WO2019153969A1 - Device for regulating biorhythm in human body - Google Patents

Device for regulating biorhythm in human body Download PDF

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Publication number
WO2019153969A1
WO2019153969A1 PCT/CN2018/125531 CN2018125531W WO2019153969A1 WO 2019153969 A1 WO2019153969 A1 WO 2019153969A1 CN 2018125531 W CN2018125531 W CN 2018125531W WO 2019153969 A1 WO2019153969 A1 WO 2019153969A1
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WO
WIPO (PCT)
Prior art keywords
unit
light
human body
user
information
Prior art date
Application number
PCT/CN2018/125531
Other languages
French (fr)
Chinese (zh)
Inventor
马君显
马捷
明瑞波
Original Assignee
深圳市慧智生命科技有限公司
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Publication of WO2019153969A1 publication Critical patent/WO2019153969A1/en

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N5/0613Apparatus adapted for a specific treatment
    • A61N5/0618Psychological treatment
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C11/00Non-optical adjuncts; Attachment thereof
    • G02C11/04Illuminating means
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C5/00Constructions of non-optical parts
    • G02C5/001Constructions of non-optical parts specially adapted for particular purposes, not otherwise provided for or not fully classifiable according to technical characteristics, e.g. therapeutic glasses
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B10/00Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
    • H04B10/11Arrangements specific to free-space transmission, i.e. transmission through air or vacuum
    • H04B10/114Indoor or close-range type systems
    • H04B10/116Visible light communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B10/00Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
    • H04B10/50Transmitters
    • H04B10/516Details of coding or modulation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/08Network architectures or network communication protocols for network security for authentication of entities
    • H04L63/0876Network architectures or network communication protocols for network security for authentication of entities based on the identity of the terminal or configuration, e.g. MAC address, hardware or software configuration or device fingerprint
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N2005/0626Monitoring, verifying, controlling systems and methods
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N2005/0635Radiation therapy using light characterised by the body area to be irradiated
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N2005/0635Radiation therapy using light characterised by the body area to be irradiated
    • A61N2005/0643Applicators, probes irradiating specific body areas in close proximity
    • A61N2005/0645Applicators worn by the patient
    • A61N2005/0647Applicators worn by the patient the applicator adapted to be worn on the head
    • A61N2005/0648Applicators worn by the patient the applicator adapted to be worn on the head the light being directed to the eyes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N2005/065Light sources therefor
    • A61N2005/0651Diodes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N2005/0658Radiation therapy using light characterised by the wavelength of light used
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N2005/0658Radiation therapy using light characterised by the wavelength of light used
    • A61N2005/0662Visible light
    • A61N2005/0663Coloured light
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N2005/0664Details

Definitions

  • the present invention relates to the field of biomedicine, and more particularly to a human body rhythm regulating device
  • Retinal ganglion photoreceptor cells discovered in 2003 is of great significance for revealing the mechanism of adjusting human biological rhythms through light action.
  • the human eye's light signal sensing function includes visual functions associated with retinal cone and rod cells and non-visual functions related to ipRGCs.
  • the former mainly transmits visual light signals to the brain to form visual images, colors and their Changes, while the latter mainly transmits non-visual light signals to the pineal gland of the hypothalamus to participate in the regulation of the circadian clock, thereby producing an adjustment effect on the physiological and mental health of the human body.
  • the prior art there are also special devices or device systems that use light to control diseases or regulate biological rhythms.
  • the technical forms and device forms are different, the principle of blue light stimulating the retina of the human eye to adjust the human body clock is not the same.
  • These devices in the prior art may also have certain effects, but it is undeniable that the defects are also obvious, for example, the sum of the intensity of the emitted light and the invisible illumination of the visual area are only controlled by the illumination intensity and the illumination time.
  • the technical problem to be solved by the present invention is that the personal information of the above-mentioned users of the prior art, the personal information such as the condition, and the illumination parameter information of the service provider are not protected, and may be illegally exploited, and the above information is better provided.
  • a human biological rhythm adjustment device that protects against illegal use.
  • the technical solution adopted by the present invention to solve the technical problem thereof is: constructing a human body biological rhythm adjusting device, comprising a frame, a control unit, a modulating unit, a light emitting unit and an information security unit; the frame is used for wearing on a human body, and a mounting carrier of the unit; the control unit outputs a control signal to the modulating unit, and the modulating unit modulates a driving waveform generated by the control unit as a modulation signal to obtain a modulated driving signal Receiving, by the illumination unit, the modulated drive signal, illuminating according to the modulated drive signal and projecting the emitted light to a non-visual area of a pupil of a user wearing the frame; the information security unit and the The control unit is connected, and the control unit obtains the identity information and the control signal parameter of the user from the information security unit, so as to output a correct control signal for the user, so that the light emitting unit emits light suitable for the user. .
  • control unit includes a microcontroller
  • information security unit includes a security encryption chip connected to and controlled by the microcontroller; the security encryption chip stores the identity information of the user, A lighting parameter stored by the province or user; the lighting parameter is used to generate a control signal and cause the light emitting unit to emit a bundle of light of a set characteristic.
  • the security encryption chip further includes a plurality of sensors respectively detecting the voltage level, the frequency of the input signal, and the state of the force of the chip, and the sensor detects the voltage, the frequency of the input signal, or the force condition is abnormal, and determines that the device is When the security encryption chip is attacked, all the data stored therein is destroyed.
  • the secure encryption chip further includes a device unique identification code of the hardware, and the device unique identification code is used to represent the identification code of the human biological rhythm adjustment device.
  • the non-visual area includes an area unrelated to imaging and a region around the eye in the pupil of the human body;
  • the illumination parameter includes: a central wavelength and a spectral component thereof, a light intensity, a spectral power density, and a temporal modulation of the light intensity.
  • the frame includes a spectacle frame worn on a head of the human body, and the light emitting units are respectively disposed on upper and lower edges of the intermediate portion of the lens frame of the spectacle frame.
  • the light-emitting unit comprises four, which are respectively disposed at an intermediate position of the upper edge and a lower edge of the left and right lens frames of the eyeglass frame.
  • the modulating module uses light modulation and spectral mixing to cause the illuminating unit to output light of different time modulation frequencies, different wavelengths and different intensities, so that a plurality of the illuminating units realize different combinations of light formed at the pupil. Composite light.
  • each of the light emitting units includes at least one light group, and each of the light groups is controlled by the modulation unit outputting an independent modulated driving signal.
  • a light group includes an optical structure of at least one LED and a bundle of rays that align the light emitted by the LEDs within the group.
  • a human body biological rhythm adjusting device embodying the present invention has the following beneficial effects: since the above information security unit exists, all information related to user privacy, including user identity information, user's light irradiation information, and default or target The user's lighting parameters are all present in the above information security unit. At the same time, the unit is protected by multiple sensors, which can prevent almost all existing illegal data acquisition stages. Therefore, its information is better protected and will not be illegally used.
  • FIG. 1 is a schematic view showing the position of each unit mounted on a frame in an embodiment of a human body biological rhythm adjusting device according to the present invention
  • Fig. 2 is a block diagram showing the circuit configuration of the apparatus in the embodiment.
