WO2013182144A1 - Dispositif permettant de réduire le taux d'absorption spécifique du rayonnement électromagnétique et terminal mobile - Google Patents

Dispositif permettant de réduire le taux d'absorption spécifique du rayonnement électromagnétique et terminal mobile Download PDF

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Publication number
WO2013182144A1
WO2013182144A1 PCT/CN2013/079550 CN2013079550W WO2013182144A1 WO 2013182144 A1 WO2013182144 A1 WO 2013182144A1 CN 2013079550 W CN2013079550 W CN 2013079550W WO 2013182144 A1 WO2013182144 A1 WO 2013182144A1
Authority
WO
WIPO (PCT)
Prior art keywords
antenna
array
mobile terminal
antenna array
backtracking
Prior art date
Application number
PCT/CN2013/079550
Other languages
English (en)
Chinese (zh)
Inventor
张琦
张璐
Original Assignee
中兴通讯股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Publication of WO2013182144A1 publication Critical patent/WO2013182144A1/fr

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/12Supports; Mounting means
    • H01Q1/22Supports; Mounting means by structural association with other equipment or articles
    • H01Q1/24Supports; Mounting means by structural association with other equipment or articles with receiving set
    • H01Q1/241Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM
    • H01Q1/242Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM specially adapted for hand-held use
    • H01Q1/245Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM specially adapted for hand-held use with means for shaping the antenna pattern, e.g. in order to protect user against rf exposure
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q3/00Arrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system
    • H01Q3/26Arrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system varying the relative phase or relative amplitude of energisation between two or more active radiating elements; varying the distribution of energy across a radiating aperture
    • H01Q3/2605Array of radiating elements provided with a feedback control over the element weights, e.g. adaptive arrays
    • H01Q3/2647Retrodirective arrays
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
    • H04B1/38Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
    • H04B1/3827Portable transceivers
    • H04B1/3833Hand-held transceivers
    • H04B1/3838Arrangements for reducing RF exposure to the user, e.g. by changing the shape of the transceiver while in use
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a device and a mobile terminal for reducing the specific absorption rate of electromagnetic radiation.
  • the indicator for measuring the amount of electromagnetic wave energy radiated to the human body is SAR (Specific Absorption Rate), that is, the electromagnetic wave energy absorption ratio of the wireless terminal.
  • SAR Specific Absorption Rate
  • the SAR is generally used as a numerical value indicating the degree of harmful effects on the human body caused by electromagnetic waves radiated by the mobile terminal.
  • most of the SAR-reducing technologies reduce the transmission power of mobile terminal antennas, the use of absorbing materials and conductor reflectors, and the application of radiation and absorbing coatings, which reduces communication efficiency.
  • Embodiments of the present invention provide a device and a mobile terminal for reducing the specific absorption rate of electromagnetic radiation, which are used to solve the problem of reducing communication efficiency caused by reducing the specific absorption rate of electromagnetic radiation in the related art.
  • An embodiment of the present invention provides a device for reducing the specific absorption rate of electromagnetic radiation, comprising: a backtracking antenna array device and a passive connection transmission line disposed in a direction between a display component of the mobile terminal and the circuit board, wherein
  • the direction backtracking antenna array device includes a plurality of antenna unit pairs, and each antenna unit is connected by a passive connection transmission line of an equal length;
  • the reflected wave is transmitted through the passive connection transmission line.
  • all pairs of antenna elements are of the same type and are symmetric with the geometric center of the passive direction backtracking antenna array.
  • the type of the antenna unit is: a second-order Hilbert fractal antenna, a monopole antenna, a meander line antenna, an equiangular spiral antenna, a fractal antenna or a slot antenna.
  • the direction backtracking antenna array has the characteristics of a Van Atta array.
  • the embodiment of the present invention further provides an apparatus for reducing the electromagnetic radiation specific absorption rate, comprising: an antenna array feeding device and a direction backtracking antenna array device disposed in the middle of the display component of the mobile terminal and the circuit board, wherein
  • the direction backtracking antenna array device includes a plurality of antenna unit pairs
  • the antenna array feeding device is configured to: when an antenna unit receives a incoming wave signal radiated to the human body, generate a reflected wave having the same frequency but opposite direction as the incoming wave signal, and the reflected wave is transmitted through the antenna unit Launched.
  • the antenna array feeding device at least includes: a local oscillator, and a mixer corresponding to each antenna unit, where
  • All mixers are connected to the local oscillator
  • the local oscillator is configured to: output an oscillating signal that generates twice the frequency of the incoming signal to the mixer; an input port of the mixer is configured to: receive an oscillation of twice the frequency of the local wave generated by the local oscillator a signal, the other input port is configured to: receive the incoming wave signal and conjugate the phase of the incoming wave signal; the mixer is configured to: oscillate the frequency of the double-wave signal frequency After the conjugated incoming wave signal is mixed, the reflected wave having the same magnitude but opposite direction as the incoming wave signal is generated, and the reflected wave is emitted.
  • the type of the antenna unit is: a second-order Hilbert fractal antenna, a monopole antenna, a meander line antenna, an equiangular spiral antenna, a fractal antenna or a slot antenna.
  • the direction backtracking antenna array has the characteristics of a Van Atta array.
  • Embodiments of the present invention also provide a mobile terminal, including the above apparatus for reducing electromagnetic radiation specific absorption rate.
  • FIG. 1 is a schematic diagram showing the basic working principle of a Van Atta array of passive direction backtracking antennas according to a first embodiment of the present invention.
