The Introduction of Indonesia's Revolutionizing Policy on Sustainable Food Production with Quantum Computing to Support the Food Self-Sufficiency Programme
Indonesia faces pressing challenges in achieving sustainable food self-sufficiency due to climate change, population growth, land degradation, and inefficient agricultural systems. To address these multifaceted issues, the Indonesian government is exploring the integration of cutting-edge technologies, including quantum computing, into national agricultural policies. This paper examines how quantum computing can transform sustainable food production by enabling advanced simulations, optimizing supply chains, and enhancing precision agriculture practices. The paper explores the theoretical framework, policy implications, and practical pathways for implementing quantum-enabled solutions, contributing to national food security and global sustainability agendas. The methodology of the research adopts an in-depth literature review and a qualitative analytical approach to explore the integration of quantum computing within Indonesia’s sustainable food production and self-sufficiency policy framework. Given the emerging nature of quantum technology and the evolving landscape of food security policies, a qualitative design enables in-depth examination of theoretical linkages, policy readiness, and potential use cases. The study emphasizes conceptual policy analysis, supported by secondary data, expert insights, and global benchmarking of technological trends. The research used technical framework analysis of the policy gap analysis, technology policy integration matrix, Strengths, Weaknesses, Opportunities, Threats (SWOT) analysis and case study analysis from other countries. The integration of quantum computing into Indonesia's sustainable food production policies could significantly enhance the country's food self-sufficiency program.
Link to the original full article: https://ap.fftc.org.tw/article/3905
ABSTRACT
Indonesia faces pressing challenges in achieving sustainable food self-sufficiency due to climate change, population growth, land degradation, and inefficient agricultural systems. To address these multifaceted issues, the Indonesian government is exploring the integration of cutting-edge technologies, including quantum computing, into national agricultural policies. This paper examines how quantum computing can transform sustainable food production by enabling advanced simulations, optimizing supply chains, and enhancing precision agriculture practices. The paper explores the theoretical framework, policy implications, and practical pathways for implementing quantum-enabled solutions, contributing to national food security and global sustainability agendas. The methodology of the research adopts an in-depth literature review and a qualitative analytical approach to explore the integration of quantum computing within Indonesia’s sustainable food production and self-sufficiency policy framework. Given the emerging nature of quantum technology and the evolving landscape of food security policies, a qualitative design enables in-depth examination of theoretical linkages, policy readiness, and potential use cases. The study emphasizes conceptual policy analysis, supported by secondary data, expert insights, and global benchmarking of technological trends. The research used technical framework analysis of the policy gap analysis, technology policy integration matrix, Strengths, Weaknesses, Opportunities, Threats (SWOT) analysis and case study analysis from other countries. The integration of quantum computing into Indonesia's sustainable food production policies could significantly enhance the country's food self-sufficiency program.
Keywords: Agricultural policy, food self-sufficiency, Indonesia, precision agriculture, quantumcomputing, rural development, smart farming, sustainable food production, food security, technology integration.
摘要
印尼在實現永續糧食自給面臨了各方面的挑戰,包括氣候變遷、人口成長問題、土壤品質劣化及農業系統效率的低落。為了解決這些多面向的複雜性問題,印尼政府正在探索將例如量子運算等尖端的技術,整合至國家的農業政策之中。本文探討了量子運算可如何搭配最先進的模擬工具、供應鏈的優化及強化精準農業的措施,帶來永續糧食生產模式的轉型。本文亦深入剖析量子驅動解決方案的理論架構、政策內涵與應用的實現,目標在於為印尼的國家糧食安全與全球永續發展議程做出貢獻。本文的研究方法採取了深度文章回顧與質性分析法,探討量子運算如何融入印尼的永續糧食生產與糧食自給的政策架構。有鑑於量子運算科技的新穎性、以及糧食安全政策架構的持續變化,質性研究的設計能深入檢視理論的關聯性、政策整備程度及潛在的應用場景。本研究側重於概念性的政策分析,並輔以次級資料、專家見解及全球技術趨勢的基準點比較。本文運用政策差距分析的技術框架、科技政策整合矩陣、SWOT分析,以及來自其他國家案例研究分析,得出將量子運算技術整合至印尼永續糧食的生產政策之中,可顯著提升印尼在糧食自給自足計畫的成效。
要約
インドネシアは、気候変動、人口増加、土地の劣化、非効率な農業システムにより、持続可能な食料自給を達成する上で差し迫った課題に直面している。これらの多面的な課題に対処するため、インドネシア政府は量子コンピューティングを含む先端技術の国家農業政策への統合を検討している。本論文は、量子コンピューティングが高度なシミュレーションを可能にし、サプライチェーンを最適化し、精密農業の実践を強化することで、持続可能な食料生産をいかに変革し得るかを検証する。本稿では、量子技術を活用したソリューション導入のための理論的枠組み、政策的示唆、実践的道筋を探求し、国家の食料安全保障と地球規模の持続可能性アジェンダへの貢献を考察する。研究手法としては、文献調査と質的分析アプローチを組み合わせて、インドネシアの持続可能な食料生産・自給政策枠組みにおける量子コンピューティングの統合可能性を検証する。量子技術の新興性と食料安全保障政策の流動性を踏まえ、質的設計により理論的関連性・政策準備度・潜在的活用事例を深く考察する。二次データ・専門家知見・技術動向の国際比較を基盤とした概念的政策分析を重視する。本研究では、政策ギャップ分析、技術政策統合マトリクス、強み・弱み・機会・脅威(SWOT)分析、他国における事例研究分析といった技術的枠組み分析手法を採用した。量子コンピューティングをインドネシアの持続可能な食料生産政策に統合することは、同国の食料自給率向上プログラムを大幅に強化し得る。