WO2018210002A1 - Interference processing method and device - Google Patents

Interference processing method and device Download PDF

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Publication number
WO2018210002A1
WO2018210002A1 PCT/CN2018/074335 CN2018074335W WO2018210002A1 WO 2018210002 A1 WO2018210002 A1 WO 2018210002A1 CN 2018074335 W CN2018074335 W CN 2018074335W WO 2018210002 A1 WO2018210002 A1 WO 2018210002A1
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WO
WIPO (PCT)
Prior art keywords
signal
card reader
nfc card
matching result
error indication
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PCT/CN2018/074335
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French (fr)
Chinese (zh)
Inventor
林君
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中兴通讯股份有限公司
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Publication of WO2018210002A1 publication Critical patent/WO2018210002A1/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B5/00Near-field transmission systems, e.g. inductive or capacitive transmission systems
    • H04B5/70Near-field transmission systems, e.g. inductive or capacitive transmission systems specially adapted for specific purposes
    • H04B5/72Near-field transmission systems, e.g. inductive or capacitive transmission systems specially adapted for specific purposes for local intradevice communication
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K7/00Methods or arrangements for sensing record carriers, e.g. for reading patterns
    • G06K7/10Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K7/00Methods or arrangements for sensing record carriers, e.g. for reading patterns
    • G06K7/10Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation
    • G06K7/10009Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation sensing by radiation using wavelengths larger than 0.1 mm, e.g. radio-waves or microwaves
    • G06K7/10158Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation sensing by radiation using wavelengths larger than 0.1 mm, e.g. radio-waves or microwaves methods and means used by the interrogation device for reliably powering the wireless record carriers using an electromagnetic interrogation field
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B5/00Near-field transmission systems, e.g. inductive or capacitive transmission systems
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B5/00Near-field transmission systems, e.g. inductive or capacitive transmission systems
    • H04B5/70Near-field transmission systems, e.g. inductive or capacitive transmission systems specially adapted for specific purposes
    • H04B5/77Near-field transmission systems, e.g. inductive or capacitive transmission systems specially adapted for specific purposes for interrogation

Definitions

  • the present disclosure relates to, but is not limited to, the field of wireless communication technologies, and more particularly to interference processing methods and apparatus.
  • NFC Near Field Communication
  • NFC technology Common applications of NFC technology are, for example, bus cards, company access cards, etc., cards and card readers are equipped with NFC modules, and NFC modules work in half-duplex mode.
  • the amplitude of the modulated signal received by the card is on the order of 100 millivolts (mv), and the amplitude of the modulated signal received by the card reader is on the order of 10 mv. Therefore, the communication performance/communication distance of the NFC module is mainly limited.
  • the decision threshold of the card reader detection signal is unreasonable, it is easy to misinterpret the interference signal as erroneous data, thereby Affect the NFC communication process.
  • the antenna performance of the NFC module is weak, the communication distance is small, the probability of transaction recognition is high, and the user experience is poor.
  • mode one optimize the power of the reader and the direction of the signal.
  • this method can increase the communication distance, it is limited by the specification limit. After reaching a certain performance, the effect is limited.
  • set a reasonable decision threshold For example, many reader manufacturers can lower the decision threshold as much as possible. Without changing the performance and directionality of the NFC antenna, the reader can detect weaker signals and improve communication distance. However, if the decision threshold is set too low, the probability of erroneously detecting the interference signal increases.
  • Embodiments of the present disclosure provide an interference processing method including the steps of: a Near Field Communication (NFC) card reader transmitting a request signal; when the NFC card reader receives a modulated signal and fails decoding the modulated signal, Matching the modulation signal with a preset condition to obtain a matching result; and the NFC card reader selects whether to send an error indication signal according to the matching result.
  • NFC Near Field Communication
  • the step of selecting, by the NFC card reader, whether to send an error indication signal according to the matching result comprises: when the matching result is that the matching is successful, the NFC card reader Transmitting the error indication signal; when the matching result is a match failure, the NFC card reader does not send the error indication signal.
  • the interference processing method as described above further includes: after the NFC card reader sends the request signal, the NFC card reader determines the preset condition, wherein the NFC card reader according to the request Determining a time range in which the response signal is received as the preset condition, at least one of a type of a signal and a time range statistic value of the NFC card reader receiving the response signal, or the NFC card reader according to the Determining, according to at least one of a type of the request signal, a content requested by the request signal, and a data length statistical value of the response signal received by the NFC card reader, a data length of the response signal as the preset condition .
  • the step of the NFC card reader selecting whether to send an error indication signal according to the matching result includes: : when the matching result is that the modulation signal is within the determined time range, the NFC card reader sends the error indication signal; when the matching result is that the modulation signal is in the determined time range In addition, the NFC card reader does not transmit the error indication signal.
  • the NFC card reader when the preset condition is a data length of the response signal, and the data length is a data length range, the NFC card reader is configured according to the matching result.
  • the step of selecting whether to send the error indication signal includes: when the matching result is that the data length of the modulation signal is within the data length range, the NFC card reader sends the error indication signal; when the matching result The NFC card reader does not transmit the error indication signal when the data length of the modulation signal is outside the data length range.
  • the NFC card reader when the preset condition is a data length of the response signal, and the data length is a data length set, the NFC card reader is configured according to the matching result.
  • the step of selecting whether to send the error indication signal includes: when the matching result is that the data length of the modulation signal is equal to any one of the data length sets, the NFC card reader sends the error indication signal; The NFC card reader does not transmit the error indication signal when the matching result is that the data length of the modulation signal is not equal to each element in the data length set.
  • the interference processing method as described above further includes: after the NFC card reader sends the request signal, the NFC card reader determines the preset condition, wherein the NFC card reader determines to receive the location Determining a probability threshold of the response signal as the preset condition, and determining a probability coefficient corresponding to the modulated signal received at different times according to a time when the request signal is sent, or the NFC card reader is preset according to the NFC
  • the signal type determines the preset feature information of the response signal as the preset condition.
  • the NFC card reader when the preset condition is the probability threshold of receiving the response signal, performs the modulation signal with the preset condition.
  • the step of matching includes: the NFC card reader acquiring an initial probability of the modulated signal according to at least one of a characteristic, an intensity, and a data length of the modulated signal; the NFC card reader calculating the modulated signal Generating, by a product of an initial probability and a probability coefficient corresponding to the modulation signal, a signal probability, and comparing the signal probability with the probability threshold, the NFC card reader selecting whether to send an error indication signal according to the matching result
  • the step includes: when the matching result is that the signal probability is greater than or equal to the probability threshold, the NFC card reader sends the error indication signal; when the matching result is that the signal probability is less than the probability threshold The NFC card reader does not transmit the error indication signal.
  • the NFC card reader matches the modulation signal with the preset condition
  • the step of the NFC card reader selecting whether to send the error indication signal according to the matching result comprises: when the matching result is the feature information of the modulation signal and the response signal When the matching degree of the feature information is greater than or equal to the feature threshold, the NFC card reader sends the error indication signal; when the matching result is the feature information of the modulation signal and the preset feature information of the response signal The NFC card reader does not transmit the error indication signal when the degree of matching is less than the feature threshold.
  • the interference processing method as described above further includes: when the NFC card reader does not receive the response signal within a preset response time, resending the request signal.
  • the embodiment of the present disclosure further provides an interference processing apparatus, including: a sending module, configured to send a request signal; a receiving module, configured to receive a modulated signal; and a decoding module, configured to decode the modulated signal received by the receiving module; a matching module, configured to: when the decoding module fails to decode the modulated signal, match the modulated signal with a preset condition to obtain a matching result, where the sending module is further configured to obtain according to the matching module The matching result selects whether to send an error indication signal.
  • a sending module configured to send a request signal
  • a receiving module configured to receive a modulated signal
  • a decoding module configured to decode the modulated signal received by the receiving module
  • a matching module configured to: when the decoding module fails to decode the modulated signal, match the modulated signal with a preset condition to obtain a matching result, where the sending module is further configured to obtain according to the matching module
  • the matching result selects whether to send an error indication signal.
  • the sending by the sending module, whether to send the error indication signal according to the matching result, the sending module sends the error indication signal when the matching result is that the matching is successful.
  • the sending module does not send the error indication signal.
  • the interference processing device as described above further includes: a determining module, configured to determine the preset condition, wherein the determining module receives the response signal according to the type of the request signal and the NFC card reader At least one of the time range statistics, determining a time range in which the response signal is received as the preset condition, or according to a type of the request signal, a content requested by the request signal, and the NFC card reading At least one of a data length statistical value of the response signal received by the device, determining a data length of the response signal as the preset condition, or determining a probability threshold for receiving the response signal as the preset condition, and Determining, according to a time when the request signal is sent, a probability coefficient corresponding to the modulated signal received at different times, or determining, according to a preset signal type in the NFC, preset feature information of the response signal as the preset condition .
  • a determining module configured to determine the preset condition, wherein the determining module receives the response signal according to the type of the request
  • the sending module selects whether to send an error indication according to the matching result.
  • the signal includes: when the matching result is that the modulation signal is within the determined time range, the sending module sends the error indication signal; when the matching result is that the modulation signal is in the determined time range When the device is outside, the sending module does not send the error indication signal.
  • the sending module when the preset condition determined by the determining module is a data length of the response signal, and the data length is a data length range, the sending module is configured according to Selecting whether to send the error indication signal by the matching result includes: when the matching result is that the data length of the modulation signal is within the data length range, the sending module sends the error indication signal; when the matching result is The transmitting module does not transmit the error indication signal when the data length of the modulation signal is outside the data length range.