  • the human biological rhythm adjusting device comprises a frame 16, a control unit 11, a modulating unit 10, and a light emitting unit (reference numeral 1 a lamp set of 2, 3, 4, 5, 6, 7, and 8) and an information security unit 12;
  • the frame 16 is for wearing on a human body, and serves as a mounting carrier for each of the above units, that is, each of the above units
  • the control unit 11 outputs a control signal to the modulation unit 10, and the modulation unit 10 modulates the drive waveform generated by the control signal output by the control unit 11 as a modulation signal.
  • the light emitting unit (specifically, each light group in the light emitting unit) receives the modulated driving signal, and emits light according to the modulated driving signal Projecting to a non-visual area of the pupil of the user wearing the frame, the projected light being superimposed or not superimposed, illuminating the non-visual area in the form of composite light; the information
  • the whole unit 12 is connected to the control unit 11, and the control unit 11 obtains the user's identity information and control signal parameters from the information security unit 12, so as to output a correct control signal for the user, so that the illumination
  • the unit emits light suitable for the user.
  • control unit 11 includes a microcontroller
  • information security unit 12 includes a security encryption chip connected to and controlled by the microcontroller; the security encryption chip is stored by the user.
  • Identity information default or user stored lighting parameters; the lighting parameters are used to generate a control signal and cause the lighting unit to emit a beam of light of a set characteristic.
  • the control unit 11 does not store any personal information about the user, identity information of the device, and data for the user or default illumination parameters. All of this data is stored in the information security unit 12 described above.
  • the control unit 11 needs to authenticate the identity information of the user, obtain the default or the illumination parameter for the user, it needs to be acquired by the information security unit 12 through the information interaction, and is not retained. Each time the above information is used, it is directly read by the above information security unit 12. Since the data exists in the information security unit 12 described above, and the information security unit 12 receives perfect protection, it is less likely that the above-mentioned personal privacy information of the user is illegally obtained.
  • the security encryption chip (ie, the information security unit 12) further includes a plurality of sensors respectively detecting the voltage level, the input signal frequency, and the chip stress state, and the voltage and the input signal frequency are detected by the sensor. Or the force condition is abnormal, and when it is determined that the security encryption chip is attacked, the chip will stop working or destroy all data stored therein. That is to say, in the embodiment, after the security information chip is mounted on the circuit board and connected to the control unit 11, the information can be prevented from being illegally obtained by using the method of improving the read/write or access frequency. Prevent the violent disassembly of the chip and get the information.
  • the security encryption chip further includes a device unique identification code of the hardware, and the device unique identification code is used to represent the identification code of the human biological rhythm adjustment device. That is, the device unique identification code of the hardware not only marks the identity of the device itself, but also identifies the identity of the lighting device.
  • the non-vision area includes an area unrelated to imaging and a region around the eye in the pupil region;
  • the illumination parameter includes: a central wavelength and a spectral component thereof, a light intensity, a spectral power density, and a light intensity.
  • the frame 16 includes eyeglass frames that are worn on the head of the human body, and the light-emitting units are respectively disposed on upper and lower edges of the intermediate portion of the lens frame of the eyeglass frame. In FIG.
  • the light-emitting unit includes four, which are respectively disposed at an intermediate position between an upper edge and a lower edge of the left and right lens frames of the eyeglass frame.
  • the left and right lens frames are joined together by a connector 9.
  • the above connecting member 9 may also be integrally formed with the right and left lens frames.
  • the modulating module uses light modulation and spectral mixing to cause the illuminating unit to output light of different time modulation frequencies, different wavelengths, and different intensities, so that the plurality of the illuminating units realize different combinations of light to form a composite light at the pupil. .
  • each of the light-emitting units includes at least one light group (each light-emitting unit in FIG. 1 includes two light groups), and each light group is provided by Modulation unit 12 outputs independent modulated drive signal control.
  • a group of lamps includes an optical structure (not shown) of at least one of the LEDs and a bundle of rays that align the light emitted by the LEDs within the group of lamps.
  • the security chip has a protected data storage area, and data that needs to be protected, such as user information and illumination parameter information, can be stored therein, and the sensor manufactured with the security chip detects once.
  • Brute force detection which starts the self-destruction program and destroys the information stored in the protected area
  • the security chip has a set of encryption methods for agreeing the key algorithm, which can protect the communication channel and communication content, and can be used in identity authentication, disease assessment, and illumination parameters.
  • the key protection is activated to ensure that the protected information cannot be stolen; each security chip has a unique protected identification hardware code built in it, which can be used as an information security human biological rhythm adjustment system.
  • the user terminal ID card, and the system algorithm ensures that the ID card cannot be counterfeited, and thereby ensures the security of the human biometric rhythm adjustment system user terminal and the like.
  • the information security chip (ie, the security chip) simultaneously encrypts and authenticates the user login information and the human biological rhythm adjustment device information, and only the user login information and the human biological rhythm adjustment device can enjoy the complete human body of the information security. Personalized service for the rhythm regulation system. Even if the criminals get one of the two can not invade the system, get the user's personal information.
  • the security chip protects user information and the system through asymmetric key cryptography.
  • the security chip When the user first authenticates, the security chip generates a public-private key pair according to the information filled in by the user.
  • the public key can be used to encrypt the information, and only the private key can be decrypted.
  • the private key can only be stored inside the security chip and must not be accessed externally.
  • the security chip uses asymmetric key encryption, it is indispensable to have both the human biological rhythm adjustment device and the private key to obtain user information and enter the heart system.
  • the private key and the process of decrypting data using the private key will not release the security chip, ensuring the security of the private key and information.
  • the probability of counterfeiting and abnormal decryption theoretically by mathematical calculation is about one of the 80th power of 2, and normal use is absolutely safe.
  • the activation code on the human biological rhythm adjustment device should be used before activation of the human biological rhythm adjustment device, and activated on the official website or a designated specialty store.
  • the activation process loads the device with a corresponding encryption algorithm according to the activation code.
  • the encryption algorithm will safely program the information security chip. For example, in the ROM of the Z8IDA chip, the external interface cannot be accessed and changed; the encryption algorithm is also registered in the The corresponding area of the cloud server.
  • the user presses the human body rhythm mechanical switch to turn on the human biological rhythm adjustment device.
  • the human body biometric rhythm adjustment device can only be used by applying the system default illumination parameter or the last time using the illumination parameter.
  • the usage information will be saved, and the human body biological rhythm adjustment device is opened by using the mobile phone APP as follows, and the mobile APP is automatically uploaded to the mobile phone APP, and the mobile phone APP is also synchronized to the cloud server.
  • the device transmits information between the above-mentioned mobile phone (mobile terminal) and the above-mentioned device through a communication module connected to the above-mentioned control unit 11, usually a Bluetooth module.
  • the user has downloaded the mobile phone APP, then it depends on whether the user has been authenticated. If the user has already authenticated, the login interface will appear; if there is no authentication, the user must be authenticated first.
  • the information filled in by the user is sent to the body biological rhythm adjustment device through the blue communication module of the mobile phone, and the ID of the Z8IDA chip is associated with the biological rhythm adjustment device ID, and then the encryption algorithm encryption is generated according to the associated information and the information filled in by the user.
  • Public and private key pair The private key will be stored in the key area of the Z8IDA chip.
  • the external key cannot be directly accessed.
  • the public key cannot be changed.
  • the public key is stored in the Z8IDA chip and uploaded to the mobile APP for encryption and decryption.
