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Updated: Feb 14, 2026

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8ポートのMIMOコンフィギュレーションを備えた高得益のY形パッチ配列は,ミリメートル波アプリケーションにおけるパターンの多様性のために使用されています
Anees Abaas1, Wahaj Abbas Awan1, Domin Choi1
1Department of Information and Communication Engineering, Chungbuk National University, Cheongju, 28644, South Korea.
Scientific reports
|February 12, 2026
まとめ
本研究では,5Gミリ波 (mm-Wave) アプリケーション用の8ポートのマルチ入力-マルチ出力 (MIMO) アンテナを紹介しています. このデザインは,高度なワイヤレスシステムにとって極めて重要な高増益と360°パターンの多様性を実現します.
科学分野:
- 電気工学 電気工学とは
- エレクトロマグネティクス 電子磁気学
- ワイヤレス通信 ワイヤレス通信
背景:
- 高速データ伝送の需要が高まっており,ミリ波 (mm-Wave) 5Gアプリケーションのための高度なアンテナソリューションを必要としています.
- 既存のアンテナの設計は,次世代無線ネットワークに必要な高増益と包括的なパターン多様性の両方を達成する上でしばしば制限に直面しています.
研究 の 目的:
- 28GHz mm-Wave 5Gアプリケーションのための新しい8ポートのマルチ入力-マルチ出力 (MIMO) アンテナシステムの設計と評価.
- ユニークな配列構成を使用して360°パターンの多様性と強化された獲得を達成するために.
主な方法:
- 提案されているアンテナは,ロジャースRT-ドロイド5880基板に完全に覆われた地面平面を使用しています.
- ユニット要素の獲得を高めるために,従来とは異なる3要素配列構成が開発されました.
- 配列は,システムのパフォーマンスを向上させるために8ポートのMIMO構成に拡張されました.
主要な成果:
- ユニットアンテナエレメントは7.37dBiの増幅を達成し,3要素配列では12dBiに改善されました.
- アンテナ配列は800MHz (27.6-28.4GHz) の動作帯域幅を示した.
- 8ポートのMIMO構成は,データスループット,スペクトル効率,空間的多様性を向上させました.
結論:
- 開発されたmm-Wave MIMOアンテナは,5G通信,レーダーシステム,ポイントツーポイントリンクの実現可能なソリューションを提供します.
- このデザインは,管理可能な帯域幅のトレードオフで,増強の強化をうまくバランスとします.
- アンテナの360°ビーム・ステアリング機能は,現代のワイヤレスシステムの効率を大幅に改善します.
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