  • FIG. 2 is a schematic diagram of an antenna unit arrangement based on a Van Atta array according to a first embodiment of the present invention.
  • Fig. 3 is a schematic view showing the arrangement of slot antenna elements based on a Van Atta array according to the first embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a device based on a two-dimensional array element of a Van Atta antenna array according to a first embodiment of the present invention.
  • Figure 5 is a schematic illustration of the principle of implementing active phase conjugation of a retroreflective antenna array in accordance with a second embodiment of the present invention.
  • Figure 6 is a schematic diagram of active power feeding based on a Van Atta antenna array in accordance with a second embodiment of the present invention.
  • FIG. 7 is a schematic diagram of an application of a mobile terminal according to a second embodiment of the present invention.
  • FIG. 8 is another schematic diagram of another application of the mobile terminal according to the second embodiment of the present invention.
  • An embodiment of the present invention provides an antenna array for reducing the specific absorption rate of electromagnetic radiation and a mobile terminal using the antenna array.
  • the backward direction antenna array can reflect electromagnetic waves along the incoming wave direction, and realize incident waves and reflected waves in the human body. The offset in the direction, thereby reducing the electromagnetic radiation energy radiated to the human body.
  • the passive scheme includes a direction backtracking antenna array device and its corresponding passive connection transmission line.
  • the active solution includes a direction backtracking antenna array device and an antenna array feed device.
  • the direction backtracking antenna array can reflect the electromagnetic waves back along the incoming wave direction without any prior information of the incoming wave, thereby reducing the radiation of the mobile terminal to the human body.
  • a direction backtracking antenna array device and a passive connection transmission line are disposed in the middle of a mobile terminal display component and a printed circuit board (PCB), wherein the direction backtracking antenna array device includes a plurality of antenna unit pairs. And each antenna unit is connected by a passive connection transmission line of an equal length; all antenna unit pairs are of the same type and symmetric with the geometric center of the array; when the antenna unit receives the incoming radiation to the human body, the passive connection transmission line , Go with that day.
  • PCB printed circuit board
  • the direction backtracking antenna array in the passive scheme has the characteristics of a Van Atta array.
  • Fig. 1 is a schematic diagram showing the basic working principle of the Van Atta array of the direction backtracking antenna.
  • the Van Atta antenna array consists of multiple antenna element pairs (equal to the center of the antenna array), and each antenna element is connected by a passive connection transmission line of equal length; if the phase gradient of the antenna array is kept opposite, Get the right phase for the direction backtracking.
  • the phase difference between the four elements is incremental, and the increase is 0.
  • a pair of antennas with the same distance from the center of the antenna array are connected by an equal-length transmission line, and the phase difference and incidence between the elements at the time of exit.
  • the phase difference generated by the wave between the array elements is the same.
  • the array automatically realizes the direction of the reflected wave and the direction of the incident wave. The ultimate goal of backtracking.
  • the Van Atta antenna array can achieve directional backtracking in a wide frequency band, and its bandwidth is limited only by the bandwidth of the array unit. Since the reflected wave is composed of the secondary radiation of the array, the patch of the array element and the scattering of the metal plate, the array has a good reflection waveform only at a certain interval. Therefore, different array spacings can be designed according to different mobile terminals.
  • Fig. 2 is a schematic diagram showing an arrangement of array elements based on a Van Atta antenna array according to a first embodiment of the present invention. In the entire direction back to the antenna array 201, eight antenna elements 202 are hooked.
  • the antenna unit of the first embodiment of the present invention is designed as a second-order Hilbert fractal antenna.
  • the type of the antenna unit can also be selected as a monopole antenna, a zigzag line antenna, an isometric helical antenna, a fractal antenna or a slot antenna, etc., so that it operates in the mobile communication band.
  • Figure 3 is a schematic diagram of a slot array arrangement based on a Van Atta antenna array according to a first embodiment of the present invention. In implementation, it is also possible to continue to increase the number of antenna elements to enhance the reflection effect.
  • FIG. 4 is a schematic diagram of a device based on a two-dimensional array of Van Atta antenna arrays according to a first embodiment of the present invention.
  • the direction backtracking antenna array device 401 there are two-dimensional antenna units (that is, array units, referred to as array elements) 402, each antenna unit pair is connected through a passive connection line 403, and the antenna unit is of the same type.
  • the antennas, and symmetric about the geometric center of the array, are connected to each other by a passive connection transmission line of equal length. ⁇ Returning the antenna with the direction of the passive structure, the antenna unit and the passive connection transmission line can be processed on the FPCB (Flexible Printed Circuit Board) to realize the ultra-thin design of the whole machine.
  • FPCB Flexible Printed Circuit Board
  • the active scheme is to feed the array in a phase conjugate manner.
  • An antenna array feeding device and an active direction backtracking antenna array device are sequentially disposed in the middle of the mobile terminal display component and the PCB circuit board, wherein the active direction backtracking antenna array device is composed of a plurality of antenna unit pairs; when an antenna unit receives When the incoming wave signal is radiated to the human body, a reflected wave having the same frequency but opposite direction to the incoming wave signal is generated by the antenna array feeding device, and the reflected wave is emitted through the antenna unit.