  • the user After the authentication is completed, the user is required to log in, otherwise the service interface is refused.
  • the login is successful, and the mobile APP accesses the cloud server, and the cloud server identifies the activation code and public key of the human biological rhythm adjustment device in the APP access data.
  • the cloud server registers the activation code according to the human body rhythm adjustment device to find a corresponding encryption algorithm, and the encryption algorithm generates the private key by using the received public key, and the private key is saved in the cloud server.
  • the cloud server randomly extracts a piece of data from the received access data, and then uses a special algorithm to generate a serial number for signature. Finally, the digital signature of the cloud server is encrypted and sent to the mobile APP.
  • the public key in the mobile APP will be decrypted; then the user fills in the digital signature and sends the digital signature filled with the public key to the cloud server.
  • the cloud server decrypts it with a private key and then matches the two digital signatures before and after. The matching is successful, indicating that the communication process has not been illegally stolen and tampered, and the user can be provided with a service page, otherwise the service page is refused.
  • the security chip itself has a large number of sensors and has active defense capabilities. Once illegally detected, stop working immediately. Each piece of security chip has a unique ID bound to it, using an international common encryption algorithm combined with a national encryption algorithm, the encryption level reaches the financial level.
  • the security chip protects the user's personal privacy.
  • the personal information and the ID of the human biological rhythm adjustment device are filled in at the time of initial use, which ensures the authenticity of the user information, and the use of the product is genuine rather than forged.
  • the security chip fills in the ID of the human biological rhythm adjustment device when the user first uses it, and the ID matches the human biological rhythm adjustment device ID implanted in the security chip before the factory, and the matching person takes the chip ID and the human biological rhythm.
  • the adjustment device ID is bound together, and the human biological rhythm adjustment device is also certified, indicating that the device is genuine. Otherwise, it is a fake and shoddy product, and the chip stops working immediately.
  • the human biological rhythm adjustment device will have built-in parameters and illumination parameters before leaving the factory. These data are encrypted by the CA security chip, and must be inspected and tested before being shipped.
  • the communication between the mobile APP and the cloud server must be encrypted by the security chip to be sent between the two.
  • the encryption uses asymmetric encryption, and the communication information can only be decrypted through the security chip.
  • the communication process such as identity authentication and data exchange can be ensured by channel encryption, and the storage in the chip security zone can be ensured by measures such as self-destruction.
  • the confidential information such as users and lighting parameters are safe and leak-free. In order to ensure the safety of users and their treatment information, to prevent product counterfeiting, illegal access and so on.
  • the professional in the process of using the illumination, the professional can be based on the specific situation of the user, including the physical state of the user, the age, the type of symptoms, and the change of symptoms, etc.
  • the user gives a highly targeted set of lighting parameters so that the user can get better improvements.
  • the above illumination parameter set can even be implanted on site so that the user can use it on a daily basis, and the next time the user is received, the above lighting parameter set is adjusted according to changes in his symptoms.

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Abstract

A device for regulating biorhythm in a human body, comprising a frame (16), a control unit (11), a modulation unit (10), a light-emitting unit (1, 2, 3, 4, 5, 6, 7, 8), and an information security unit (12). The frame (16) is used as a mounting carrier of the units. The control unit (11) outputs a control signal to the modulation unit (10). The modulation unit (10) uses the control signal output by the control unit (11) as a modulation signal for modulating a drive waveform generated by the modulation unit (10) to obtain a modulated drive signal. The light-emitting unit (1, 2, 3, 4, 5, 6, 7, 8) receives the modulated drive signal, emits according to same, and projects the emitted light to a non-visual area of a pupil of a user wearing the frame. The information security unit (12) is connected to the control unit (11). The control unit (11) obtains identity information of the user and a control signal parameter from the information security unit (12). The device for regulating biorhythm in human body has the following beneficial effects: the information is protected, and is not used illegally.

Description

一种人体生物节律调节装置Human biological rhythm adjusting device 技术领域Technical field
本发明涉及生物医学领域,更具体地说,涉及一种人体生物节律调节装置 The present invention relates to the field of biomedicine, and more particularly to a human body rhythm regulating device
背景技术Background technique
  感知光的变化并做出相应反应是生命体的基本特征,也是人类顺应自然、保持生命与健康的本能。2003年发现的视网膜神经节感光细胞(Intrinsically photosensitive retinal ganglion cells-ipRGCs)对于揭示通过光作用调整人体生物节律的机理意义重大。根据研究,人眼的光信号感知功能,包括与视网膜锥状和杆状细胞相关联的视觉功能以及与ipRGCs相关的非视觉功能,前者主要将视觉光信号传递到大脑形成视觉图像、色彩及其变化,而后者则主要将非视觉光信号传递到下丘脑的松果体中参与生物钟的调节,从而产生对于人体生理、心理健康的调整作用。现有技术中,也有一些利用光照防治疾病或者调节生物节律的专用装置或者装置***,尽管所采用的技术形式和装置形态各不相同,但是不外乎蓝光刺激人眼视网膜调整人体生物钟的原理。现有技术中的这些装置可能也有一定的效果,但是不可否认的是,其缺陷也是明显的,例如,仅仅通过光照强度和光照时间来控制发出光的强度的总和以及不加区分地照射视觉区域和非视觉区域,可能存在危害使用者视力的风险等等,使得其存在效果不好、控制光的总体强度较为困难、安全系数不高的缺点;同时,由于更好或更安全的光照效果需要针对使用者本身的情况下进行身份信息记录和光照参数调节,需要在光照装置中存储这些信息,这些信息涉及使用者的个人身份、病情等情况,还涉及服务商的光照参数等等。在现有技术中,这些信息并没有得到保护,可能被非法利用。Perceiving the change of light and responding accordingly is the basic feature of the living body, and it is also the instinct of human beings to adapt to nature and maintain life and health. Retinal ganglion photoreceptor cells discovered in 2003 (Intrinsically Photosensitive retinal ganglion cells-ipRGCs) is of great significance for revealing the mechanism of adjusting human biological rhythms through light action. According to research, the human eye's light signal sensing function includes visual functions associated with retinal cone and rod cells and non-visual functions related to ipRGCs. The former mainly transmits visual light signals to the brain to form visual images, colors and their Changes, while the latter mainly transmits non-visual light signals to the pineal gland of the hypothalamus to participate in the regulation of the circadian clock, thereby producing an adjustment effect on the physiological and mental health of the human body. In the prior art, there are also special devices or device systems that use light to control diseases or regulate biological rhythms. Although the technical forms and device forms are different, the principle of blue light stimulating the retina of the human eye to adjust the human body clock is not the same. These devices in the prior art may also have certain effects, but it is undeniable that the defects are also obvious, for example, the sum of the intensity of the emitted light and the invisible illumination of the visual area are only controlled by the illumination intensity and the illumination time. And non-visual areas, there may be risks that endanger the user's vision, etc., so that it has the disadvantage of poor performance, difficulty in controlling the overall intensity of light, and low safety factor; at the same time, due to better or safer lighting effects For the identity information recording and illumination parameter adjustment in the case of the user itself, it is necessary to store the information in the illumination device, which relates to the user's personal identity, condition, etc., and also relates to the service provider's illumination parameters and the like. In the prior art, this information is not protected and may be illegally exploited.