  • the sending module when the preset condition determined by the determining module is a data length of the response signal, and the data length is a data length set, the sending module is configured according to Selecting whether to send the error indication signal by the matching result includes: when the matching result is that the data length of the modulation signal is equal to any one of the data length sets, the sending module sends the error indication signal; The transmitting module does not transmit the error indication signal when the matching result is that the data length of the modulation signal is not equal to each element in the data length set.
  • the matching module when the preset condition determined by the determining module is the probability threshold of receiving the response signal, includes: an acquiring unit, configured to: Acquiring at least one of a characteristic, an intensity, and a data length of the modulated signal, an initial probability of acquiring the modulated signal; a calculating unit, configured to calculate an initial probability of the modulated signal acquired by the acquiring unit, and determined by the determining module And a matching unit, configured to compare a signal probability calculated by the calculating unit with a probability threshold determined by the determining module, where the sending module selects according to the matching result Whether the error indication signal is sent includes: when the matching result is that the signal probability is greater than or equal to the probability threshold, the sending module sends the error indication signal; when the matching result is that the signal probability is less than the The probability that the transmission module does not transmit the error indication signal.
  • the matching module compares the modulation signal with the pre- Setting the condition to match includes: matching the feature information of the modulated signal with the preset feature information of the response signal, wherein the feature information of the modulated signal includes a modulation mode, an amplitude, and a data length of the modulated signal.
  • the sending module selecting whether to send an error indication signal includes: when the matching result is that the matching degree of the feature information of the modulation signal and the preset feature information of the response signal is greater than or When the value is equal to the feature threshold, the sending module sends the error indication signal; when the matching result is that the matching degree of the feature information of the modulated signal and the preset feature information of the response signal is less than the feature threshold, The transmitting module does not transmit the error indication signal.
  • the sending module is further configured to resend the request signal when the receiving module does not receive the response signal within a preset response time.
  • Embodiments of the present disclosure also provide an interference processing apparatus including a memory and a processor, the memory is configured to save executable instructions, and the processor is configured to execute the executable instructions saved by the memory to perform the following operations Transmitting a request signal; when receiving the modulated signal and decoding the modulated signal fails, matching the modulated signal with a preset condition to obtain a matching result; and selecting whether to send an error indication signal according to the matching result.
  • An embodiment of the present disclosure further provides a computer readable storage medium storing computer executable instructions, and when the processor executes the computer executable instructions, performing an operation of: transmitting a request signal; When receiving the modulated signal and decoding the modulated signal fails, the modulated signal is matched with a preset condition to obtain a matching result; and whether to send an error indication signal is selected according to the matching result.
  • the NFC card reader waits for a response signal after transmitting the request signal, and when the NFC card reader receives the modulation signal and fails to decode the modulated signal, the modulation signal is pre- The condition is matched, and whether the error indication signal is sent according to the obtained matching result, the preset condition can reflect the characteristic of the response signal to some extent, and therefore, the matching result can reflect the similarity between the modulated signal and the response signal.
  • the NFC card reader sends an error indication signal according to the degree of similarity between the modulation signal and the response signal, so that the interference signal can be effectively misjudged as an error signal, thereby improving the reliability of the NFC card reader. Ensure the sensitivity of communication in long-distance areas.
  • FIG. 1 is a schematic diagram of a communication flow of an NFC technology
  • FIG. 2 is a schematic diagram of a principle of sending data by a card in an NFC technology
  • FIG. 3 is a schematic flow chart of a communication abnormality of an NFC technology
  • FIG. 4 is a flowchart of an interference processing method according to an embodiment of the present disclosure.
  • FIG. 5 is a flowchart of another interference processing method according to an embodiment of the present disclosure.
  • FIG. 6 is a schematic diagram of an application scenario of an interference processing method according to an embodiment of the present disclosure.
  • FIG. 7 is a schematic diagram of another application scenario of an interference processing method according to an embodiment of the present disclosure.
  • FIG. 8 is a schematic diagram of still another application scenario of an interference processing method according to an embodiment of the present disclosure.
  • FIG. 9 is a schematic diagram of still another application scenario of an interference processing method according to an embodiment of the present disclosure.
  • FIG. 10 is a schematic diagram of still another application scenario of an interference processing method according to an embodiment of the present disclosure.
  • FIG. 11 is a schematic structural diagram of an interference processing apparatus according to an embodiment of the present disclosure.
  • FIG. 12 is a schematic structural diagram of another interference processing apparatus according to an embodiment of the present disclosure.
  • FIG. 13 is a schematic structural diagram of still another interference processing apparatus according to an embodiment of the present disclosure.
  • Step 1 shows a communication flow diagram of an NFC technology, as shown in FIG. 1, including the following steps: Step 1, the NFC card reader sends a request signal; Step 2, the card returns a response signal; Step 3, NFC card reader An error signal is detected; in step 4, the NFC card reader sends an error indication signal R (NAK) to the card; in step 5, the card resends the response signal.
  • Step 1 the NFC card reader sends a request signal
  • Step 2 the card returns a response signal
  • Step 3 NFC card reader
  • An error signal is detected
  • step 4 the NFC card reader sends an error indication signal R (NAK) to the card
  • step 5 the card resends the response signal.
  • NAK error indication signal
  • a decision threshold is preset in the NFC reader, and when the received modulated signal (for example, the response signal in step 2 or other interference signal) exceeds the decision threshold, decoding is initiated.
  • the received modulated signal for example, the response signal in step 2 or other interference signal
  • the NFC card reader frequently sends an error indication signal due to erroneous detection of an interference signal
  • the card will enter an infinite loop, that is, discarding data, processing data, preparing to transmit data, and interrupting transmission, thereby
  • the entire NFC communication process is confusing, causing communication failure.
  • the interference signal increases. If the decision threshold is set too low, the NFC reader will fail to decode because the interference signal exceeds the decision threshold, thereby erroneously sending an error indication signal into the communication abnormal process, resulting in a close-range area.
  • the communication success rate is reduced, that is, the reliability of NFC communication cannot be guaranteed.
  • NFC communication includes the following two key communication mechanisms: mechanism 1, the card obtains the energy emitted by the NFC reader by electromagnetic coupling to operate; mechanism 2, the card transmits the signal to the NFC reader by changing the load.
  • the resistor R1 in FIG. 2 is a load resistor when the card is in operation, and the resistor R2 is a load resistor that can be connected and disconnected.
  • the card switch K When the card switch K is closed, the load resistor R2 is connected to the circuit, the card load becomes large, and the voltage (point A) detected by the card reader is lowered.
  • the load resistor R2 When the card switch K is turned on, the load resistor R2 is not connected to the circuit, the card load becomes small, and the voltage (point A) detected by the card reader rises.
  • the power consumption of the card varies with the operating state, and the equivalent load resistance R1 also changes, causing the voltage at the reader end to change. If the decision threshold of the NFC reader is low, the change of the resistor R1 is judged as the access and non-access of the resistor R2, that is, the card itself generates strong interference, and the NFC card reader and card The closer the distance, the more obvious the interference.
  • the card reader immediately sends an error indication signal. After the card receives the error indication signal, it resends the response signal, transmits again, and reads the card. The device correctly receives the response signal, thereby completing a normal signaling interaction process, that is, the communication flow shown in FIG.
  • FIG. 3 shows a flow diagram of a communication anomaly of NFC technology. It can be seen that the misinterpretation of the interference signal as the response signal sent by the card has a serious impact on the NFC communication process. At present, in NFC communication, it is urgent to provide an interference processing method that can effectively distinguish between an interference signal and a response signal transmitted by a card.
  • the NFC card reader in the following embodiments of the present disclosure is a card reader configured with an NFC module, and can be a card reader of a bus card and a company access card.
  • a card reader, or a terminal device equipped with an NFC module for implementing the function of the NFC card reader
  • the card interacting with the NFC card reader may be a bus card, an access card or a mobile terminal configured with an NFC module ( Used to implement the function of the card).
  • the following specific embodiments of the present disclosure may be combined with each other, and the same or similar concepts or processes may not be described in some embodiments.
  • FIG. 4 is a flowchart of an interference processing method according to an embodiment of the present disclosure.
  • the method may be performed by an interference processing device, and the interference processing device may be combined by hardware and software.
  • the interference processing device can be integrated in the processor of the NFC card reader for use by the processor.
  • the interference processing method of the embodiment of the present disclosure may include the following steps S110 to S130.
  • the NFC card reader sends a request signal.
  • the interference processing method provided by the embodiment of the present disclosure is a processing method in which an NFC card reader detects a modulated signal and performs interference determination in NFC communication.
  • the NFC communication process includes an initialization process and a signaling transmission process, and the card is close to the NFC card reader to trigger communication.
  • the signaling transmission process is as shown in FIG. 1 above, and the interference processing method provided by the embodiment of the present disclosure is mainly directed to the NFC.
  • the signaling transmission process in communication that is, the process of performing data communication after initialization has been completed.
  • the NFC card reader in the embodiment of the present disclosure may wait for receiving the response signal after transmitting the request signal, and perform a response operation according to the response signal.
  • the NFC card reader when receiving the modulation signal and decoding the modulation signal fails, matches the modulation signal with a preset condition to obtain a matching result, where the decoded modulation signal is a signal whose intensity is greater than or equal to the interference threshold.
  • the NFC card reader may receive various modulated signals after transmitting the request signal and waiting for receiving the response signal, and the received modulated signal may be a response of the card transmission.
  • the signal may also be an interference signal in the environment.
  • the NFC reader After receiving the modulated signal, the NFC reader first determines whether the modulated signal is greater than or equal to the interference threshold (ie, a predetermined threshold of the NFC reader), and when the modulated signal is greater than or equal to the interference threshold, triggering The modulated signal is decoded. If the decoding fails, the modulated signal may be an error signal. However, the modulated signal may also be an interference signal.
