The cellular-connected drone market is presently one of the most competitive markets for drones, with the leading players actively competing against each other to gain a greater share in the industry. The competitive landscape of the cellular-connected drone exhibits an inclination toward emerging strategies and developments by market players.
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The key players that are actively participating in the cellular-connected drone market include drone manufacturers, drone service providers, cellular network companies, and chipset manufacturers (telecom equipment). Some of the active companies as per their strategies and developments are Airbus S.A.S, Terra Drones, Ehang, XAG Drones, Dronebase, Vodafone Group Plc, Verizon Communications Inc., AT&T Inc., T-Mobile, Telefonica, Telefonaktiebolaget LM Ericsson, Cisco Systems Inc., Nokia, Huawei Technologies Co., Ltd, Intel Corporation, Qualcomm Technologies, Inc., and MediaTek Inc., among others.
Over the last few years, there have been extensive advancements in the drone market. Organizations are trying to develop drones for applications such as rescue operations, medical-aid delivery, fertilizer spraying, aerial inspection, and surveillance. The drone companies which are providing these services are XAG drones, Zipline, Mistras Group, Manna Aero, Prime Air, and Google Wing, among others. For instance, in March 2020, Zipline, which is a California-based UAV delivery startup, has launched the distribution of personal protective gear and medical equipment in North Carolina through drones. The time and effort for a specific task are reduced by using drones in these applications. The cost-effectiveness over SATCOM and radiofrequency technology is driving the market. Taking advantage of an established mobile network for drone operations is optimizing the cost of cellular connectivity in low altitude drone operations. The existing mobile system can boost network performance in drone-based emergency response scenarios.
Drones are one of the fastest-growing sectors of the aerospace industry, and governments are increasingly looking to harness the advantages that unmanned vehicles can provide. A key enabler for the effectiveness of this increased UAV deployment lies in the corresponding development of the communication links from the aircraft to decision makers. The connectivity between the drone and the operator can be established by radio frequency (RF) technology, by satellite communication, and by having a cellular mobile connection with each drone.
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The presence of an existing mobile network with significant coverage, low discontinuation, high output, and low cost, drives the usage of the cellular-connected drone. Therefore, while different technologies such as satellite communication and radiofrequency have been used for connectivity in drones after a proper establishment of required infrastructure, the existing cellular network system globally is the most cost-efficient and reliable alternative for drone connectivity resulting in long-range BVLOS operations. Drone operations were restricted to visual range only while using radio connectivity, whereas drones can fly in long range with cellular connectivity due to strong long-range connectivity.
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