技术问题technical problem
技术解决方案Technical solution
本发明要解决的技术问题在于,针对现有技术的上述使用者的个人身份、病情等个人信息及服务商的光照参数信息没有保护,可能被非法利用的缺陷,提供一种上述信息得到较好保护,不会被非法利用的一种人体生物节律调节装置。 The technical problem to be solved by the present invention is that the personal information of the above-mentioned users of the prior art, the personal information such as the condition, and the illumination parameter information of the service provider are not protected, and may be illegally exploited, and the above information is better provided. A human biological rhythm adjustment device that protects against illegal use.
本发明解决其技术问题所采用的技术方案是:构造一种人体生物节律调节装置,包括框架、控制单元、调制单元、发光单元和信息安全单元;所述框架用于佩戴在人体上,并作为上述单元的安装载体;所述控制单元输出控制信号到所述调制单元,所述调制单元将所述控制单元输出的控制信号作为调制信号对其自身产生的驱动波形进行调制,得到已调制驱动信号;所述发光单元接收所述已调制驱动信号,按所述已调制驱动信号发光并将发出的光投射到佩戴所述框架的使用者的瞳孔的非视觉区域;所述信息安全单元与所述控制单元连接,所述控制单元由所述信息安全单元中取得使用者的身份信息和控制信号参数,以便针对该使用者输出正确的控制信号,使得所述发光单元发出适于该使用者的光。The technical solution adopted by the present invention to solve the technical problem thereof is: constructing a human body biological rhythm adjusting device, comprising a frame, a control unit, a modulating unit, a light emitting unit and an information security unit; the frame is used for wearing on a human body, and a mounting carrier of the unit; the control unit outputs a control signal to the modulating unit, and the modulating unit modulates a driving waveform generated by the control unit as a modulation signal to obtain a modulated driving signal Receiving, by the illumination unit, the modulated drive signal, illuminating according to the modulated drive signal and projecting the emitted light to a non-visual area of a pupil of a user wearing the frame; the information security unit and the The control unit is connected, and the control unit obtains the identity information and the control signal parameter of the user from the information security unit, so as to output a correct control signal for the user, so that the light emitting unit emits light suitable for the user. .
更进一步地,所述控制单元包括微控制器,所述信息安全单元包括与所述微控制器连接并受其控制的安全加密芯片;所述安全加密芯片中存储由使用者的身份信息、缺省或用户存储的光照参数;所述光照参数用于产生控制信号并使所述发光单元发出设定特性的光线束。Further, the control unit includes a microcontroller, and the information security unit includes a security encryption chip connected to and controlled by the microcontroller; the security encryption chip stores the identity information of the user, A lighting parameter stored by the province or user; the lighting parameter is used to generate a control signal and cause the light emitting unit to emit a bundle of light of a set characteristic.
更进一步地,所述安全加密芯片还包括多个分别检测电压高低、输入信号频率高低以及芯片受力状态的传感器,在所述传感器检测到电压、输入信号频率或受力情况异常,判断为所述安全加密芯片遭受攻击时,销毁其中存储的所有数据。Further, the security encryption chip further includes a plurality of sensors respectively detecting the voltage level, the frequency of the input signal, and the state of the force of the chip, and the sensor detects the voltage, the frequency of the input signal, or the force condition is abnormal, and determines that the device is When the security encryption chip is attacked, all the data stored therein is destroyed.
更进一步地,所述安全加密芯片还包括一个硬件的器件唯一识别码,所述器件唯一识别码用于表示所述人体生物节律调节装置的身份识别码。Further, the secure encryption chip further includes a device unique identification code of the hardware, and the device unique identification code is used to represent the identification code of the human biological rhythm adjustment device.
更进一步地,所述非视觉区域包括人体瞳孔范围内与成像无关的区域和眼睛周边的区域;所述光照参数包括:中心波长及其光谱成分、光强度、光谱功率密度、光强度的时间调制频率或/和光强度的时间调制占空比、发光射位置和/或光发射和结束时间。Further, the non-visual area includes an area unrelated to imaging and a region around the eye in the pupil of the human body; the illumination parameter includes: a central wavelength and a spectral component thereof, a light intensity, a spectral power density, and a temporal modulation of the light intensity. Time-modulated duty cycle, illuminating position and/or light emission and end time of frequency or/and light intensity.
更进一步地,所述框架包括佩戴在人体头部的眼镜框架,所述发光单元分别设置在所述眼镜框架的镜片框的中间部位的上下边沿上。Further, the frame includes a spectacle frame worn on a head of the human body, and the light emitting units are respectively disposed on upper and lower edges of the intermediate portion of the lens frame of the spectacle frame.
更进一步地,所述发光单元包括四个,分别设置在所述眼镜框架的左右镜片框的上边沿中间位置和下边沿中间位置。Further, the light-emitting unit comprises four, which are respectively disposed at an intermediate position of the upper edge and a lower edge of the left and right lens frames of the eyeglass frame.
更进一步地,所述调制模块采用光调制与光谱混频使所述发光单元输出不同时间调制频率、不同波长、不同强度的光,使多个所述发光单元实现不同组合的光在瞳孔处形成复合光。 Further, the modulating module uses light modulation and spectral mixing to cause the illuminating unit to output light of different time modulation frequencies, different wavelengths and different intensities, so that a plurality of the illuminating units realize different combinations of light formed at the pupil. Composite light.
更进一步地,每个发光单元包括至少一个灯组,每个灯组由所述调制单元输出独立的调制后的驱动信号控制。Further, each of the light emitting units includes at least one light group, and each of the light groups is controlled by the modulation unit outputting an independent modulated driving signal.
更进一步地,一个灯组包括至少一个LED和将该灯组内的LED发出的光形成方向一致的光线束的光学结构。Still further, a light group includes an optical structure of at least one LED and a bundle of rays that align the light emitted by the LEDs within the group.
有益效果Beneficial effect
实施本发明的一种人体生物节律调节装置,具有以下有益效果:由于存在上述信息安全单元,将所有涉及使用者隐私的信息,包括使用者身份信息、使用者的光照射信息以及缺省或针对使用者的光照参数均存在上述信息安全单元,同时,该单元又收到多重传感器的保护,几乎能够防范现有的所有非法数据取得阶段。所以,其信息得到较好保护,不会被非法利用。A human body biological rhythm adjusting device embodying the present invention has the following beneficial effects: since the above information security unit exists, all information related to user privacy, including user identity information, user's light irradiation information, and default or target The user's lighting parameters are all present in the above information security unit. At the same time, the unit is protected by multiple sensors, which can prevent almost all existing illegal data acquisition stages. Therefore, its information is better protected and will not be illegally used.
附图说明DRAWINGS
图1是本发明一种人体生物节律调节装置实施例中各单元安装在框架上的位置示意图;1 is a schematic view showing the position of each unit mounted on a frame in an embodiment of a human body biological rhythm adjusting device according to the present invention;
图2是所述实施例中该装置的电路结构框图。Fig. 2 is a block diagram showing the circuit configuration of the apparatus in the embodiment.
本发明的最佳实施方式BEST MODE FOR CARRYING OUT THE INVENTION
本发明的实施方式Embodiments of the invention
下面将结合附图对本发明实施例作进一步说明。The embodiments of the present invention will be further described below in conjunction with the accompanying drawings.