  • the error indication signal is not sent first, but the modulation signal is matched with the preset condition to obtain a matching result.
  • the NFC card reader selects whether to send an error indication signal according to the matching result.
  • the NFC card reader when the NFC card reader receives the modulation signal greater than or equal to the interference threshold and fails to decode the modulation signal, the modulation signal is matched with the preset condition of the reception response, and a The matching result can reflect whether the modulated signal is similar to the error signal or the interference signal to some extent. At this time, the NFC card reader can select to send the error indication signal or not to send the error indication signal according to the matching result.
  • the matching result obtained by the NFC card reader indicates that the modulated signal is an interference signal
  • the interference signal is misjudged as an error signal, which affects the entire flow of the NFC communication, and the method provided by the embodiment of the present disclosure
  • the preset condition may be configured for the response signal, that is, the modulation signal with a higher degree of matching with the preset condition may be regarded as an error signal sent by the card, and the modulation with a lower matching degree with the preset condition.
  • the signal can be considered as an interference signal, and the similarity of the matching can be pre-configured by the designer. For example, when the modulated signal completely meets the preset condition, the matching is considered to be successful, and the modulated signal is an error signal, for example, in the modulated signal and the preset condition. When the matching degree reaches a certain threshold, the matching is considered to be successful, and the modulated signal is an error signal.
  • the concept of the interference processing method provided by the embodiments of the present disclosure is based on the NFC technology, if the NFC card reader sends an error indication signal to the card immediately when the modulation signal is detected and the decoding fails, and if the modulation signal is by the card itself Or the interference signal generated by the external environment, the card is processing the response data when receiving the error indication signal. At this time, the card stops the data processing and re-processes the data, and the card may generate more interference during the processing.
  • the signal causes the NFC card reader to detect the interference signal again and send the error indication signal again, so that the NFC card reader and the card enter the infinite loop shown in FIG. 3, which reduces the performance of the NFC card reader.
  • the setting of the decision threshold of the NFC card reader in the NFC technology is very critical. If the decision threshold is set too low, although the communication over a long distance can be ensured, it is easy to misinterpret the interference signal as The phenomenon of the error signal reduces the reliability of the NFC card reader. If the decision threshold is set too high, although the reliability of the short-range area communication can be ensured and the phenomenon of interference misjudgment is reduced, it is difficult to ensure a long distance area. The sensitivity of communication.
  • the NFC card reader when the NFC card reader detects the modulation signal and fails to decode, the NFC card reader does not immediately send an error indication signal to the card, but instead decodes the failed modulation signal and the reception response signal.
  • the preset condition is matched, and then the error indication signal is selectively transmitted according to the matching result, and the related information of the modulated signal can be obtained by the above matching result, that is, the matching result can reflect the similarity of the modulated signal and the response signal to some extent. degree.
  • the error indication signal can be sent when the modulation signal is close to the response signal, and the error indication signal is not sent when the modulation signal is close to the interference signal, so that the interference signal generated by the card itself and the external environment can be largely filtered out.
  • the NFC card reader waits for a response signal after transmitting the request signal, and the NFC card reader receives the modulated signal and fails to decode the modulated signal, and the modulated signal and the preset condition are Performing matching, and selecting whether to send an error indication signal according to the obtained matching result, the preset condition may reflect the characteristic of the response signal to some extent, and therefore, the matching result may reflect the similarity between the modulated signal and the response signal, such that The NFC card reader selectively transmits the error indication signal according to the degree of similarity between the modulation signal and the response signal, thereby effectively avoiding the misinterpretation of the interference signal as an error signal, thereby improving the reliability of the NFC card reader while ensuring the long distance.
  • the sensitivity of regional communication is compatible with high reliability and high sensitivity.
  • FIG. 5 is a flowchart of another interference processing method according to an embodiment of the present disclosure.
  • step S130 in the embodiment of the present disclosure may include the sub-step: S131, when the matching result is that the matching is successful, the NFC card reader sends an error indication signal; S132, when the matching result is a matching failure The NFC card reader does not send an error indication signal.
  • whether the matching result is a matching success may be, for example, the modulation signal completely conforms to the preset condition, or the modulation signal falls within a preset condition, or may be a matching of the modulation signal and the preset condition.
  • the degree reaches a certain threshold.
  • the NFC card reader after transmitting the request signal, not only needs to wait for receiving the response signal, but also may include: S111, and the NFC card reader determines the preset condition.
  • the manner in which the NFC card reader determines the preset condition may be, for example, according to the type of the sent request signal, the requested content, the statistical result of receiving the response signal within a period of time, and the response of the NFC standard protocol to the card transmission.
  • the specification of the signal determines that the preset condition can reflect the characteristics of the response signal to some extent.
  • the embodiment of the present disclosure does not limit the specific content of the preset condition, as long as the condition that can correctly reflect the response signal feature can be used as the preset condition.
  • the embodiment of the present disclosure also does not limit the matching success.
  • the form may be a perfect match or a certain degree of matching, as long as it can reflect that the modulated signal and the response signal have a high degree of similarity, it can be considered that the matching is successful, and the embodiments of the present disclosure are not
  • the limited NFC card reader determines the preset condition only according to the above factors, and as long as it is a characteristic that can respond to the response signal, it can be used as a factor for determining the preset condition.
  • the content of the preset condition of the received response signal determined by the NFC card reader is different, and the manner in which the NFC card reader matches the modulated signal is different from the preset condition, and the obtained matching result and the judgment are sent.
  • the principle of the error indication signal is also different, and the following is explained in detail through several embodiments.
  • the implementation manner of determining the preset condition by the NFC card reader may include: the NFC card reader according to the type of the request signal and the time when the NFC card reader receives the response signal. At least one of the range statistics determines the time range in which the response signal is received.
  • the NFC technical specification there are various types of request signals, some of which are used for authentication operations. The time window of the request signal of this type is relatively late, and some request signals are used for selecting operations, and the time of request signals of this type. The window is more advanced.
  • the NFC card reader can obtain the earliest and latest time of the card return response signal in its application type according to a large amount of statistical data, and use the first and last time counted as the time range of receiving the response signal.
  • the implementation manner of the NFC card reader selecting whether to send the error indication signal may include: when the matching result is that the modulation signal is within the determined time range, the NFC card reader sends an error indication signal; when the matching result is The NFC card reader does not transmit an error indication signal when the modulated signal is outside of the determined time range.
  • FIG. 6 is a schematic diagram of an application scenario of an interference processing method according to an embodiment of the present disclosure.
  • the preset condition in this embodiment is a time range of receiving a response signal, that is, a time window in FIG. 6 (t1). , t2), after the request signal is sent, the NFC card reader respectively receives the modulated signals S1 and S2 exceeding the interference threshold, and the decoding of both S1 and S2 fails.
  • S1 is outside the time window (t1, t2), and the NFC card reader judges that S1 is an interference signal, does not send an error indication signal, continues to receive the signal, and S2 is within the time window (t1, t2).
  • the NFC card reader determines that S2 is a response signal sent by the card. Since the decoding of the S2 fails, the NFC card reader needs to send an error indication signal to instruct the card to resend the response signal, and the NFC card reader sends the error indication signal. Continue to wait to receive the response signal.
  • the NFC card reader distinguishes the interference signal and the signal sent by the card by setting the expected time (time window) of the response signal. Although the NFC card reader receives the interference signal, it does not affect the entire process of the NFC communication. .
  • the implementation manner that the NFC card reader determines the preset condition may include: the NFC card reader according to the type of the request signal, the content requested by the request signal, and the NFC The card reader receives at least one of the data length statistics of the response signal to determine the data length of the response signal.
  • the type of the request signal and the content requested by the request signal are different, and the data length of the received response signal is also different.
  • the NFC card reader can also obtain the card return response signal of the application type according to a large amount of statistical data. The data length statistical value is used as the data length of the received response signal.
  • the data length may be a data length range
  • the implementation manner of the NFC card reader selecting whether to send the error indication signal may include: when the matching result is a data length of the modulation signal at the data length When the range is within, the NFC card reader sends an error indication signal; when the matching result is that the data length of the modulation signal is outside the above data length range, the NFC card reader does not send an error indication signal.
  • the data length may be a data length set
  • the implementation manner of the NFC card reader selecting whether to send the error indication signal may include: when the matching result is the data length of the modulation signal and the foregoing data. When any one of the length sets is equal, the NFC card reader sends an error indication signal; when the matching result is that the data length of the modulated signal is not equal to each element in the above data length set, the NFC card reader does not send an error. Indication signal.
  • FIG. 7 is a schematic diagram of another application scenario of the interference processing method according to the embodiment of the present disclosure.
  • the preset condition in this embodiment is a data length set of the received response signal, that is, the data length in FIG. 7.
  • the set ⁇ L1, L2 ⁇ after the request signal is sent, the NFC reader receives the modulated signals S1, S2, and S3 exceeding the interference threshold, respectively, and the decoding fails for S1, S2, and S3.
  • the length of S1 is less than L2, and the NFC card reader judges that S1 is an interference signal, does not send an error indication signal, and continues to receive signals.
  • the length of S2 is greater than L2 and less than L1, and the NFC card reader judges that S2 is interference.
  • the signal does not send the error indication signal, and continues to receive the signal.
  • the length of S3 is equal to L2, and the NFC card reader determines that S3 is the response signal sent by the card. Since the decoding of the S3 fails, the NFC card reader needs to send an error indication signal.
  • the response card is resent by the instruction card, and the NFC card reader continues to wait for the reception response signal after transmitting the error indication signal.
  • the NFC card reader distinguishes the interference signal and the signal transmitted by the card by setting the expected data length of the response signal. Although the NFC card reader receives the interference signal, it does not affect the entire flow of the NFC communication.
