERS)ポートを使用して2つのCCEを受信する、トランシーバモジュールと、
前記少なくとも2つのUERSポートを監視し、ダウンリンクチャネルを推定するチャネル推定器と
を備え、
前記チャネル推定器は、前記ローカライズCCEのうちの1つのためのUERSポートに適用されたビーム成形用のプリコーディングベクトルwを用いてプリコードされたダウンリンクチャネルと、前記分散CCEのためのUERSポートに適用された送信ダイバーシチのためのプリコーディングベクトルorth(w)を用いてプリコードされた前記ダウンリンクチャネルとをデコードし、
orth(w)は、wに直交するプリコーディングベクトルであり、wおよびorth(w)は、それぞれ、N t ×1ベクトルであり、
N t は、ノード送信アンテナの数を示す、
無線デバイス。 - 前記PRBのペアは、1つの分散CCEおよび少なくとも3つのローカライズCCEを含む、
請求項8に記載の無線デバイス。 - 前記PRBのペアは、少なくとも2つの分散CCEおよび少なくとも1つのローカライズCCEを含み、前記チャネル推定器は、前記少なくとも2つの分散CCEのための2つのUERSポートに適用された送信ダイバーシチのための2つのプリコーディングベクトルを用いてプリコードされたダウンリンクチャネルをデコードする、
請求項8または9に記載の無線デバイス。 - 送信ダイバーシチのための前記2つのプリコーディングベクトルは、複数のプリコーディングベクトルw1、w2、w3、およびw4からなる群から選択され、各プリコーディングベクトルは、Nt×1ベクトルであり、
Ntは、ノード送信アンテナの数を示す、
請求項10に記載の無線デバイス。 - 前記無線デバイスは、ユーザ機器(UE)および移動局(MS)からなる群から選択され、前記無線デバイスは、アンテナ、タッチセンシティブディスプレイスクリーン、スピーカ、マイク、グラフィックスプロセッサ、アプリケーションプロセッサ、内部メモリ、不揮発性メモリポート、およびこれらの組み合わせのうち少なくとも1つを含む、
請求項8から11のいずれか1項に記載の無線デバイス。 - 少なくとも1つの拡張物理ダウンリンク制御チャネル(ePDCCH)に対する物理リソースブロック(PRB)のペアの分散制御チャネル要素(CCE)およびローカライズCCEを受信するためのプログラムであって、
前記PRBのペア内の送信ダイバーシチのための少なくとも1つの分散CCEと、少なくとも1つのローカライズCCEとを受信する手順であって、前記少なくとも2つのユーザ機器に固有の基準信号(UERS)ポートを使用して2つのCCEを受信する、手順と、
前記少なくとも2つのUERSポートを監視し、ダウンリンクチャネルを推定する手順と
をコンピュータに実行させ、
前記少なくとも2つのUERSポートを監視し、ダウンリンクチャネルを推定する手順は、
前記ローカライズCCEのうちの1つのためのUERSポートに適用されたビーム成形用のプリコーディングベクトルwを用いてプリコードされたダウンリンクチャネルと、前記分散CCEのためのUERSポートに適用された送信ダイバーシチのためのプリコーディングベクトルorth(w)を用いてプリコードされた前記ダウンリンクチャネルとをデコードする手順
を含み、
orth(w)は、wに直交するプリコーディングベクトルであり、wおよびorth(w)は、それぞれ、N t ×1ベクトルであり、
N t は、ノード送信アンテナの数を示す、
プログラム。 - 請求項13に記載のプログラムを格納するコンピュータ可読記憶媒体。
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