如图1和图2所示,在本发明的一种人体生物节律调节装置实施例中,该人体生物节律调节装置,包括框架16、控制单元11、调制单元10、发光单元(由标号为1、2、3、4、5、6、7和8的灯组构成)和信息安全单元12;所述框架16用于佩戴在人体上,并作为上述各单元的安装载体,也就是上述各单元均安装上述框架16上;所述控制单元11输出控制信号到所述调制单元10,所述调制单元10将所述控制单元11输出的控制信号作为调制信号对其自身产生的驱动波形进行调制,得到已调制驱动信号并输送到发光单元;所述发光单元(具体来讲,是发光单元中的各灯组)接收所述已调制驱动信号,按所述已调制驱动信号发光并将发出的光投射到佩戴所述框架的使用者的瞳孔的非视觉区域,这些投射的光叠加或不叠加,以复合光的形式对上述非视觉区域进行照射;所述信息安全单元12与所述控制单元11连接,所述控制单元11由所述信息安全单元12中取得使用者的身份信息和控制信号参数,以便针对该使用者输出正确的控制信号,使得所述发光单元发出适于该使用者的光。在本实施例中,所述控制单元11包括微控制器,所述信息安全单元12包括与所述微控制器连接并受其控制的安全加密芯片;所述安全加密芯片中存储由使用者的身份信息、缺省或用户存储的光照参数;所述光照参数用于产生控制信号并使所述发光单元发出设定特性的光线束。As shown in FIG. 1 and FIG. 2, in an embodiment of the human body biological rhythm adjusting device of the present invention, the human biological rhythm adjusting device comprises a frame 16, a control unit 11, a modulating unit 10, and a light emitting unit (reference numeral 1 a lamp set of 2, 3, 4, 5, 6, 7, and 8) and an information security unit 12; the frame 16 is for wearing on a human body, and serves as a mounting carrier for each of the above units, that is, each of the above units The control unit 11 outputs a control signal to the modulation unit 10, and the modulation unit 10 modulates the drive waveform generated by the control signal output by the control unit 11 as a modulation signal. Obtaining a modulated driving signal and transmitting it to the light emitting unit; the light emitting unit (specifically, each light group in the light emitting unit) receives the modulated driving signal, and emits light according to the modulated driving signal Projecting to a non-visual area of the pupil of the user wearing the frame, the projected light being superimposed or not superimposed, illuminating the non-visual area in the form of composite light; the information The whole unit 12 is connected to the control unit 11, and the control unit 11 obtains the user's identity information and control signal parameters from the information security unit 12, so as to output a correct control signal for the user, so that the illumination The unit emits light suitable for the user. In this embodiment, the control unit 11 includes a microcontroller, and the information security unit 12 includes a security encryption chip connected to and controlled by the microcontroller; the security encryption chip is stored by the user. Identity information, default or user stored lighting parameters; the lighting parameters are used to generate a control signal and cause the lighting unit to emit a beam of light of a set characteristic.
换句话说,在本实施例中,上述控制单元11中是不存储任何关于使用者的个人信息、装置的身份信息以及针对该使用者或缺省的光照参数的数据的。所有这些数据都存储在上述信息安全单元12中。当控制单元11需要认证使用者的身份信息、取得缺省或针对使用者的光照参数时,需要通过信息交互由上述信息安全单元12中取得,并且不会保留。每次使用上述信息时都直接由上述信息安全单元12中读取。由于数据存在于上述信息安全单元12中,且该信息安全单元12收到完善的保护,因此,非法取得上述涉及使用者个人隐私信息的可能性较小。In other words, in the present embodiment, the control unit 11 does not store any personal information about the user, identity information of the device, and data for the user or default illumination parameters. All of this data is stored in the information security unit 12 described above. When the control unit 11 needs to authenticate the identity information of the user, obtain the default or the illumination parameter for the user, it needs to be acquired by the information security unit 12 through the information interaction, and is not retained. Each time the above information is used, it is directly read by the above information security unit 12. Since the data exists in the information security unit 12 described above, and the information security unit 12 receives perfect protection, it is less likely that the above-mentioned personal privacy information of the user is illegally obtained.
在本实施例中,所述安全加密芯片(即信息安全单元12)还包括多个分别检测电压高低、输入信号频率高低以及芯片受力状态的传感器,在所述传感器检测到电压、输入信号频率或受力情况异常,判断为所述安全加密芯片遭受攻击时,该芯片将会停止工作或销毁其中存储的所有数据。也就是说,在本实施例中,当上述安全信息芯片安装在电路板上并与上述控制单元11连接之后,即可以防止从电路上使用提高读写或访问频率的方式非法取得信息,也可以防止将该芯片暴力拆卸,进而得到其中的信息。In this embodiment, the security encryption chip (ie, the information security unit 12) further includes a plurality of sensors respectively detecting the voltage level, the input signal frequency, and the chip stress state, and the voltage and the input signal frequency are detected by the sensor. Or the force condition is abnormal, and when it is determined that the security encryption chip is attacked, the chip will stop working or destroy all data stored therein. That is to say, in the embodiment, after the security information chip is mounted on the circuit board and connected to the control unit 11, the information can be prevented from being illegally obtained by using the method of improving the read/write or access frequency. Prevent the violent disassembly of the chip and get the information.
在本实施例中,所述安全加密芯片还包括一个硬件的器件唯一识别码,所述器件唯一识别码用于表示所述人体生物节律调节装置的身份识别码。也就是说,该硬件的器件唯一识别码不仅标记来该器件本身的身份,还标记了该光照装置的身份In this embodiment, the security encryption chip further includes a device unique identification code of the hardware, and the device unique identification code is used to represent the identification code of the human biological rhythm adjustment device. That is, the device unique identification code of the hardware not only marks the identity of the device itself, but also identifies the identity of the lighting device.
在本实施例中,所述非视觉区域包括人体瞳孔范围内与成像无关的区域和眼睛周边的区域;所述光照参数包括:中心波长及其光谱成分、光强度、光谱功率密度、光强度的时间调制频率或/和光强度的时间调制占空比、发光射位置和/或光发射和结束时间。而如图1所示,在一种情况下,所述框架16包括佩戴在人体头部的眼镜框架,所述发光单元分别设置在所述眼镜框架的镜片框的中间部位的上下边沿上。图1中,所述发光单元包括四个,分别设置在所述眼镜框架的左右镜片框的上边沿中间位置和下边沿中间位置。图1中通过连接件9将左右镜片框连接在一起。在一些情况下,上述连接件9也可以是和左右镜片框一体成型的。此外,所述调制模块采用光调制与光谱混频使所述发光单元输出不同时间调制频率、不同波长、不同强度的光,使多个所述发光单元实现不同组合的光在瞳孔处形成复合光。 In this embodiment, the non-vision area includes an area unrelated to imaging and a region around the eye in the pupil region; the illumination parameter includes: a central wavelength and a spectral component thereof, a light intensity, a spectral power density, and a light intensity. Time modulated frequency or/and time modulated duty cycle of light intensity, illuminating shot position and/or light emission and end time. As shown in FIG. 1, in one case, the frame 16 includes eyeglass frames that are worn on the head of the human body, and the light-emitting units are respectively disposed on upper and lower edges of the intermediate portion of the lens frame of the eyeglass frame. In FIG. 1, the light-emitting unit includes four, which are respectively disposed at an intermediate position between an upper edge and a lower edge of the left and right lens frames of the eyeglass frame. In Figure 1, the left and right lens frames are joined together by a connector 9. In some cases, the above connecting member 9 may also be integrally formed with the right and left lens frames. In addition, the modulating module uses light modulation and spectral mixing to cause the illuminating unit to output light of different time modulation frequencies, different wavelengths, and different intensities, so that the plurality of the illuminating units realize different combinations of light to form a composite light at the pupil. .