  • the implementation manner of determining, by the NFC card reader, the preset condition may include: determining, by the NFC card reader, a probability threshold of receiving the response signal, and according to the sending request signal The time determines the probability coefficient corresponding to the modulated signal received at different times.
  • the NFC card reader fails to estimate the time range or data length of the received response signal. After the request signal is sent, the response signal is returned within a specified time, for example, returning at the latest 4 seconds (s). Therefore, as time increases, the probability that the signal exceeding the interference threshold is the response signal sent by the card is getting larger and larger, that is, the later the received modulation signal corresponds to a higher probability coefficient.
  • the implementation manner that the NFC card reader matches the modulation signal with the preset condition may include: the NFC card reader obtains the initial of the modulation signal according to at least one of the feature, the intensity, and the data length of the modulation signal. Probability, the NFC reader calculates the product of the initial probability of the modulated signal and the probability coefficient corresponding to the modulated signal to obtain the signal probability and compares the signal probability to the probability threshold. The NFC card reader can obtain the characteristic, intensity and data length of the response signal according to a large number of statistical values of the received response signal. Therefore, the initial probability of the modulated signal can be obtained according to the above characteristics of the modulated signal. It should be noted that if the NFC is NFC If the card reader cannot obtain the initial probability of the modulated signal, the initial probability can be considered to be 1.
  • the implementation manner of the NFC card reader selecting whether to send the error indication signal may include: when the matching result is that the signal probability is greater than or equal to the probability threshold, the NFC card reader sends an error indication signal; when the matching result is a signal probability When the probability threshold is less than the probability threshold, the NFC reader does not send an error indication signal.
  • FIG. 8 is a schematic diagram of still another application scenario of the interference processing method according to the embodiment of the present disclosure.
  • the preset condition in this embodiment is a probability threshold of receiving a response signal, where the probability threshold is preset.
  • the NFC card reader can also estimate the probability coefficients of the modulated signals received at different times. After the request signal is sent, the NFC card readers respectively receive the modulated signals S1, S2, and S3 that exceed the interference threshold. And the decoding failures of S1, S2, and S3 are respectively performed, and the probability coefficients corresponding to S1, S2, and S3 are 0.3, 0.5, and 0.8, respectively.
  • the initial probabilities of the NFC readers acquiring the three signals S1, S2, and S3 are respectively 5/3, 1.2 and 1.375.
  • the NFC card reader determines that S3 is a response signal sent by the card. Since the decoding of the S3 fails, the NFC card reader needs to send an error indication signal to instruct the card to resend the response signal, and the NFC card reader sends the error indication signal to continue. Waiting to receive a response signal.
  • the NFC card reader cannot effectively determine the interference signal, the probability threshold of the response signal, the probability coefficient of the modulated signal received at different times, and the initial probability of acquiring the modulated signal received at different times are obtained.
  • the interference signal is not prematurely judged as the response signal sent by the card, so that the entire flow of the NFC communication is not affected.
  • the implementation manner of determining the preset condition by the NFC card reader may include: determining, by the NFC card reader, the response signal according to a preset signal type in the NFC. Preset feature information.
  • the response signal sent by the card has specific feature information. For example, the application type of the NFC card reader is different, and the symbol composition of the response signal sent by the corresponding card is also different.
  • the implementation manner that the NFC card reader matches the modulation signal with the preset condition may include: the NFC card reader matches the feature information of the modulation signal with the preset feature information of the response signal, where the modulation The characteristic information of the signal includes at least one of a modulation mode, an amplitude, and a data length of the modulated signal.
  • the implementation manner of the NFC card reader selecting whether to send the error indication signal may include: when the matching result is that the matching degree of the feature information of the modulation signal and the preset feature information of the response signal is greater than or equal to the feature threshold, NFC The card reader sends an error indication signal; when the matching result is that the matching degree of the feature information of the modulation signal and the preset feature information of the response signal is less than the feature threshold, the NFC card reader does not send the error indication signal.
  • FIG. 9 is a schematic diagram of still another application scenario of the interference processing method according to the embodiment of the present disclosure.
  • the response signal sent by the card is composed of symbol 1 and symbol 2, that is, The preset feature information of the response signal in this embodiment is a combination of symbol 1 and symbol 2.
  • the NFC card reader After the request signal is sent, the NFC card reader respectively receives the modulated signals S1 and S2 exceeding the interference threshold, and pairs S1 and S2. If the decoding fails, the NFC card reader compares S1 and S2 with the combination of symbol 1 and symbol 2 respectively. Since the difference between S1 and S2 and the combination of symbol 1 and symbol 2 is large, it is judged as an interference signal. The error indication signal is not sent and the signal continues to be received.
  • the interference processing method provided by the embodiment of the present disclosure can effectively distinguish the interference signal and the response signal sent by the card, thereby avoiding the problem of false detection caused by the decision threshold setting being too low.
  • the embodiment of the present disclosure also uses the statistical information of the response signal to utilize the statistical characteristics of the response signal in the process of signal detection and judgment, and judges the signal that does not have the statistical feature as the interference signal, and once it is determined as the interference signal, directly discards
  • the NFC card reader can greatly reduce the decision threshold, thereby increasing the communication distance, and can improve the sensitivity of the NFC card reader while ensuring the sensitivity of the communication in the long-distance region.
  • the interference processing method provided by the embodiment of the present disclosure may further include: when the NFC card reader does not receive the response signal within the preset response time, resending the request signal.
  • FIG. 10 is a schematic diagram of still another application scenario of the interference processing method provided by the embodiment of the present disclosure.
  • the NFC card reader sends a request. After the signal, waiting for receiving the response signal, receiving two modulated signals S1 (interference signal) and S2 (signal sent by the card), decoding failed for both S1 and S2, but S2 is also misidentified as an interference signal by the NFC reader. Therefore, no error indication signal is sent after S2.
  • the NFC card reader does not correctly receive the response signal until the response timeout, and then retransmits the request signal.
  • the NFC card reader misjudges the response signal as an interference signal, it can automatically return to the normal state without affecting the entire flow of the NFC communication.
  • FIG. 11 is a schematic structural diagram of an interference processing apparatus according to an embodiment of the present disclosure.
  • the interference processing device can be implemented by a combination of hardware and software, and the interference processing device can be integrated in the NFC.
  • the processor of the card reader is used by the processor to call.
  • the interference processing apparatus 10 of this embodiment may include a transmitting module 11, a receiving module 12, a decoding module 13, and a matching module 14, wherein the transmitting module 11 is configured to transmit a request signal, and the receiving module 12 is configured to receive a modulation.
  • the signal decoding module 13 is configured to decode the modulated signal received by the receiving module 12, and the decoded modulated signal is a signal whose strength is greater than or equal to the interference threshold.
  • the matching module 14 is configured to: when the decoding module 13 fails to decode the modulated signal, The modulated signal is matched with a preset condition to obtain a matching result.
  • the interference processing apparatus provided by the embodiment of the present disclosure is for processing for detecting a modulation signal and performing interference determination in NFC communication.
  • the NFC communication process includes an initialization process and a signaling transmission process, and the card is close to the NFC card reader to trigger communication.
  • the signaling transmission process is as shown in FIG. 1 above, and the interference processing device provided by the embodiment of the present disclosure is mainly directed to the NFC.
  • the signaling transmission process in communication that is, the process of performing data communication after initialization has been completed.
  • the transmitting module 11 in the embodiment of the present disclosure transmits the request signal
  • the NFC card reader can wait for receiving the response signal and perform a response operation according to the response signal.
  • the receiving module 12 may receive various modulated signals, and the received modulated signal may be The response signal sent by the card may also be an interference signal in the environment.
  • the receiving module 12 After the receiving module 12 receives the modulated signal, it first determines whether the modulated signal is greater than or equal to an interference threshold (ie, a predetermined threshold in the NFC card reader), and when the modulated signal is greater than or equal to the interference threshold, triggers the decoding module. 13
  • the decoded signal is decoded. If the decoding fails, the modulated signal may be an error signal. However, the modulated signal may also be an interference signal.
  • the sending module 11 does not send the error indication signal first, but the matching module 14 matches the modulated signal with the preset condition to obtain a matching result.
  • the sending module 11 is further configured to select whether to send an error indication signal according to the matching result obtained by the matching module 14.
  • the matching module 14 matches the modulated signal with the preset condition of the received response, and obtains a matching result.
  • the matching result can reflect whether the modulated signal is similar to the error signal or the interference signal to a certain extent.
  • the transmitting module 11 can select the transmission error indication signal or the error indication signal according to the matching result.
  • the transmitting module 11 in the device can effectively avoid the situation in which the interference signal is mistakenly determined as an error signal by selectively transmitting the error indication signal according to the matching result, and at the same time, the sensitivity of the NFC card reader can be effectively ensured.
  • the preset condition may be configured for the response signal, that is, the modulation signal with a higher degree of matching with the preset condition may be regarded as an error signal sent by the card, and the modulation with a lower matching degree with the preset condition.
  • the signal can be considered as an interference signal, and the similarity of the matching can be pre-configured by the designer. For example, when the modulated signal completely meets the preset condition, the matching is considered to be successful, and the modulated signal is an error signal, for example, in the modulated signal and the preset condition. When the matching degree reaches a certain threshold, the matching is considered to be successful, and the modulated signal is an error signal.
  • the concept of the interference processing apparatus is based on the fact that, in the NFC technology, if the NFC card reader detects a modulated signal and fails to decode, it immediately sends an error indication signal to the card, and if the above modulated signal is a card
  • the interference signal generated by the self or the external environment, the card is processing the response data when receiving the error indication signal. At this time, the card stops the data processing and re-processes the data, and the card may generate more during the processing.