  • the antenna array feeding device comprises at least: a mixer corresponding to each antenna unit and a local oscillator, wherein all the mixers are connected to the local oscillator; the local oscillator is set to: an oscillating signal that generates twice the frequency of the incoming signal Outputting to the mixer; one input port of the mixer is configured to receive an oscillating signal of twice the frequency of the wave generated by the local oscillator, and the other input port is configured to receive the incoming signal and to the incoming signal The phase is conjugated; the mixer is configured to: mix the oscillating signal of the double-wave signal frequency and the conjugated incoming wave signal to generate the same frequency but the direction of the incoming wave signal The opposite reflected wave, and the reflected wave is emitted.
  • FIG. 5 is a schematic diagram of the principle of implementing active phase conjugate of the backtracking antenna array, that is, using a local oscillator and several mixers to obtain the phase conjugate received by the antenna unit as the transmitting phase, which can be realized.
  • Backtracking direction Taking the phase of the first array element receiving the incoming wave as the reference, the other array elements are in phase with the first array element, and the conjugate of the phase of each array element is generated by the mixer as the phase of the transmitted wave, which can be realized.
  • Backtracking direction When the radiation source is far away from the antenna array, the electric wave propagates toward the antenna array, and when it reaches the antenna, it is a plane wave.
  • phase of the electromagnetic wave reaching the antenna is: ⁇ . , ⁇ , ⁇ 2 , . . . , ⁇ ⁇ .
  • phase of the received signal of the antenna unit where the reference plane is located is ⁇
  • phase of the received signal of the remaining antenna elements and the phase difference thereof are:
  • the phase of the transmitted signal of each antenna unit can be compensated for this phase difference, which satisfies the requirement of being in phase in the reference plane.
  • the received signals of all antenna elements are phase conjugated.
  • the phase of the radiation signal becomes: - ⁇ 0 ,
  • phase difference between the transmitted signal of the antenna unit and the reference unit is:
  • phase conjugate of the received signal of the antenna unit acts as the phase of the transmitted signal, which can compensate the phase difference caused by the difference of the position of the antenna unit, and direct the main lobe of the antenna pattern to the direction of the incoming wave, thereby achieving the purpose of backtracking. .
  • the mixer There are two signals at the input end of the mixer, one is the local oscillator signal, one is the received electromagnetic wave signal to the human body, that is, the incoming wave signal, and the output end has the intermediate frequency signal, that is, the reflected wave signal.
  • the local oscillator generates an oscillating signal at a local frequency, the frequency is 2Fin (Fin is the frequency of the received electromagnetic radiation to the human body), the oscillating signal is input to an input port of the mixer; another signal of the mixer input is received
  • the IF signal generated by such a mixer is the same as the frequency of the electromagnetic wave radiated to the human body, but the phase is conjugated to cancel.
  • 6 is a schematic diagram of active power feeding based on a Van Atta antenna array according to a second embodiment of the present invention.
  • the antenna array feeding device 601 feeds an antenna unit of an active direction backtracking antenna array device through a feed line 602.
  • the active direction backtracking antenna array device and the antenna array feeding device 601 are distributed on both sides of the FPCB, thereby realizing the ultra-thin design of the whole machine.
  • FIG. 7 and FIG. 8 are schematic diagrams of application according to a second embodiment of the present invention.
  • FIG. 7 is a schematic diagram of a touch screen type mobile terminal.
  • the radiating antenna 703 of the mobile terminal is mounted on the mobile terminal PCB circuit board 702.
  • the direction backtracking antenna array device 701 is located on the same side of the mobile terminal LED (Light-Emitting Diode Light Emitting Diode) display component 704, and the antenna array feeding device 705 is located at the mobile terminal LED display component 704 and the direction backtracking antenna.
  • Between the array devices 701. 8 is a schematic diagram of a flip-type mobile terminal, the structure is similar to that of FIG.
  • the radiating antenna 803 of the mobile terminal is mounted on the mobile terminal PCB circuit board 802, and the direction backtracking antenna array device 801 is located at the mobile terminal LED display component 804 (including the display)
  • the antenna array feed 805 is located between the mobile terminal LED display assembly 804 and the direction backtracking antenna array device 801.
  • the embodiment of the present invention further provides a mobile terminal, where the apparatus for reducing the electromagnetic radiation specific absorption rate described in the first embodiment or the second embodiment is provided in the mobile terminal.
  • the apparatus for reducing the electromagnetic radiation specific absorption rate described in the first embodiment or the second embodiment is provided in the mobile terminal.
  • the embodiment of the present invention provides a device and a mobile terminal for reducing the specific absorption rate of electromagnetic radiation, and has made great progress compared with the related art. Compared with the application of the absorbing material, it is required to apply one layer or even multiple layers, which occupies a large space, and the mobile terminal of the embodiment of the invention occupies a relatively small space. Moreover, since the reflection efficiency of the ordinary reflection plate is low, and even the transmission phenomenon may occur, the embodiment of the present invention is a better choice from the demand of high reflection efficiency; for different mobile terminals, the position and quantity of the sensor are added. There may be differences, which are difficult to implement on a large scale, and the embodiment of the present invention has no such troubles and is easy to implement.
  • the technical solution of the embodiment of the present invention achieves a better effect of reducing the electromagnetic radiation specific absorption rate compared with the related art, and does not Reduce communication efficiency.
  • the passive scheme helps to save space, and the active scheme improves the radiation performance and communication quality of the terminal antenna through reflected waves.
  • the effect of better reducing the electromagnetic radiation than the absorption rate is achieved, and the communication efficiency is not lowered.

