• 제목/요약/키워드: Wireless Charging System

검색결과 125건 처리시간 0.019초

전기자동차용 유·무선 통합 충전을 고려한 무선 충전 시스템의 두 가지 제어 방식에 따른 효율 비교·분석 (Comparison of Efficiency According to the Two Control Method of the Wireless Charging System Considering Wired/Wireless Integrated Charging System for EV)

  • 허훈;이주아;심동현;손원진;이병국
    • 전력전자학회논문지
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    • 제27권3호
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    • pp.228-236
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    • 2022
  • The charging methods of electric vehicles are divided into wired charging and wireless charging. Restrictions on the use of charging infrastructure for wireless charging vehicles currently exist because most charging infrastructure uses the wired charging method. Thus, wired and wireless integrated charging system has been studied. In this system, a wireless charging system especially requires a control method for high-efficiency operation in consideration of a change in a coupling coefficient. Therefore, this paper introduces two control methods for the high-efficiency operation of wireless charging that can be applied to wired and wireless integrated charging systems. In addition, loss analysis is performed through PSIM simulation to select a more advantageous method for high-efficiency operation among the two control methods. To verify the simulation-based loss analysis result, the two control methods are applied to the actual wireless charging system, and the efficiency is compared through the experiments Based on the experimental results, a control method suitable for high-efficiency operation of the wireless charging method is selected.

초전도 코일을 적용한 무선 충전시스템 특성 (Characteristics of Variable Wireless Charging System Applying Superconducting Coils)

  • 정인성;최효상
    • 전기학회논문지
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    • 제67권6호
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    • pp.804-808
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    • 2018
  • Interest in wireless power transfer (WPT) has been growing recently due to the rapid increase in the use of electronic devices. Wireless charging systems are currently being applied to mobile phones and many studies are being conducted to apply wireless charging systems to various devices. The current wireless charging systems are capable of 1:1 charging. For wireless charging, when the devices with the same resonance frequency are present in the vicinity, the charging efficiency may be significantly lowered due to frequency interference or the wireless charging systems may stop operating. In this paper, variable capacitors were applied to a superconducting WPT system to solve the frequency interference among multiple devices with the same frequency. When a wireless charging system was performing 1:1 operation, the frequency of the other devices was varied using variable capacitors. As a result, it was confirmed that the highly efficient WPT is possible without frequency interference even when multiple receivers are present.

Design of a Rechargeable Battery Wireless Charging System

  • Kim, Dae-Hyun;Yeo, Tae-Dong
    • Journal of electromagnetic engineering and science
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    • 제16권4호
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    • pp.210-213
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    • 2016
  • This paper presents a wireless power charging system for rechargeable batteries. Recently, misalignment between transmitting coil and receiving coils has been a significant factor to wireless power charging systems, which are prone to lateral and angular misalignment. Unfortunately, the batteries can be easily rolled because of the shape, and coils are often misaligned while charging devices, in practical situations. This paper presents the wireless power battery charging system. In order to solve the angular misalignment, two perpendicular coil having structure of 'plus (+)' shape was proposed. To validate the results, the proposed wireless power charging system was implemented at 6.78 MHz using loosely coupled resonant coils, and the system was verified as being robust to misalignment.

스마트폰 RF 무선충전을 위한 전압 체배기 회로 분석 (An Analysis of Voltage Multiplier Circuits for Smart Phone RF Wireless Charging)

  • 손명식
    • 반도체디스플레이기술학회지
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    • 제20권2호
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    • pp.29-33
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    • 2021
  • A 5.8-GHz 1W wireless power transmission system was used for charging a smart phone. The voltage of one RF power receiver with antenna was not enough for charging. Several power receivers for charging a smart phone was connected serially. The voltage of several RF power receivers are highly enough for charging a smart phone within 50cm. However, the lack of current from small capacitances of RF-DC converters is not suitable for charging smart phone. It means very long charging time. In this paper, the voltage multiplier circuits for RF-DC converters were analyzed to increase the current and voltage at the same time to reduce the charging time in smartphone RF wireless charging. Through the analysis of multiplier circuits, the 7-stage parallel multiplier circuit with voltage-doubler units are suitable for charging the smartphone, which supplies 5V and 700mA at 3V@5.8GHz.

RF무선충전을 위한 슈퍼커패시터 충전특성 측정 (Measurement of Supercapacitor Charging Characteristic for RF Wireless Charging)

  • 손명식
    • 반도체디스플레이기술학회지
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    • 제20권3호
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    • pp.136-139
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    • 2021
  • In this paper, we studied the charging characteristics of high-capacity supercapacitor with high current for RF wireless charging system for smart phone charging. The dc output of the RF-DC receiver is connected to supercapacitor after which is connected to DC-DC converter for charging a smart phone. This configuration stably supplies voltage and current for charging it. Studies show that the higher charging current use, the rapidly shorter the charging time of supercapacitor is. The currents of 2A, 10A and 27A were used for charging supercapacitors. The charging time was measured for 3000F, 6000F, 12000F supercapacitors which is parallelly connected with 3000F supercapacitors.

5.8-GHz무선전력수신기를 이용한 스마트폰 RF 무선충전 (Smart Phone RF Wireless Charging with 5.8-GHz Microwave Wireless Power Receiver)

  • 손명식
    • 반도체디스플레이기술학회지
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    • 제20권2호
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    • pp.25-28
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    • 2021
  • In this paper, we studied smart phone RF wireless charging with 5.8-GHz microwave wireless power receiver. The dc output of the receiver connected to super capacitor and DC-DC converter for charging a smart phone. This configuration stably supplies 5V and current for charging it. Studies show that the more receivers are used at close range, the higher the received voltage values and the larger the capacity of the super capacitor, the longer the charging time. The present 5.8-GHz 1W wireless power transmission system is not enough for charging a smartphone mainly due to the lack of current of the receiver.

