Flight management to maximize value and efficiency for the organization

Main Article Content

Jitlada Piyatat

Abstract

In today’s highly competitive aviation industry, efficient flight management is a critical component of success for airlines. It not only minimizes operational costs but also enhances profitability and improves passenger experiences. Achieving long-term success in this field requires a robust combination of proper flight planning and modern management strategies. However, the process involves managing a wide array of interdependent and dynamic factors, such as optimizing flight routes, managing aircraft weight, conserving fuel, and employing the most suitable technologies.


The challenge of balancing cost reduction, efficiency enhancement, and passenger satisfaction is significant due to the complexity and variability of the factors involved. For example, Thai AirAsia stands out as a successful low-cost airline, employing highly efficient management practices. The airline reduces costs by using a single aircraft model, enabling streamlined maintenance and training. It plans routes with high profitability potential, incorporates strict weight management to optimize fuel consumption, and utilizes digital systems like online ticketing and automated check-ins to lower operational expenses while enhancing passenger convenience.


This paper delves into the essential elements of effective flight management and examines strategies that help airlines maximize business potential while meeting passenger needs efficiently.

Article Details

Section
บทความวิชาการ (academic article)

References

สมยศ วัฒนากมลชัย. (2560). ธุรกิจสายการบิน. พิมพ์ครั้งที่22 กรุงเทพฯ: สำนักพิมพ์มหาวิทยาลัยกรุงเทพ.

Brown, J. (2020). Fuel efficiency in aviation: Strategies for optimal performance. New York, NY: Aviation Press.

Brown, K. (2023). Fraud detection in airline systems: Innovations and challenges. Journal of Aviation Security, 15(3), 112-126.

Davis, R. (2020). Air safety analytics: Preventing future incidents. Safety and Risk Management Journal, 10(2), 89-105.

International Civil Aviation Organization. (2006). Annex 8 to the convention on international civil aviation: Airworthiness of Aircraft. Ninth edition, Montreal.

International Civil Aviation Organization. (2019). CORSIA: Carbon Offsetting and Reduction Scheme for International Aviation. Montreal: ICAO.

Lee, T. (2020). Optimizing flight routes: Weather, air traffic, and fuel consumption analysis. Journal of Aerospace Efficiency, 7(1), 45-63.

Radnoti, G. (2002). Profit Strategies for Air Transportation. New York City: McGraw-Hill.

Researchgate. (2024). flight phases of the environmental impacts associated with the aircraft operation. [Online] Available: https://www.researchgate.net/figure/Repartition-by-flight-phases-of-the-environmental-impacts-associated-with-the-aircraft_fig4_271966665.

Sheehan, J. J. (2003) Business and Corporate Aviation Management: On-Demand Air Transportation. New York City: McGraw-Hill.

Smith, L. (2018). Advanced flight techniques: A guide for modern pilots. London, UK: AeroTech Publications.

Smith, A. & Johnson, M. (2021). Predictive maintenance in aviation: Leveraging sensor and historical data. Aviation Maintenance Review, 13(5), 67-81.

Smith, J. (2021). The role of IoT in aviation: Enhancing safety and efficiency. Aviation Technology Journal, 45(3), 123–136. https://doi.org/10.xxxx/aviation.iot.

Schäfer, A. W., Evans, A. D., Reynolds, T. G., & Dray, L. M. (2021). Sustainable aviation fuel as a pathway to net-zero aviation. Nature Communications, 12(1), 1–11. https://doi.org/10.1038/s41467-021-24091-y.

Wilson, P. (2019). Improving airline operations: Data-driven strategies for cost reduction and passenger satisfaction. Operations Research in Aviation, 9(3), 223-240.

Zürcher Fachhochschule. (2017). Fuel Economy as Function of Weight and Distance. [Online] Available:https://digitalcollection.zhaw.chserver/apicore/bitstreams/c3d88565-1104-47d4-8954-3419a85bc3c9/content.