在本实施例中,每个发光单元(图1中标号为1-8中的任意一个)包括至少一个灯组(图1中每个发光单元包括两个灯组),每个灯组由所述调制单元12输出独立的调制后的驱动信号控制。一个灯组包括至少一个LED和将该灯组内的LED发出的光形成方向一致的光线束的光学结构(图中未示出)。In the present embodiment, each of the light-emitting units (any one of the numbers 1-8 in FIG. 1) includes at least one light group (each light-emitting unit in FIG. 1 includes two light groups), and each light group is provided by Modulation unit 12 outputs independent modulated drive signal control. A group of lamps includes an optical structure (not shown) of at least one of the LEDs and a bundle of rays that align the light emitted by the LEDs within the group of lamps.
总体上来说,在本实施例中,安全芯片具有一个受保护的数据存储区,可将用户信息、光照参数信息等需要保护的数据存储在此,与该安全芯片制造在一起的传感器一旦检测到蛮力探测,即启动自毁程序,毁灭受保护区存储的信息;该安全芯片具有一套约定密钥算法的加密方法,可保护通信信道和通信内容,可在身份认证、病情评估、光照参数下载等通信过程中,启动密钥保护,以便确保受保护信息无法被窃取;每个安全芯片内部内置一个唯一的受保护的标识性硬件编码,该编码可作为信息安全的人体生物节律调节***的用户终端身份证,并由***算法确保该身份证无法被仿冒,并以此可确保人体生物节律调节***用户终端的安全性等等。Generally, in this embodiment, the security chip has a protected data storage area, and data that needs to be protected, such as user information and illumination parameter information, can be stored therein, and the sensor manufactured with the security chip detects once. Brute force detection, which starts the self-destruction program and destroys the information stored in the protected area; the security chip has a set of encryption methods for agreeing the key algorithm, which can protect the communication channel and communication content, and can be used in identity authentication, disease assessment, and illumination parameters. During the communication process, the key protection is activated to ensure that the protected information cannot be stolen; each security chip has a unique protected identification hardware code built in it, which can be used as an information security human biological rhythm adjustment system. The user terminal ID card, and the system algorithm ensures that the ID card cannot be counterfeited, and thereby ensures the security of the human biometric rhythm adjustment system user terminal and the like.
信息安全芯片(即安全芯片)同时把用户登陆信息和人体生物节律调节装置信息联合加密和认证,只有用户登陆信息和人体生物节律调节装置两者在一起才能享受完整的所述信息安全的人体生物节律调节***的个性化服务。即使让不法分子得到两者之一都不能入侵所述***,得到用户的个人信息。同时,安全芯片通过非对称密钥密码技术对用户信息和所述***进行保护。在用户初次身份认证时,安全芯片会根据用户填写的信息有特定的算法产生公私密钥对,公钥可以导出用于信息的加密,只有私钥才能解密。私钥只能存储于安全芯片内部,外部不得访问。The information security chip (ie, the security chip) simultaneously encrypts and authenticates the user login information and the human biological rhythm adjustment device information, and only the user login information and the human biological rhythm adjustment device can enjoy the complete human body of the information security. Personalized service for the rhythm regulation system. Even if the criminals get one of the two can not invade the system, get the user's personal information. At the same time, the security chip protects user information and the system through asymmetric key cryptography. When the user first authenticates, the security chip generates a public-private key pair according to the information filled in by the user. The public key can be used to encrypt the information, and only the private key can be decrypted. The private key can only be stored inside the security chip and must not be accessed externally.
由于安全芯片采用了非对称密钥加密,只有同时拥有所述人体生物节律调节装置和私钥才能得到用户信息和进入心***,缺一不可。私钥和利用私钥解密数据的过程都不会出安全芯片,保证了私钥和信息的安全。通过数学计算理论上发生伪造和非正常解密的概率大约为2的80次幂分之一,正常使用是绝对安全的。Since the security chip uses asymmetric key encryption, it is indispensable to have both the human biological rhythm adjustment device and the private key to obtain user information and enter the heart system. The private key and the process of decrypting data using the private key will not release the security chip, ensuring the security of the private key and information. The probability of counterfeiting and abnormal decryption theoretically by mathematical calculation is about one of the 80th power of 2, and normal use is absolutely safe.
在本实施例中的一种情况下,在正式使用人体生物节律调节装置之前应该使用该人体生物节律调节装置上的激活码,在官方网站或者指定的专卖店激活。激活过程会根据激活码给所述装置加载对应的加密算法,加密算法会安全的烧写信息安全芯片中,例如,在Z8IDA芯片的ROM中,外部接口不能访问和更改;加密算法也会登记在云服务器相应区域上。In one case in this embodiment, the activation code on the human biological rhythm adjustment device should be used before activation of the human biological rhythm adjustment device, and activated on the official website or a designated specialty store. The activation process loads the device with a corresponding encryption algorithm according to the activation code. The encryption algorithm will safely program the information security chip. For example, in the ROM of the Z8IDA chip, the external interface cannot be accessed and changed; the encryption algorithm is also registered in the The corresponding area of the cloud server.
开始时,使用者按下所述人体生物节律机械开关,开启人体生物节律调节装置。Initially, the user presses the human body rhythm mechanical switch to turn on the human biological rhythm adjustment device.
若使用者没有应用所述的手机APP,那么只能应用***默认光照参数或者上一次使用光照参数来使用所述的人体生物节律调节装置。本次使用信息会保存下来,如下次使用所述手机APP开启所述人体生物节律调节装置,则会自动上传到手机APP,同时所述手机APP也会同步到所述云服务器。值得一提的是,该装置是通过和上述控制单元11相连接的通信模块,通常是蓝牙模块来实现在上述手机(移动终端)和上述装置之间的信息传输的。If the user does not apply the mobile phone APP, the human body biometric rhythm adjustment device can only be used by applying the system default illumination parameter or the last time using the illumination parameter. The usage information will be saved, and the human body biological rhythm adjustment device is opened by using the mobile phone APP as follows, and the mobile APP is automatically uploaded to the mobile phone APP, and the mobile phone APP is also synchronized to the cloud server. It is worth mentioning that the device transmits information between the above-mentioned mobile phone (mobile terminal) and the above-mentioned device through a communication module connected to the above-mentioned control unit 11, usually a Bluetooth module.
若是使用者已经下载所述手机APP,那么就看使用者是否已经经过身份认证,要是已经认证就会出现登陆的界面;要是没有认证,就必须先进行认证。If the user has downloaded the mobile phone APP, then it depends on whether the user has been authenticated. If the user has already authenticated, the login interface will appear; if there is no authentication, the user must be authenticated first.
认证时,首先填写个人信息,包括账号、设置个人密码、手机号码、所述人体生物节律调节装置的ID等信息。When authenticating, first fill in personal information, including account number, personal password, mobile phone number, ID of the human body rhythm adjustment device, and the like.