Abstract

La présente invention concerne un dispositif qui permet de réduire le taux d'absorption spécifique du rayonnement électromagnétique et un terminal mobile. Le dispositif comprend: un dispositif de réseau d'antennes rétrodirectives qui est disposé entre un élément afficheur de terminal mobile et une carte à circuits, et des lignes de transmission à connexion passive. Le dispositif de réseau d'antennes rétrodirectives comprend une pluralité de paires d'éléments d'antenne et dans chacune des paires d'éléments d'antenne, deux éléments d'antenne sont connectés par une ligne de transmission à connexion passive de la même longueur électrique. Lorsqu'un élément d'antenne reçoit une onde à l'arrivée qui rayonne en direction d'un corps humain, le dispositif et le terminal mobile qui comprend un autre élément d'antenne apparié à l'élément d'antenne indiqué ci-avant par la ligne de transmission à connexion passive peuvent produire un effet d'absorption, ce qui réduit ainsi un taux d'absorption spécifique du rayonnement électromagnétique sans diminuer l'efficacité de la communication.
PCT/CN2013/079550 2012-10-25 2013-07-17 Dispositif permettant de réduire le taux d'absorption spécifique du rayonnement électromagnétique et terminal mobile WO2013182144A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201210412910.1 2012-10-25
CN201210412910.1A CN103001005B (zh) 2012-10-25 2012-10-25 降低电磁辐射比吸收率的装置及移动终端

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WO2013182144A1 true WO2013182144A1 (fr) 2013-12-12

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WO (1) WO2013182144A1 (fr)

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CN103441330A (zh) * 2013-08-06 2013-12-11 华为终端有限公司 无线通信设备
CN104092024B (zh) * 2014-06-16 2017-01-18 郑州轻工业学院 一种基于角反射天线阵列的方向回溯系统
US9935378B2 (en) * 2015-10-30 2018-04-03 Te Connectivity Corporation Antenna apparatus configured to reduce radio-frequency exposure
CN106207424B (zh) * 2016-07-06 2018-11-27 东南大学 一种无源圆极化自回溯天线阵
CN106900051B (zh) * 2017-02-24 2020-07-07 上海创功通讯技术有限公司 一种降低电磁辐射比吸收率的方法及装置
CN109361053B (zh) * 2018-08-17 2019-08-13 西安电子科技大学 基于双极化Van Atta阵列的低RCS微带天线
CN111262604B (zh) * 2020-01-21 2021-05-04 武汉大学 基于方向回溯天线的波束自跟踪全双工通信系统及方法
CN111564702B (zh) * 2020-04-14 2021-07-09 西安电子科技大学 一种雷达散射截面缩减方法及加载在天线阵上的调控系统
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