2021
DOI: 10.3390/en14248509
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Axial-Flux Permanent-Magnet Generator Design for Hybrid Electric Propulsion Drone Applications

Abstract: This paper presents the design of an axial-flux permanent-magnet (AFPM) generator used for hybrid electric propulsion drone applications. The design objectives of the AFPM generator are high power density, which is defined as output power per generator weight, and high efficiency. In order to satisfy the requirements for the target application and consider the practical problems in the manufacturing process, the structure of the AFPM generator comprising a double-rotor single-stator (DR-SS) was studied. In ord… Show more

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Cited by 6 publications
(6 citation statements)
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“…In a hybrid power unmanned aerial vehicle (UAV), the generator is responsible for converting mechanical energy into electrical energy, which is used to power the rotor during hover or charge the battery during horizontal flight, as shown in Figure 4. In this paper, a permanent magnet synchronous generator (PMSG) is selected with a rated power of 2 kW, considering the actual payload of the UAV to be 25 kg [9]. The working principle of a PMSG involves the rotor being equipped with permanent magnets that generate a constant magnetic field while rotating.…”
Section: Generatormentioning
confidence: 99%
“…In a hybrid power unmanned aerial vehicle (UAV), the generator is responsible for converting mechanical energy into electrical energy, which is used to power the rotor during hover or charge the battery during horizontal flight, as shown in Figure 4. In this paper, a permanent magnet synchronous generator (PMSG) is selected with a rated power of 2 kW, considering the actual payload of the UAV to be 25 kg [9]. The working principle of a PMSG involves the rotor being equipped with permanent magnets that generate a constant magnetic field while rotating.…”
Section: Generatormentioning
confidence: 99%
“…Compared with the conventional radial flux permanent magnet (PM) machine, the axial flux permanent magnet (AFPM) machine can be used in some special applications such as electric vehicles [1], wind turbine systems [2], and unmanned aerial vehicles [3] due to its short axial size, compact structure, disk-shaped profile, and high efficiency. The AFPM machine has a variety of classical structures; wherein, the configuration with double rotors and a single stator is preferred chiefly [4,5], and the stator core is not necessarily required to form a closed magnetic circuit in the design.…”
Section: Introductionmentioning
confidence: 99%
“…The AFPM machine has a variety of classical structures; wherein, the configuration with double rotors and a single stator is preferred chiefly [4,5], and the stator core is not necessarily required to form a closed magnetic circuit in the design. By eliminating the iron core of the stator, the coreless AFPM machine has the following advantages [6][7][8]: (1) The quality and cost of the machine are reduced; (2) The loss of the stator core and the cogging torque of the machine are eliminated; (3) The inductance of windings is small, and the influence of the stator current on the air gap flux density is almost negligible; (4) The ability of overload is greatly improved; (5) The arrangement of coils is more flexible and not constrained by slots and teeth of the stator.…”
Section: Introductionmentioning
confidence: 99%
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