使用者填写的信息会通过手机的蓝通信牙模块发送到所述体生物节律调节装置,Z8IDA芯片的ID与生物节律调节装置ID关联起来,然后加密算法加密根据关联的信息和用户填写的信息生成公私密钥对。私钥会妥善的保存在Z8IDA芯片的密钥区,外部不能直接访问密钥区根不能更改私钥;公钥既会存储于Z8IDA芯片也会上传到手机APP中,用于加密和解密。The information filled in by the user is sent to the body biological rhythm adjustment device through the blue communication module of the mobile phone, and the ID of the Z8IDA chip is associated with the biological rhythm adjustment device ID, and then the encryption algorithm encryption is generated according to the associated information and the information filled in by the user. Public and private key pair. The private key will be stored in the key area of the Z8IDA chip. The external key cannot be directly accessed. The public key cannot be changed. The public key is stored in the Z8IDA chip and uploaded to the mobile APP for encryption and decryption.
认证完成后,要求使用者登录,否者拒绝提供服务界面。当使用者填写好登录的账号和密码则登录成功,手机APP会访问云服务器,云服务器会在APP访问数据中识别出人体生物节律调节装置的激活码和公钥。登记在云服务器根据人体生物节律调节装置的激活码找出对应的加密算法,并且该加密算法会利用收到的公钥生成私钥,私钥会保存在云服务器。After the authentication is completed, the user is required to log in, otherwise the service interface is refused. When the user fills in the login account and password, the login is successful, and the mobile APP accesses the cloud server, and the cloud server identifies the activation code and public key of the human biological rhythm adjustment device in the APP access data. The cloud server registers the activation code according to the human body rhythm adjustment device to find a corresponding encryption algorithm, and the encryption algorithm generates the private key by using the received public key, and the private key is saved in the cloud server.
云服务器会随机的在收到访问数据中摘取一段数据,然后利用特殊的算法生成一段序列号用于签名,最后会用云服务器的私钥加密这段数字签名,发送给手机APP。The cloud server randomly extracts a piece of data from the received access data, and then uses a special algorithm to generate a serial number for signature. Finally, the digital signature of the cloud server is encrypted and sent to the mobile APP.
用户的手机APP收到消息后,手机APP里的公钥会解密;然后用户填好数字签名,并且利用公钥加密所填数字签名发送到云服务器。云服务器会通过私钥解密,然后匹配前后两次数字签名。匹配成功,说明这个通信过程没后遭到非法窃取和篡改,可以给用户提供服务页面,否则拒绝提供服务页面。After the user's mobile APP receives the message, the public key in the mobile APP will be decrypted; then the user fills in the digital signature and sends the digital signature filled with the public key to the cloud server. The cloud server decrypts it with a private key and then matches the two digital signatures before and after. The matching is successful, indicating that the communication process has not been illegally stolen and tampered, and the user can be provided with a service page, otherwise the service page is refused.
安全芯片自身带有大量的传感器,具有主动防御能力。一旦遭到非法探测,立即停止工作。每一片安全芯片都有唯一的ID与之绑定,采用国际通用加密算法和国家加密算法相结合,加密级别达金融级。The security chip itself has a large number of sensors and has active defense capabilities. Once illegally detected, stop working immediately. Each piece of security chip has a unique ID bound to it, using an international common encryption algorithm combined with a national encryption algorithm, the encryption level reaches the financial level.
安全芯片对用户的个人隐私要加以保护。首先在初次使用时要填写个人信息和所述人体生物节律调节装置的ID,这能确保使用者信息真实性,使用产品是正品而非伪造。The security chip protects the user's personal privacy. First, the personal information and the ID of the human biological rhythm adjustment device are filled in at the time of initial use, which ensures the authenticity of the user information, and the use of the product is genuine rather than forged.
使用者每一次通过所述手机APP使用本发明时,都要求登陆验证。验证成功后,预留手机号码就会收到动态手机口令,验证失败者拒绝提供服务。用户只有成功填写动态手机口令之后,才能进入所述***提供的服务页面。不填或者错填手机动态口令,所述***都会拒绝提供服务页面。Each time the user uses the present invention through the mobile APP, login verification is required. After the verification is successful, the mobile phone number will be received when the phone number is reserved, and the verification failure will refuse to provide the service. The user can enter the service page provided by the system only after successfully filling in the dynamic mobile phone password. If you do not fill in or misfill the mobile phone dynamic password, the system will refuse to provide the service page.
安全芯片在用户首次使用时会填写所述人体生物节律调节装置的ID,这个ID会跟安全芯片内出厂前植入的人体生物节律调节装置ID相互匹配,匹配成功者把芯片ID和人体生物节律调节装置ID绑定在一起,人体生物节律调节装置也就得到认证,表明该装置为正品。否者就是假冒伪劣产品,芯片立即停止工作。所述人体生物节律调节装置在出厂前会内置参数和光照参数,这些数据都经过CA安全芯片加密,还要经过检验,检验成功才能出厂。The security chip fills in the ID of the human biological rhythm adjustment device when the user first uses it, and the ID matches the human biological rhythm adjustment device ID implanted in the security chip before the factory, and the matching person takes the chip ID and the human biological rhythm. The adjustment device ID is bound together, and the human biological rhythm adjustment device is also certified, indicating that the device is genuine. Otherwise, it is a fake and shoddy product, and the chip stops working immediately. The human biological rhythm adjustment device will have built-in parameters and illumination parameters before leaving the factory. These data are encrypted by the CA security chip, and must be inspected and tested before being shipped.
手机APP与云服务器之间的通信都要进过安全芯片的加密才能在两者之间发送,加密采用非对称加密,而这些通信信息只有经过安全芯片才能解密出来。The communication between the mobile APP and the cloud server must be encrypted by the security chip to be sent between the two. The encryption uses asymmetric encryption, and the communication information can only be decrypted through the security chip.
由于在***或装置中增加了上述信息安全单元(安全芯片),所以既能通过信道加密确保身份认证、数据交换等通信过程的安全,又能通过传感自毁等措施确保存储在芯片安全区内的用户、光照参数等保密信息的安全无泄漏。从而确保用户及其治疗信息安全、杜绝产品仿冒、非法接入等。Since the above information security unit (security chip) is added to the system or device, the communication process such as identity authentication and data exchange can be ensured by channel encryption, and the storage in the chip security zone can be ensured by measures such as self-destruction. The confidential information such as users and lighting parameters are safe and leak-free. In order to ensure the safety of users and their treatment information, to prevent product counterfeiting, illegal access and so on.
此外,由于上述信息安全单元的存在,使得在使用光照的过程中,专业人员可以根据该使用者的具体情况,包括该使用者的身体状态、年龄、症状的类型以及症状的改变情况等,针对该使用者给出具有较高针对性的光照参数集,从而使得使用者能够得到较好的改善。甚至可以在现场将上述光照参数集植入,使得该使用者能够在日常使用,并在下一次接待该使用者是根据其症状的改变调节上述光照参数集。上述安全信息单元的存在,一方面保证了这些参数集不会被非法盗用,提高了专业人员的积极性,另一方面,也保证了这些光照参数集不会被用于不适合的人群,因为这些光照参数集是根据具体的使用者状态得到的,可能并不是很适合其他人,防止了被滥用带来的可能存在的消极后果。In addition, due to the existence of the above information security unit, in the process of using the illumination, the professional can be based on the specific situation of the user, including the physical state of the user, the age, the type of symptoms, and the change of symptoms, etc. The user gives a highly targeted set of lighting parameters so that the user can get better improvements. The above illumination parameter set can even be implanted on site so that the user can use it on a daily basis, and the next time the user is received, the above lighting parameter set is adjusted according to changes in his symptoms. The existence of the above-mentioned security information unit ensures that these parameter sets are not illegally stolen, which improves the enthusiasm of the professionals, and on the other hand, ensures that these lighting parameter sets are not used for unsuitable people, because these The lighting parameter set is based on the specific user state and may not be very suitable for others, preventing the possible negative consequences of being abused.