  • the interference signal causes the NFC card reader to detect the interference signal again and send the error indication signal again, so that the NFC card reader and the card enter the infinite loop shown in FIG. 3, which reduces the performance of the NFC card reader.
  • the setting of the decision threshold of the NFC card reader in the NFC technology is very critical. If the decision threshold is set too low, although the communication over a long distance can be ensured, it is easy to misinterpret the interference signal as The phenomenon of the error signal reduces the reliability of the NFC card reader. If the decision threshold is set too high, although the reliability of the short-range area communication can be ensured and the phenomenon of interference misjudgment is reduced, it is difficult to ensure a long distance. Sensitivity of regional communication.
  • the NFC card reader when the NFC card reader detects the modulation signal and fails to decode, the NFC card reader does not immediately send an error indication signal to the card, but preprocesses the decoding failure signal and the reception response signal. The condition is matched, and then the error indication signal is selectively transmitted according to the matching result, and the correlation information of the modulation signal can be obtained by the above matching result, that is, the matching result can reflect the degree of similarity between the modulation signal and the response signal to some extent.
  • the error indication signal can be sent when the modulation signal is close to the response signal, and the error indication signal is not sent when the modulation signal is close to the interference signal, so that the interference signal generated by the card itself and the external environment can be largely filtered out.
  • the interference processing device provided by the embodiment of the present disclosure is configured to perform the interference processing method provided by the embodiment shown in FIG. 4 of the present disclosure, and has a corresponding functional module, and the implementation principle and the technical effect are similar, and details are not described herein again.
  • the implementation manner of the sending module 11 in the embodiment of the present disclosure for selecting whether to send an error indication signal according to the matching result may include: when the matching result is that the matching is successful, the sending module 11 sends an error indication signal; when the matching result is When the match fails, the transmitting module 11 does not send an error indication signal.
  • whether the matching result is a matching success may be, for example, the modulation signal completely conforms to the preset condition, or the modulation signal falls within the range of the preset condition, or may be the matching degree between the modulation signal and the preset condition. A certain threshold is reached.
  • FIG. 12 is a schematic structural diagram of another interference processing apparatus according to an embodiment of the present disclosure.
  • the interference processing apparatus 10 provided by the embodiment of the present disclosure may further include a determining module 15 for determining the received preset condition after the sending module 11 sends the request signal.
  • the determining module 15 determines the preset condition, for example, according to the type of the sent request signal, the requested content, the statistical result of receiving the response signal within a period of time, and the NFC standard protocol pair card.
  • the specification of the response signal is determined, and the preset condition can reflect the characteristics of the response signal to some extent.
  • the embodiment of the present disclosure does not limit the specific content of the preset condition, as long as the condition that can correctly reflect the response signal feature can be used as the preset condition.
  • the embodiment of the present disclosure also does not limit the matching success.
  • the form may be a perfect match or a certain degree of matching, as long as it can reflect that the modulated signal and the response signal have a high degree of similarity, it can be considered that the matching is successful, and the embodiments of the present disclosure are not
  • the limit determination module 15 determines the preset condition only according to the above factors, and as long as it is a feature that can respond to the response signal, it can be used as a factor for determining the preset condition.
  • the content of the preset condition of the received response signal determined by the determining module 15 is different, and the manner in which the matching module 14 matches the modulated signal and the preset condition is different, and the obtained matching result and the sending module 11 determine whether to send or not.
  • the principle of the error indication signal is also different, and the following is explained in detail through several embodiments.
  • the interference processing apparatus provided by the embodiment of the present disclosure is configured to perform the interference processing method provided by the embodiment shown in FIG. 5 of the present disclosure, and has a corresponding functional module, and the implementation principle and the technical effect are similar, and details are not described herein again.
  • the determining, by the determining module 15, the implementation manner of the preset condition may include: according to a type of the request signal and a time range statistic value of the NFC card reader receiving the response signal. At least one item determines the time range in which the response signal is received.
  • the specific manner in which the determining module 15 determines the time range in which the response signal is received has been described in detail in the above embodiments, and therefore will not be described herein.
  • the implementation manner of the sending module 11 selecting whether to send the error indication signal according to the matching result may include: when the matching result is that the modulation signal is within the determined time range, the sending module 11 sends an error indication signal; When the modulated signal is outside the determined time range, the transmitting module 11 does not transmit an error indication signal.
  • the determining module 15 determines that the implementation manner of the preset condition may include: according to the type of the request signal, the content requested by the request signal, and the response received by the receiving module 12 At least one of the data length statistics of the signal determines the data length of the response signal.
  • the specific manner in which the determining module 15 determines the data length of the received response signal has been described in detail in the above embodiments, and therefore will not be described herein.
  • the data length may be a data length range
  • the implementation manner of the sending module 11 selecting whether to send the error indication signal according to the matching result may include: when the matching result is the data length of the modulation signal, When the data length is within the range, the sending module 11 sends an error indication signal; when the matching result is that the data length of the modulated signal is outside the data length range, the transmitting module 11 does not send the error indication signal.
  • the data length may be a data length set
  • the implementation manner of the sending module 11 selecting whether to send the error indication signal according to the matching result may include: when the matching result is the data length of the modulated signal When any one of the data length sets is equal, the sending module 11 sends an error indication signal; when the matching result is that the data length of the modulated signal is not equal to each element in the data length set, the sending module 11 does not send an error indication signal.
  • the determining, by the determining module 15, the implementation manner of the preset condition may include: determining a probability threshold of receiving the response signal, and according to the time when the sending module 11 sends the request signal And determining a probability coefficient corresponding to the modulated signal received at different times.
  • the specific manner in which the determining module 15 determines the probability threshold of receiving the response signal and the probability coefficient corresponding to the modulated signal received at different times has been described in detail in the above embodiments, and therefore will not be described herein.
  • the matching module 14 may include: an acquiring unit, configured to acquire an initial probability of the modulated signal according to at least one of a feature, an intensity, and a data length of the modulated signal; and a calculating unit configured to calculate the acquired by the acquiring unit The product of the initial probability of the modulated signal and the probability coefficient corresponding to the modulated signal determined by the determining module 15 is used to obtain a signal probability; the matching unit is configured to compare the signal probability calculated by the calculating unit with the probability threshold determined by the determining module 15.
  • the implementation manner of the sending module 11 selecting whether to send the error indication signal according to the matching result may include: when the matching result is that the signal probability is greater than or equal to the probability threshold, the sending module 11 sends an error indication signal; when the matching result is a signal When the probability is less than the probability threshold, the transmitting module 11 does not transmit an error indication signal.
  • the determining, by the determining module 15, the implementation manner of the preset condition may include: determining preset feature information of the response signal according to a preset signal type in the NFC.
  • the specific manner in which the determining module 15 determines the preset feature information of the received response signal has been described in detail in the foregoing embodiment, and thus is not described herein again.
  • the matching module 14 can match the modulation signal with the preset condition, and the method includes: matching the feature information of the modulated signal with the preset feature information of the response signal, where the feature information of the modulated signal includes modulation At least one of a modulation mode, an amplitude, and a data length of the signal.
  • the implementation manner of the sending module 11 selecting whether to send the error indication signal according to the matching result may include: when the matching result is that the matching degree of the feature information of the modulated signal and the preset feature information of the response signal is greater than or equal to the feature threshold.
  • the sending module 11 sends an error indication signal.
  • the sending module 11 does not send the error indication signal.
  • the sending module 11 is further configured to resend the request signal when the receiving module 12 does not receive the response signal within a preset response time.
  • the transmitting module 11 and the receiving module 12 in the embodiment shown in FIG. 11 and FIG. 12 of the present disclosure may be implemented by a transceiver of an NFC card reader, and the determining module 15, the decoding module 13, and the matching module 14
  • the processor may be implemented by a processor of a network node, such as a central processing unit (CPU), or an application specific integrated circuit (ASIC), or One or more integrated circuits implementing embodiments of the present disclosure.
  • FIG. 13 is a schematic structural diagram of still another interference processing apparatus according to an embodiment of the present disclosure.
  • the interference processing device 20 provided in this embodiment may include a memory 21 for holding executable instructions, and a processor 22 for executing the executable instructions saved by the memory 21 to perform the following operations.
  • S31 transmitting a request signal;
  • S32 when receiving the modulated signal and decoding the modulated signal fails, matching the modulated signal with a preset condition to obtain a matching result; and
  • S33 selecting whether to send an error indication signal according to the matching result.
  • the implementation of the operation step S33 may include: S331, when the matching result is that the matching is successful, sending an error indication signal; S332, when the matching result is When the match fails, the error indication signal is not sent.
  • the processor 22 executes the executable instruction, after performing the operation step S31, the following operation is further performed: determining the preset condition.
  • the implementation manner of determining the preset condition may include the following: First, determining, according to at least one of a type of the request signal and a time range statistic value of the NFC reader receiving the response signal. The time range of the response signal; secondly, determining the data length of the response signal according to at least one of the type of the request signal, the content requested by the request signal, and the data length statistical value of the response signal received by the NFC reader; Three, determining a probability threshold of receiving the response signal, and determining a probability coefficient corresponding to the modulated signal received at different times according to the time of transmitting the request signal; and fourth, determining a response signal according to a preset signal type in the NFC Preset feature information.
  • step S33 when the processor 22 executes the executable instruction has been described in detail in the foregoing embodiment, and thus is not described herein again.
  • An embodiment of the present disclosure further provides a computer readable storage medium storing computer executable instructions, when the processor executes the computer executable instructions, performing the following operations: S41, transmitting a request signal; S42 When receiving the modulated signal and decoding the modulated signal fails, the modulated signal is matched with a preset condition to obtain a matching result; and S43, according to the matching result, whether to send an error indication signal is selected.
