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Science & Technology / UAVs — UPSC Mains Model Answer

Environment · UPSC CSE
Question: Unmanned Aerial Vehicles (UAVs) — types, capabilities, limitations, and governance significance

Introduction

UAVs have transitioned from niche military tools to mainstream instruments of agriculture, surveillance, disaster management, and logistics, making a clear understanding of their technical diversity essential for sound policy design.

Body

1. Diversity of UAV Configurations

UAVs encompass fixed-wing, rotary-wing (multi-rotor and helicopter), and hybrid VTOL designs. Fixed-wing UAVs require a runway or launch mechanism and cannot hover or land vertically under standard operation, distinguishing them fundamentally from multi-rotor platforms. This heterogeneity means no single capability — vertical landing, hovering, or a specific power source — applies universally across all types.

2. Power Source Variability

UAVs draw power from batteries, internal combustion engines (petrol or diesel), hydrogen fuel cells, and even solar panels. Long-endurance fixed-wing UAVs used for border surveillance or environmental monitoring typically rely on combustion engines or hybrid systems, as battery energy density remains insufficient for extended missions. Assuming battery-only operation would exclude a significant segment of operational UAVs.

3. Regulatory and Governance Implications

India's drone regulatory framework, including the Drone Rules 2021 and the PLI scheme for domestic manufacturing, classifies UAVs by weight and use-case rather than propulsion type. Policymakers must account for technical heterogeneity when framing airspace management, no-fly zones, and counter-drone protocols, particularly near critical infrastructure and international borders.

4. Civil and Strategic Applications

From precision agriculture under schemes like the Kisan Drone initiative to logistics in remote areas and military reconnaissance, UAV utility is expanding rapidly. Each application demands a different platform type, reinforcing why blanket technical assumptions about UAV capabilities can lead to misaligned procurement or flawed operational planning.

Conclusion

Effective UAV governance requires recognising that no single technical attribute defines all platforms. Policy frameworks must remain technology-agnostic and capability-specific to harness UAV potential while managing airspace safety and security risks.

Word count: 267

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