Who developed Indrajaal

Who developed Indrajaal
What is anti drone technology?
developed Indrajaal AI-powered anti-drone system

Developed by Hyderabad grounded Grene Robotics =
Indrajaal( magical net) is said to be the world’s only far- reachCounter-Unmanned Aircraft System( C- UAS) that can descry independent drones over an area of 4,000 square kilometres.
Equipped with advanced artificial intelligence, machine- learning41( 6) algorithms, and state- of- the- art tackle,’ Indrajaal’ holds the capability to fleetly descry, and neutralise unauthorised drone exertion in real- time.
It takes between 30 seconds and a many twinkles.=
It’s able of securing pivotal installations similar as nuclear installations and oil painting equipages but can also identify and destroy colorful pitfalls. Indrajaal’ can prove useful in high- profile events similar as government summits, sporting events, and artistic carnivals, where security against unauthorised drone breakouts is pivotal.
Who developed Indrajaal
what is Drones
A drone, in the environment of ultramodern technology, generally refers to an unmanned upstanding vehicle( UAV) or an unmanned aircraft system( UAS). Drones are basically aircraft that don’t bear a mortal airman on board and are ever operated or can followpre-programmed flight paths. They’re used for colorful purposes, including
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== Recreational Use ==
numerous people use drones for fun and rest, similar as flying them in premises or landing upstanding prints and vids.
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== Photography and Videography == Drones equipped with high- quality cameras are generally used for upstanding photography and videography. They can capture stunning upstanding shots and give unique perspectives.
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== Commercial and Industrial Applications == Drones have multitudinous artificial operations, including husbandry( monitoring crops), construction( point surveying and progress shadowing), structure examination( islands, channels), and mining( surveying and mapping).
Who developed Indrajaal
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== Hunt and Deliverance == Drones equipped with thermal cameras and other detectors can be used in hunt and deliverance operations to detect missing persons or assess disaster- stricken areas.
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== Environmental Monitoring == Drones are employed to cover and collect data on the terrain, including wildlife shadowing, mapping timbers, and assessing the health of ecosystems.
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== service and Defense == Military drones, also known as unmanned combat upstanding vehicles( UCAVs), are used for surveillance, surveillance, and combat operations. They’re operated ever to perform colorful tasks in warfare without putting mortal aviators at threat.
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== Package Delivery == Some companies are exploring the use of drones for delivering packages and goods, which could potentially give briskly and more effective delivery services.
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== Scientific Research == Experimenters use drones to study colorful aspects of the natural world, including rainfall patterns, ocean currents, and geological conformations.
Drones come in colorful sizes and configurations, from small consumer drones that can fit in the win of your hand to large military drones with long- range capabilities. They’re controlled using remote regulators, mobile apps, or indeed specialized software for independent flight. The technology behind drones continues to advance fleetly, leading to new and innovative operations across multiple diligence.
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Who developed Indrajaal
what ia Challenges
It is likely to develop a Play station Mentality in Killing.
People with good gaming skills are being recruited by Non-state Actors.
Eyes in the sky – violates the privacy aspect – Ethically
Who developed Indrajaal
Anti Drones Technolog
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Radar Systems: Radar is commonly used to detect and track drones. Specialized radar systems can differentiate between drones and other flying objects and provide valuable data for tracking and response.
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Radio Frequency (RF) Detection: RF sensors can detect the radio signals used by drones for communication with their operators. This technology can help identify the presence of unauthorized drones.
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Acoustic Sensors: Acoustic sensors can listen for the sound of drone propellers or engines, enabling the detection of drones in areas where they may not be easily seen.
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Optical and Infrared Systems: Cameras and infrared sensors can be used to visually detect and track drones. These systems can provide a visual confirmation of the drone’s presence.
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GPS Spoofing and Jamming: These techniques can disrupt the GPS signals that drones rely on for navigation, causing them to lose their way or return to their operators.
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Capture Nets and Countermeasures: Some anti-drone systems employ nets or projectiles to physically capture drones and bring them to the ground safely.
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Directed Energy Weapons (DEWs): High-energy lasers or microwave systems can be used to disable or destroy drones in flight by targeting their electronics or propulsion systems.
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Drone Jammers: These devices emit jamming signals to disrupt the drone’s communication and control signals, effectively forcing it to land or return to its operator.
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Drone Interceptors: Some systems use other drones equipped with nets or other capture mechanisms to physically intercept and disable rogue drones.
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Machine Learning and AI: Advanced software systems, often powered by machine learning and artificial intelligence, can analyze data from multiple sensors to detect and predict drone threats more effectively.
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Geofencing: Many consumer drones come with built-in geofencing capabilities, which prevent them from flying into restricted or no-fly zones, such as airports or government facilities.
Who developed Indrajaal
thank
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