  • the implementation of operation step S43 may include: S431, when the matching result is that the matching is successful, sending an error indication signal; S432, when If the match result is that the match fails, the error indication signal is not sent.
  • the processor executes the computer executable instruction, after performing the operation step S41, the following operation is further performed: determining a preset condition.
  • the implementation manner of determining the preset condition may include the following: First, determining, according to at least one of a type of the request signal and a time range statistic value of the NFC reader receiving the response signal. The time range of the response signal; secondly, determining the data length of the response signal according to at least one of the type of the request signal, the content requested by the request signal, and the data length statistical value of the response signal received by the NFC reader; Determining a probability threshold of receiving the response signal, and determining a probability coefficient corresponding to the modulated signal received at different times according to the time of transmitting the request signal; and fourth, determining the response signal according to a preset signal type in the NFC Preset feature information.
  • the processor when the processor executes the computer executable instruction, the processor further performs the following operations: S44: when the response signal is not received within the preset response time, the request signal is retransmitted.
  • each module/unit in the above embodiment may be implemented in the form of hardware, for example, by implementing an integrated circuit to implement its corresponding function, or may be implemented in the form of a software function module, for example, executing a program stored in the memory by a processor. / instruction to achieve its corresponding function.
  • Embodiments of the present disclosure are not limited to any particular form of combination of hardware and software.

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Abstract

Disclosed in embodiments of the present disclosure are an interference processing method and device. The interference processing method in the embodiments of the present disclosure comprises: a near-field communication (NFC) card reader sending a request signal; when the NFC card reader receives a modulation signal and fails to decode the modulation signal, matching the modulation signal against a predetermined condition to obtain a matching result; and the NFC card reader choosing, according to the matching result, whether to send an error indication signal.

Description

干扰处理方法和装置Interference processing method and device 技术领域Technical field
本公开涉及但不限于无线通信技术领域,尤指干扰处理方法和装置。The present disclosure relates to, but is not limited to, the field of wireless communication technologies, and more particularly to interference processing methods and apparatus.
背景技术Background technique
近距离无线通信(Near Field Communication,简称为:NFC)是一种短距离高频的无线通信方式,可以实现在短距离内与兼容设备进行识别和数据交互,NFC技术以其使用的安全性、便捷性和低功耗等特性,已广泛应用于人们的日常生活中。Near Field Communication (NFC) is a short-distance high-frequency wireless communication method that enables identification and data interaction with compatible devices in a short distance. NFC technology uses its security, Features such as convenience and low power consumption have been widely used in people's daily lives.
NFC技术的常见应用例如为公交卡、公司门禁卡等,卡片和读卡器中配置有NFC模块,NFC模块工作在半双工模式。通常地,卡片接收到的调制信号的幅度在100毫伏(mv)量级,而读卡器接收到的调制信号的幅度在10mv量级,因此,NFC模块的通信性能/通信距离主要受限于读卡器接收卡片数据的能力。由于读卡器接收到的调制信号较微弱,且卡片自身会产生较大的干扰信号,读卡器检测信号的判决门限如果设置不合理,则很容易将干扰信号误判为错误的数据,从而影响NFC通信流程。另外,由于NFC模块的天线性能较弱,而使其通信距离小,交易识别的概率高,用户体验效果较差。目前优化读卡器性能的方式主要有以下两种:方式一,优化读卡器功率和信号方向,该方式虽然可以增加通信距离,但受限于规范限制,到达一定性能后,作用有限;方式二,设置合理的判决门限,例如,很多读卡器厂家尽可能调低判决门限,在不改变NFC天线性能、方向性的情况下,读卡器就可以检测到更弱的信号,提高通信距离,但是如果判决门限设置过低,则误检测出干扰信号的概率增加。Common applications of NFC technology are, for example, bus cards, company access cards, etc., cards and card readers are equipped with NFC modules, and NFC modules work in half-duplex mode. Generally, the amplitude of the modulated signal received by the card is on the order of 100 millivolts (mv), and the amplitude of the modulated signal received by the card reader is on the order of 10 mv. Therefore, the communication performance/communication distance of the NFC module is mainly limited. The ability of the card reader to receive card data. Since the modulation signal received by the card reader is weak, and the card itself generates a large interference signal, if the decision threshold of the card reader detection signal is unreasonable, it is easy to misinterpret the interference signal as erroneous data, thereby Affect the NFC communication process. In addition, because the antenna performance of the NFC module is weak, the communication distance is small, the probability of transaction recognition is high, and the user experience is poor. At present, there are two main ways to optimize the performance of the reader: mode one, optimize the power of the reader and the direction of the signal. Although this method can increase the communication distance, it is limited by the specification limit. After reaching a certain performance, the effect is limited. Second, set a reasonable decision threshold. For example, many reader manufacturers can lower the decision threshold as much as possible. Without changing the performance and directionality of the NFC antenna, the reader can detect weaker signals and improve communication distance. However, if the decision threshold is set too low, the probability of erroneously detecting the interference signal increases.
发明内容Summary of the invention
本公开的实施例提供一种干扰处理方法,包括步骤:近距离无线通信(NFC)读卡器发送请求信号;所述NFC读卡器在接收到调制 信号并对所述调制信号解码失败时,将所述调制信号与预设条件进行匹配,得到匹配结果;所述NFC读卡器根据所述匹配结果选择是否发送错误指示信号。Embodiments of the present disclosure provide an interference processing method including the steps of: a Near Field Communication (NFC) card reader transmitting a request signal; when the NFC card reader receives a modulated signal and fails decoding the modulated signal, Matching the modulation signal with a preset condition to obtain a matching result; and the NFC card reader selects whether to send an error indication signal according to the matching result.
可选地,如上所述的干扰处理方法中,所述NFC读卡器根据所述匹配结果选择是否发送错误指示信号的步骤包括:当所述匹配结果为匹配成功时,所述NFC读卡器发送所述错误指示信号;当所述匹配结果为匹配失败时,所述NFC读卡器不发送所述错误指示信号。Optionally, in the interference processing method as described above, the step of selecting, by the NFC card reader, whether to send an error indication signal according to the matching result comprises: when the matching result is that the matching is successful, the NFC card reader Transmitting the error indication signal; when the matching result is a match failure, the NFC card reader does not send the error indication signal.
可选地,如上所述的干扰处理方法还包括:所述NFC读卡器发送请求信号之后,所述NFC读卡器确定所述预设条件,其中,所述NFC读卡器根据所述请求信号的类型和所述NFC读卡器接收响应信号的时间范围统计值中的至少一项,确定接收所述响应信号的时间范围作为所述预设条件,或者,所述NFC读卡器根据所述请求信号的类型、所述请求信号所请求的内容和所述NFC读卡器接收的响应信号的数据长度统计值中的至少一项,确定所述响应信号的数据长度作为所述预设条件。Optionally, the interference processing method as described above further includes: after the NFC card reader sends the request signal, the NFC card reader determines the preset condition, wherein the NFC card reader according to the request Determining a time range in which the response signal is received as the preset condition, at least one of a type of a signal and a time range statistic value of the NFC card reader receiving the response signal, or the NFC card reader according to the Determining, according to at least one of a type of the request signal, a content requested by the request signal, and a data length statistical value of the response signal received by the NFC card reader, a data length of the response signal as the preset condition .
可选地,如上所述的干扰处理方法中,当所述预设条件为接收所述响应信号的时间范围时,所述NFC读卡器根据所述匹配结果选择是否发送错误指示信号的步骤包括:当所述匹配结果为所述调制信号在所确定的时间范围内时,所述NFC读卡器发送所述错误指示信号;当所述匹配结果为所述调制信号在所述确定的时间范围外时,所述NFC读卡器不发送所述错误指示信号。Optionally, in the interference processing method as described above, when the preset condition is a time range for receiving the response signal, the step of the NFC card reader selecting whether to send an error indication signal according to the matching result includes: : when the matching result is that the modulation signal is within the determined time range, the NFC card reader sends the error indication signal; when the matching result is that the modulation signal is in the determined time range In addition, the NFC card reader does not transmit the error indication signal.
可选地,如上所述的干扰处理方法中,当所述预设条件为所述响应信号的数据长度,且所述数据长度为数据长度范围时,所述NFC读卡器根据所述匹配结果选择是否发送错误指示信号的步骤包括:当所述匹配结果为所述调制信号的数据长度在所述数据长度范围内时,所述NFC读卡器发送所述错误指示信号;当所述匹配结果为所述调制信号的数据长度在所述数据长度范围外时,所述NFC读卡器不发送所述错误指示信号。Optionally, in the interference processing method as described above, when the preset condition is a data length of the response signal, and the data length is a data length range, the NFC card reader is configured according to the matching result. The step of selecting whether to send the error indication signal includes: when the matching result is that the data length of the modulation signal is within the data length range, the NFC card reader sends the error indication signal; when the matching result The NFC card reader does not transmit the error indication signal when the data length of the modulation signal is outside the data length range.
可选地,如上所述的干扰处理方法中,当所述预设条件为所述响应信号的数据长度,且所述数据长度为数据长度集合时,所述NFC 读卡器根据所述匹配结果选择是否发送错误指示信号的步骤包括:当所述匹配结果为所述调制信号的数据长度与所述数据长度集合中的任意一个元素相等时,所述NFC读卡器发送所述错误指示信号;当所述匹配结果为所述调制信号的数据长度与所述数据长度集合中的每个元素都不相等时,所述NFC读卡器不发送所述错误指示信号。Optionally, in the interference processing method as described above, when the preset condition is a data length of the response signal, and the data length is a data length set, the NFC card reader is configured according to the matching result. The step of selecting whether to send the error indication signal includes: when the matching result is that the data length of the modulation signal is equal to any one of the data length sets, the NFC card reader sends the error indication signal; The NFC card reader does not transmit the error indication signal when the matching result is that the data length of the modulation signal is not equal to each element in the data length set.