Receiver Protection from Electrical Shock in Vehicle Wireless Charging Environments

  • Park, Taejun;Hwang, Kwang-il
    • Journal of Information Processing Systems
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    • 제16권3호
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    • pp.677-687
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    • 2020
  • This paper deals with the electrical shock that can occur in a car wireless charging system. The recently released the Wireless Power Consortium (WPC) standard specifies that the receiver must be protected from the radio power generated by the transmitter and presents two scenarios in which the receiver may be subjected to electrical shock due to the wireless power generated by the transmitter. The WPC also provides a hardware approach for blocking the wireless power generated by the transmitter to protect the receiver in each situation. In addition, it presents the hardware constraints that must be applied to the transmitter and the parameters that must be constrained by the software. In this paper, we analyze the results of the electric shock in the vehicle using the WPC certified transmitter and receiver in the scenarios presented by WPC. As a result, we found that all the scenarios had electrical shocks on the receiver, which could have a significant impact on the receiver circuitry. Therefore, we propose wireless power transfer limit (WPTL) algorithm to protect receiver circuitry in various vehicle charging environments.

RF무선충전 시스템 전송효율 개선 및 비교 분석 (Comparative Analysis and Improvement of Transmitting Efficiency in RF Wireless Charging System)

  • 손명식
    • 반도체디스플레이기술학회지
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    • 제20권4호
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    • pp.102-107
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    • 2021
  • In this paper, the measurements of received power was shown and compared in two developed 5.8GHz 25W wireless charging systems. One is the system using commercial transmission antenna, and the other is the system using transmission antenna combined with metamaterial. The system combined with metamaterial shows higher received power due to negative reflective index of metamaterial. In addition, a comparative analysis of the systems shows that the transmission efficiency in the systems can decrease the real gain of transmission antenna due to higher side robe of beam pattern. The side robe beams of transmitting antenna interferes transmitted beam with the reflected beams from the bottom region due to the side robes. The failure problems of the RF wireless charging systems are discussed and proposed in order to charge mobile devices through the RF wireless charging system.

Improved Metal Object Detection Circuits for Wireless Charging System of Electric Vehicles

  • Sunhee Kim
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제17권8호
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    • pp.2209-2221
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    • 2023
  • As the supply of electric vehicles increases, research on wireless charging methods for convenience has been increasing. Because the electric vehicle wireless transmission device is installed on the ground and the electric vehicle battery is installed on the floor of the vehicle, the transmission and reception antennas are approximately 15-30 cm away, and thus strong magnetic fields are exposed during wireless charging. When a metallic foreign object is placed in the magnetic field area, an eddy current is induced to the metallic foreign object, and heat is generated, creating danger of fire and burns. Therefore, this study proposes a method to detect metallic foreign objects in the magnetic field area of a wireless electric vehicle charging system. An active detection-only coil array was used, and an LC resonance circuit was constructed for the frequency of the supply power signal. When a metallic foreign object is inserted into the charging zone, the characteristics of the resonance circuit are broken, and the magnitude and phase of the voltage signal at both ends of the capacitor are changed. It was confirmed that the proposed method has about 1.5 times more change than the method of comparing the voltage magnitude at one node.

모바일 무선충전 효율 및 충전 자유도 개선을 위한 3차원 이중 송신 코일시스템 (Three-Dimensional Magnetic Resonant Coil System with Double Transmitter Coil for Enhancement of Wireless Charging Efficiency and Charging Flexibility)

  • 권기종;권용성
    • 한국산학기술학회논문지
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    • 제21권9호
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    • pp.9-16
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    • 2020
  • 무선충전 기술은 사용자가 선 없이 충전할 수 있는 편리함의 이점으로 많은 모바일 전자기기의 필수요소로 자리 잡게 되었고, 지속적인 연구 개발에 의해 다양한 무선충전 시스템이 제안되고 있다. 대표적인 무선충전 시스템으로는 송수신 코일의 배치와 충전효율의 상관관계를 고려하여, 송수신 코일을 근거리 평면에 배치한 2D 평면 코일 시스템이 주로 사용되어왔다. 최근에는 평면으로 넓은 공간을 차지하는 2D 코일시스템에 높이구배를 주어, 공간을 효율적으로 사용하기 위한 3차원 코일시스템이 제안되고 있다. 하지만, 3차원 코일시스템은 2D 코일시스템에 비해 충전효율이 낮고, 특히 송수신 코일간의 거리가 멀어질수록 전력전송 효율이 급격하게 저하되는 경향이 있다. 본 논문에서는 기존 3차원 코일시스템의 단점인 낮은 충전효율과 충전자유도를 개선하기 위해 새로운 무선충전 시스템 설계를 제안한다. 3차원 형상으로 송신코일과 수신코일을 설계하였고, 이때 송신코일 내부에 독립된 송신코일을 추가로 구성한 이중 송신코일 구조를 제안하여 전송효율과 자유도를 개선할 수 있었다. 측정실험 결과, 107 kHz 동작주파수에서 송수신 코일의 거리가 8 mm일 때 제안한 시스템의 효율은 40.10 %로 기존 코일의 최대전송효율인 20.5 %에 비해 크게 증가했다. 본 논문에서 제안한 3차원 이중송수신 코일시스템은 실제 무선충전 시스템 설계 시 다양한 디자인의 무선충전 시스템 설계 및 충전효율 개선에 기여할 것으로 기대된다.