以上所述实施例仅表达了本发明的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对本发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。因此,本发明专利的保护范围应以所附权利要求为准。 The above-mentioned embodiments are merely illustrative of several embodiments of the present invention, and the description thereof is more specific and detailed, but is not to be construed as limiting the scope of the invention. It should be noted that a number of variations and modifications may be made by those skilled in the art without departing from the spirit and scope of the invention. Therefore, the scope of the invention should be determined by the appended claims.

Claims (10)

  1. 一种人体生物节律调节装置,其特征在于,包括框架、控制单元、调制单元、发光单元和信息安全单元;所述框架用于佩戴在人体上,并作为上述单元的安装载体;所述控制单元输出控制信号到所述调制单元,所述调制单元将所述控制单元输出的控制信号作为调制信号对其自身产生的驱动波形进行调制,得到已调制驱动信号;所述发光单元接收所述已调制驱动信号,按所述已调制驱动信号发光并将发出的光投射到佩戴所述框架的使用者的瞳孔的非视觉区域;所述信息安全单元与所述控制单元连接,所述控制单元由所述信息安全单元中取得使用者的身份信息和控制信号参数,以便针对该使用者输出正确的控制信号,使得所述发光单元发出适于该使用者的光。A human body biological rhythm adjusting device, comprising: a frame, a control unit, a modulating unit, a light emitting unit and an information security unit; the frame is for wearing on a human body and as a mounting carrier of the unit; the control unit Outputting a control signal to the modulating unit, the modulating unit modulating a driving signal generated by the control unit as a modulating signal to a driving waveform generated by the modulating unit to obtain a modulated driving signal; and the illuminating unit receives the modulated signal Driving a signal that emits light according to the modulated drive signal and projects the emitted light to a non-visual area of a pupil of the user wearing the frame; the information security unit is coupled to the control unit, the control unit The information security unit obtains the identity information and control signal parameters of the user to output a correct control signal for the user, such that the light unit emits light suitable for the user.
  2. 根据权利要求1所述的人体生物节律调节装置,其特征在于,所述控制单元包括微控制器,所述信息安全单元包括与所述微控制器连接并受其控制的安全加密芯片;所述安全加密芯片中存储由使用者的身份信息、缺省或用户存储的光照参数;所述光照参数用于产生控制信号并使所述发光单元发出设定特性的光线束。The human body biological rhythm adjusting device according to claim 1, wherein said control unit comprises a microcontroller, said information security unit comprising a security encryption chip connected to and controlled by said microcontroller; The security encryption chip stores the illumination information stored by the user, the default or the user, and the illumination parameter is used to generate a control signal and cause the illumination unit to emit a bundle of light of a set characteristic.
  3. 根据权利要求2所述的人体生物节律调节装置,其特征在于,所述安全加密芯片还包括多个分别检测电压高低、输入信号频率高低以及芯片受力状态的传感器,在所述传感器检测到电压、输入信号频率或受力情况异常,判断为所述安全加密芯片遭受攻击时,销毁其中存储的所有数据。The human body biological rhythm adjusting device according to claim 2, wherein the security encryption chip further comprises a plurality of sensors for detecting a voltage level, an input signal frequency, and a chip stress state, wherein the sensor detects the voltage. If the input signal frequency or the force condition is abnormal, it is determined that the security encryption chip is attacked, and all the data stored therein is destroyed.
  4. 根据权利要求3所述的人体生物节律调节装置,其特征在于,所述安全加密芯片还包括一个硬件的器件唯一识别码,所述器件唯一识别码用于表示所述人体生物节律调节装置的身份识别码。The human body biological rhythm adjusting device according to claim 3, wherein said secure encryption chip further comprises a hardware device unique identification code, and said device unique identification code is used to indicate the identity of said human biological rhythm adjusting device Identifier.
  5. 根据权利要求4所述的人体生物节律调节装置,其特征在于,所述非视觉区域包括人体瞳孔范围内与成像无关的区域和眼睛周边的区域;所述光照参数包括:中心波长及其光谱成分、光强度、光谱功率密度、光强度的时间调制频率或/和光强度的时间调制占空比、发光射位置和/或光发射和结束时间。The human body biological rhythm adjusting device according to claim 4, wherein the non-visual area comprises an area unrelated to imaging and a region around the eye in the pupil region; the illumination parameter comprises: a central wavelength and a spectral component thereof , light intensity, spectral power density, time modulation frequency of light intensity or/and time modulation duty cycle of light intensity, luminescence position and/or light emission and end time.
  6. 根据权利要求1-5任意一项所述的人体生物节律调节装置,其特征在于,所述框架包括佩戴在人体头部的眼镜框架,所述发光单元分别设置在所述眼镜框架的镜片框的中间部位的上下边沿上。The human body biological rhythm adjusting device according to any one of claims 1 to 5, wherein the frame comprises a spectacle frame worn on a human head, and the light emitting units are respectively disposed on the lens frame of the spectacle frame On the upper and lower edges of the middle part.
  7. 根据权利要求6所述的人体生物节律调节装置,其特征在于,所述发光单元包括四个,分别设置在所述眼镜框架的左右镜片框的上边沿中间位置和下边沿中间位置。The human body biological rhythm adjusting device according to claim 6, wherein the light emitting unit comprises four lightly disposed at an intermediate position between the upper edge of the left and right lens frames of the eyeglass frame and a middle position of the lower edge.
  8. 根据权利要求7所述的人体生物节律调节装置,其特征在于,所述调制模块采用光调制与光谱混频使所述发光单元输出不同时间调制频率、不同波长、不同强度的光,使多个所述发光单元实现不同组合的光在瞳孔处形成复合光。The human body biological rhythm adjusting device according to claim 7, wherein the modulation module uses light modulation and spectral mixing to cause the light emitting unit to output light of different time modulation frequencies, different wavelengths, and different intensities, so as to The light unit achieves different combinations of light to form composite light at the pupil.
  9. 根据权利要求8所述的人体生物节律调节装置,其特征在于,每个发光单元包括至少一个灯组,每个灯组由所述调制单元输出独立的调制后的驱动信号控制。The human body biological rhythm adjusting apparatus according to claim 8, wherein each of the light emitting units includes at least one light group, and each of the light groups is controlled by the modulation unit outputting an independent modulated driving signal.
  10. 根据权利要求9所述的人体生物节律调节装置,其特征在于,一个灯组包括至少一个LED和将该灯组内的LED发出的光形成方向一致的光线束的光学结构。The human body biological rhythm adjusting apparatus according to claim 9, wherein one of the light groups includes an optical structure of at least one of the LEDs and a light beam that aligns the light emitted by the LEDs in the light group.
     
     
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