可选地,如上所述的干扰处理方法还包括:所述NFC读卡器发送请求信号之后,所述NFC读卡器确定所述预设条件,其中,所述NFC读卡器确定接收到所述响应信号的概率阈值作为所述预设条件,并根据发送所述请求信号的时间,确定不同时间接收到的调制信号对应的概率系数,或者,所述NFC读卡器根据NFC中预先设定的信号类型,确定所述响应信号的预设特征信息作为所述预设条件。Optionally, the interference processing method as described above further includes: after the NFC card reader sends the request signal, the NFC card reader determines the preset condition, wherein the NFC card reader determines to receive the location Determining a probability threshold of the response signal as the preset condition, and determining a probability coefficient corresponding to the modulated signal received at different times according to a time when the request signal is sent, or the NFC card reader is preset according to the NFC The signal type determines the preset feature information of the response signal as the preset condition.
可选地,如上所述的干扰处理方法中,当所述预设条件为所述接收所述响应信号的概率阈值时,所述NFC读卡器将所述调制信号与所述预设条件进行匹配的步骤包括:所述NFC读卡器根据所述调制信号的特征、强度和数据长度中的至少一项,获取所述调制信号的初始概率;所述NFC读卡器计算所述调制信号的初始概率和所述调制信号对应的概率系数的乘积,得到信号概率,并将所述信号概率与所述概率阈值进行对比,所述NFC读卡器根据所述匹配结果选择是否发送错误指示信号的步骤包括:当所述匹配结果为所述信号概率大于或等于所述概率阈值时,所述NFC读卡器发送所述错误指示信号;当所述匹配结果为所述信号概率小于所述概率阈值时,所述NFC读卡器不发送所述错误指示信号。Optionally, in the interference processing method as described above, when the preset condition is the probability threshold of receiving the response signal, the NFC card reader performs the modulation signal with the preset condition. The step of matching includes: the NFC card reader acquiring an initial probability of the modulated signal according to at least one of a characteristic, an intensity, and a data length of the modulated signal; the NFC card reader calculating the modulated signal Generating, by a product of an initial probability and a probability coefficient corresponding to the modulation signal, a signal probability, and comparing the signal probability with the probability threshold, the NFC card reader selecting whether to send an error indication signal according to the matching result The step includes: when the matching result is that the signal probability is greater than or equal to the probability threshold, the NFC card reader sends the error indication signal; when the matching result is that the signal probability is less than the probability threshold The NFC card reader does not transmit the error indication signal.
可选地,如上所述的干扰处理方法中,当所述预设条件为所述响应信号的预设特征信息时,所述NFC读卡器将所述调制信号与所述预设条件进行匹配的步骤包括:所述NFC读卡器将所述调制信号的特征信息与所述响应信号的预设特征信息进行匹配,其中,所述调制信号的特征信息包括所述调制信号的调制方式、幅度和数据长度中的至少一项,所述NFC读卡器根据所述匹配结果选择是否发送错误指示信号的步骤包括:当所述匹配结果为所述调制信号的特征信息与所述响应信号的预设特征信息的匹配程度大于或等于特征阈值时,所述NFC 读卡器发送所述错误指示信号;当所述匹配结果为所述调制信号的特征信息与所述响应信号的预设特征信息的匹配程度小于所述特征阈值时,所述NFC读卡器不发送所述错误指示信号。Optionally, in the interference processing method as described above, when the preset condition is preset feature information of the response signal, the NFC card reader matches the modulation signal with the preset condition The step of: the NFC card reader matches the feature information of the modulated signal with the preset feature information of the response signal, wherein the feature information of the modulated signal includes a modulation mode and a magnitude of the modulated signal. And at least one of the data lengths, the step of the NFC card reader selecting whether to send the error indication signal according to the matching result comprises: when the matching result is the feature information of the modulation signal and the response signal When the matching degree of the feature information is greater than or equal to the feature threshold, the NFC card reader sends the error indication signal; when the matching result is the feature information of the modulation signal and the preset feature information of the response signal The NFC card reader does not transmit the error indication signal when the degree of matching is less than the feature threshold.
可选地,如上所述的干扰处理方法还包括:所述NFC读卡器在预设响应时间内未接收到所述响应信号时,重新发送所述请求信号。Optionally, the interference processing method as described above further includes: when the NFC card reader does not receive the response signal within a preset response time, resending the request signal.
本公开的实施例还提供一种干扰处理装置,包括:发送模块,用于发送请求信号;接收模块,用于接收调制信号;解码模块,用于对所述接收模块接收的调制信号进行解码;匹配模块,用于在所述解码模块对所述调制信号解码失败时,将所述调制信号与预设条件进行匹配,得到匹配结果,所述发送模块还用于根据所述匹配模块得到的所述匹配结果选择是否发送错误指示信号。The embodiment of the present disclosure further provides an interference processing apparatus, including: a sending module, configured to send a request signal; a receiving module, configured to receive a modulated signal; and a decoding module, configured to decode the modulated signal received by the receiving module; a matching module, configured to: when the decoding module fails to decode the modulated signal, match the modulated signal with a preset condition to obtain a matching result, where the sending module is further configured to obtain according to the matching module The matching result selects whether to send an error indication signal.
可选地,如上所述的干扰处理装置中,所述发送模块根据所述匹配结果选择是否发送错误指示信号包括:当所述匹配结果为匹配成功时,所述发送模块发送所述错误指示信号;当所述匹配结果为匹配失败时,所述发送模块不发送所述错误指示信号。Optionally, in the interference processing device, the sending, by the sending module, whether to send the error indication signal according to the matching result, the sending module sends the error indication signal when the matching result is that the matching is successful. When the matching result is a match failure, the sending module does not send the error indication signal.
可选地,如上所述的干扰处理装置还包括:确定模块,用于确定所述预设条件,其中,所述确定模块根据所述请求信号的类型和所述NFC读卡器接收响应信号的时间范围统计值中的至少一项,确定接收所述响应信号的时间范围作为所述预设条件,或者,根据所述请求信号的类型、所述请求信号所请求的内容和所述NFC读卡器接收的响应信号的数据长度统计值中的至少一项,确定所述响应信号的数据长度作为所述预设条件,或者,确定接收所述响应信号的概率阈值作为所述预设条件,并根据发送所述请求信号的时间,确定不同时间接收到的调制信号对应的概率系数,或者,根据NFC中预先设定的信号类型,确定所述响应信号的预设特征信息作为所述预设条件。Optionally, the interference processing device as described above further includes: a determining module, configured to determine the preset condition, wherein the determining module receives the response signal according to the type of the request signal and the NFC card reader At least one of the time range statistics, determining a time range in which the response signal is received as the preset condition, or according to a type of the request signal, a content requested by the request signal, and the NFC card reading At least one of a data length statistical value of the response signal received by the device, determining a data length of the response signal as the preset condition, or determining a probability threshold for receiving the response signal as the preset condition, and Determining, according to a time when the request signal is sent, a probability coefficient corresponding to the modulated signal received at different times, or determining, according to a preset signal type in the NFC, preset feature information of the response signal as the preset condition .
可选地,如上所述的干扰处理装置中,当所述确定模块确定的所述预设条件为接收所述响应信号的时间范围时,所述发送模块根据所述匹配结果选择是否发送错误指示信号包括:当所述匹配结果为所述调制信号在所确定的时间范围内时,所述发送模块发送所述错误指示信号;当所述匹配结果为所述调制信号在所述确定的时间范围外时, 所述发送模块不发送所述错误指示信号。Optionally, in the interference processing device, as described above, when the preset condition determined by the determining module is a time range for receiving the response signal, the sending module selects whether to send an error indication according to the matching result. The signal includes: when the matching result is that the modulation signal is within the determined time range, the sending module sends the error indication signal; when the matching result is that the modulation signal is in the determined time range When the device is outside, the sending module does not send the error indication signal.
可选地,如上所述的干扰处理装置中,当所述确定模块确定的所述预设条件为所述响应信号的数据长度,且所述数据长度为数据长度范围时,所述发送模块根据所述匹配结果选择是否发送错误指示信号包括:当所述匹配结果为所述调制信号的数据长度在所述数据长度范围内时,所述发送模块发送所述错误指示信号;当所述匹配结果为所述调制信号的数据长度在所述数据长度范围外时,所述发送模块不发送所述错误指示信号。Optionally, in the interference processing device, as described above, when the preset condition determined by the determining module is a data length of the response signal, and the data length is a data length range, the sending module is configured according to Selecting whether to send the error indication signal by the matching result includes: when the matching result is that the data length of the modulation signal is within the data length range, the sending module sends the error indication signal; when the matching result is The transmitting module does not transmit the error indication signal when the data length of the modulation signal is outside the data length range.
可选地,如上所述的干扰处理装置中,当所述确定模块确定的所述预设条件为所述响应信号的数据长度,且所述数据长度为数据长度集合时,所述发送模块根据所述匹配结果选择是否发送错误指示信号包括:当所述匹配结果为所述调制信号的数据长度与所述数据长度集合中的任意一个元素相等时,所述发送模块发送所述错误指示信号;当所述匹配结果为所述调制信号的数据长度与所述数据长度集合中的每个元素都不相等时,所述发送模块不发送所述错误指示信号。Optionally, in the interference processing device, as described above, when the preset condition determined by the determining module is a data length of the response signal, and the data length is a data length set, the sending module is configured according to Selecting whether to send the error indication signal by the matching result includes: when the matching result is that the data length of the modulation signal is equal to any one of the data length sets, the sending module sends the error indication signal; The transmitting module does not transmit the error indication signal when the matching result is that the data length of the modulation signal is not equal to each element in the data length set.
