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Published:2025/11/10 3:16:15

デジタルエンジニアリング(DE)で開発💰効率化!🚀

  1. 超要約: DE導入で、システム開発の遅延💸と費用超過を解決するよ!
  2. ギャル的キラキラポイント✨
    • ● スケジュール遅延の原因を特定!🔍 どこで遅れてるか、バッチリわかる!
    • ● DE導入で、どれだけ時短できるか💰を数値化!ROIも出ちゃう!
    • ● 海軍の事例を参考に、IT業界でもDEが活躍できるってこと!
  3. 詳細解説
    • 背景: システム開発って、遅延💸と費用超過がつきもの…😭 そこでDE(デジタルエンジニアリング)の出番! データ統合とか、アジャイル(俊敏性)を高めるらしい!
    • 方法: 海軍の設計変更プロセスを分析🔎 定量的に(数字で)DEの効果を評価するよ!
    • 結果: DE導入したら、スケジュールが短縮✨ コストも削減できるってことが判明!
    • 意義: IT業界でもDE導入すれば、効率化、予測可能性UP🎉 競争力も上がるってこと!これはアツい🔥
  4. リアルでの使いみちアイデア💡
    • IT企業の新規事業開発担当者は、DE導入でプロジェクトを成功させ、利益を最大化できるよ!
    • DEコンサルサービスを立ち上げて、企業をサポート!✨
  5. もっと深掘りしたい子へ🔍
    • ROI(投資対効果)
    • システムエンジニアリング
    • デジタルエンジニアリング

続きは「らくらく論文」アプリで

What is the Return on Investment of Digital Engineering for Complex Systems Development? Findings from a Mixed-Methods Study on the Post-production Design Change Process of Navy Assets

Jannatul Shefa / Taylan G. Topcu

Complex engineered systems routinely face schedule and cost overruns, along with poor post-deployment performance. Championed by both INCOSE and the U.S. Department of Defense (DoD), the systems engineering (SE) community has increasingly looked to Digital Engineering (DE) as a potential remedy. Despite this growing advocacy, most of DE's purported benefits remain anecdotal, and its return on investment (ROI) remains poorly understood. This research presents findings from a case study on a Navy SE team responsible for the preliminary design phase of post-production design change projects for Navy assets. Using a mixed-methods approach, we document why complex system sustainment projects are routinely late, where and to what extent schedule slips arise, and how a DE transformation could improve schedule adherence. This study makes three contributions. First, it identifies four archetypical inefficiency modes that drive schedule overruns and explains how these mechanisms unfold in their organizational context. Second, it quantifies the magnitude and variation of schedule slips. Third, it creates a hypothetical digitally transformed version of the current process, aligned with DoD DE policy, and compares it to the current state to estimate potential schedule gains. Our findings suggest that a DE transformation could reduce the median project duration by 50.1% and reduce the standard deviation by 41.5%, leading to faster and more predictable timelines. However, the observed gains are not uniform across task categories. Overall, this study provides initial quantitative evidence of DE's potential ROI and its value in improving the efficiency and predictability of complex system sustainment projects.

cs / cs.CY