可选地,如上所述的干扰处理装置中,当所述确定模块确定的所述预设条件为所述接收所述响应信号的概率阈值时,所述匹配模块包括:获取单元,用于根据所述调制信号的特征、强度和数据长度中的至少一项,获取所述调制信号的初始概率;计算单元,用于计算所述获取单元获取的调制信号的初始概率和所述确定模块确定的调制信号对应的概率系数的乘积,得到信号概率;匹配单元,用于将所述计算单元计算得到的信号概率与所述确定模块确定的概率阈值进行对比,所述发送模块根据所述匹配结果选择是否发送错误指示信号包括:当所述匹配结果为所述信号概率大于或等于所述概率阈值时,所述发送模块发送所述错误指示信号;当所述匹配结果为所述信号概率小于所述概率阈值时,所述发送模块不发送所述错误指示信号。Optionally, in the interference processing device, as described above, when the preset condition determined by the determining module is the probability threshold of receiving the response signal, the matching module includes: an acquiring unit, configured to: Acquiring at least one of a characteristic, an intensity, and a data length of the modulated signal, an initial probability of acquiring the modulated signal; a calculating unit, configured to calculate an initial probability of the modulated signal acquired by the acquiring unit, and determined by the determining module And a matching unit, configured to compare a signal probability calculated by the calculating unit with a probability threshold determined by the determining module, where the sending module selects according to the matching result Whether the error indication signal is sent includes: when the matching result is that the signal probability is greater than or equal to the probability threshold, the sending module sends the error indication signal; when the matching result is that the signal probability is less than the The probability that the transmission module does not transmit the error indication signal.
可选地,如上所述的干扰处理装置中,当所述确定模块确定的所述预设条件为所述响应信号的预设特征信息时,所述匹配模块将所述调制信号与所述预设条件进行匹配包括:将所述调制信号的特征信息与所述响应信号的预设特征信息进行匹配,其中,所述调制信号的 特征信息包括所述调制信号的调制方式、幅度和数据长度中的至少一项,所述发送模块根据所述匹配结果选择是否发送错误指示信号包括;当所述匹配结果为所述调制信号的特征信息与所述响应信号的预设特征信息的匹配程度大于或等于特征阈值时,所述发送模块发送所述错误指示信号;当所述匹配结果为所述调制信号的特征信息与所述响应信号的预设特征信息的匹配程度小于所述特征阈值时,所述发送模块不发送所述错误指示信号。Optionally, in the interference processing device, as described above, when the preset condition determined by the determining module is preset feature information of the response signal, the matching module compares the modulation signal with the pre- Setting the condition to match includes: matching the feature information of the modulated signal with the preset feature information of the response signal, wherein the feature information of the modulated signal includes a modulation mode, an amplitude, and a data length of the modulated signal. At least one item, the sending module, according to the matching result, selecting whether to send an error indication signal includes: when the matching result is that the matching degree of the feature information of the modulation signal and the preset feature information of the response signal is greater than or When the value is equal to the feature threshold, the sending module sends the error indication signal; when the matching result is that the matching degree of the feature information of the modulated signal and the preset feature information of the response signal is less than the feature threshold, The transmitting module does not transmit the error indication signal.
可选地,如上所述的干扰处理装置中,所述发送模块还用于在所述接收模块在预设响应时间内未接收到所述响应信号时,重新发送所述请求信号。Optionally, in the interference processing device as described above, the sending module is further configured to resend the request signal when the receiving module does not receive the response signal within a preset response time.
本公开的实施例还提供一种干扰处理装置,包括存储器和处理器,所述存储器用于保存可执行指令,所述处理器用于执行所述存储器保存的所述可执行指令,以进行如下操作:发送请求信号;在接收到调制信号并对所述调制信号解码失败时,将所述调制信号与预设条件进行匹配,得到匹配结果;根据所述匹配结果选择是否发送错误指示信号。Embodiments of the present disclosure also provide an interference processing apparatus including a memory and a processor, the memory is configured to save executable instructions, and the processor is configured to execute the executable instructions saved by the memory to perform the following operations Transmitting a request signal; when receiving the modulated signal and decoding the modulated signal fails, matching the modulated signal with a preset condition to obtain a matching result; and selecting whether to send an error indication signal according to the matching result.
本公开的实施例还提供一种计算机可读存储介质,所述计算机可读存储介质存储有计算机可执行指令,所述处理器执行所述计算机可执行指令时,进行如下操作:发送请求信号;在接收到调制信号并对所述调制信号解码失败时,将所述调制信号与预设条件进行匹配,得到匹配结果;根据所述匹配结果选择是否发送错误指示信号。An embodiment of the present disclosure further provides a computer readable storage medium storing computer executable instructions, and when the processor executes the computer executable instructions, performing an operation of: transmitting a request signal; When receiving the modulated signal and decoding the modulated signal fails, the modulated signal is matched with a preset condition to obtain a matching result; and whether to send an error indication signal is selected according to the matching result.
本公开的实施例提供的干扰处理方法和装置中,NFC读卡器发送请求信号后等待响应信号,NFC读卡器在接收到调制信号并对该调制信号解码失败时,将该调制信号与预设条件进行匹配,并根据得到的匹配结果选择是否发送错误指示信号,上述预设条件可以在一定程度上反应出响应信号的特征,因此,匹配结果可以反应出调制信号与响应信号的相似程度,这样,NFC读卡器依据该调制信号与响应信号的相似程度发送错误指示信号,可以有效地避免将干扰信号误判为错误信号的情况,从而能够在提高NFC读卡器的可靠性的同时,保证远距离区域通信的灵敏度。In the interference processing method and apparatus provided by the embodiment of the present disclosure, the NFC card reader waits for a response signal after transmitting the request signal, and when the NFC card reader receives the modulation signal and fails to decode the modulated signal, the modulation signal is pre- The condition is matched, and whether the error indication signal is sent according to the obtained matching result, the preset condition can reflect the characteristic of the response signal to some extent, and therefore, the matching result can reflect the similarity between the modulated signal and the response signal. In this way, the NFC card reader sends an error indication signal according to the degree of similarity between the modulation signal and the response signal, so that the interference signal can be effectively misjudged as an error signal, thereby improving the reliability of the NFC card reader. Ensure the sensitivity of communication in long-distance areas.
附图说明DRAWINGS
附图用来提供对本公开的技术方案的进一步理解,并且构成说明书的一部分,与本公开的实施例一起用于解释本公开的技术方案,并不构成对本公开的技术方案的限制,附图中:The drawings are used to provide a further understanding of the technical solutions of the present disclosure, and constitute a part of the specification, which is used to explain the technical solutions of the present disclosure together with the embodiments of the present disclosure, and does not constitute a limitation of the technical solutions of the present disclosure. :
图1为一种NFC技术的通信流程示意图;1 is a schematic diagram of a communication flow of an NFC technology;
图2为一种NFC技术中卡片发送数据的原理示意图;2 is a schematic diagram of a principle of sending data by a card in an NFC technology;
图3为一种NFC技术的通信异常的流程示意图;3 is a schematic flow chart of a communication abnormality of an NFC technology;
图4为本公开的实施例提供的一种干扰处理方法的流程图;FIG. 4 is a flowchart of an interference processing method according to an embodiment of the present disclosure;
图5为本公开的实施例提供的另一种干扰处理方法的流程图;FIG. 5 is a flowchart of another interference processing method according to an embodiment of the present disclosure;
图6为本公开的实施例提供的干扰处理方法的一种应用场景示意图;FIG. 6 is a schematic diagram of an application scenario of an interference processing method according to an embodiment of the present disclosure;
图7为本公开的实施例提供的干扰处理方法的另一种应用场景示意图;FIG. 7 is a schematic diagram of another application scenario of an interference processing method according to an embodiment of the present disclosure;
图8为本公开的实施例提供的干扰处理方法的又一种应用场景示意图;FIG. 8 is a schematic diagram of still another application scenario of an interference processing method according to an embodiment of the present disclosure;
图9为本公开的实施例提供的干扰处理方法的再一种应用场景示意图;FIG. 9 is a schematic diagram of still another application scenario of an interference processing method according to an embodiment of the present disclosure;
图10为本公开的实施例提供的干扰处理方法的再一种应用场景示意图;FIG. 10 is a schematic diagram of still another application scenario of an interference processing method according to an embodiment of the present disclosure;
图11为本公开的实施例提供的一种干扰处理装置的结构示意图;FIG. 11 is a schematic structural diagram of an interference processing apparatus according to an embodiment of the present disclosure;
图12为本公开的实施例提供的另一种干扰处理装置的结构示意图;FIG. 12 is a schematic structural diagram of another interference processing apparatus according to an embodiment of the present disclosure;
图13为本公开的实施例提供的又一种干扰处理装置的结构示意图。FIG. 13 is a schematic structural diagram of still another interference processing apparatus according to an embodiment of the present disclosure.
具体实施方式detailed description
为使本公开的技术方案和优点更加清楚明白,下文中将结合附图对本公开的实施例进行详细说明。需要说明的是,在不冲突的情况下,本公开中的实施例及实施例中的特征可以相互任意组合。In order to make the technical solutions and advantages of the present disclosure more apparent, the embodiments of the present disclosure will be described in detail below with reference to the accompanying drawings. It should be noted that the embodiments in the present disclosure and the features in the embodiments may be arbitrarily combined with each other without conflict.
附图的流程图示出的步骤可以在诸如一组计算机可执行信号的计算机系统中执行。并且,虽然在流程图中示出了逻辑顺序,但是在某些情况下,可以以不同于示出的顺序执行所示出或描述的步骤。The steps illustrated by the flowchart of the Figures may be performed in a computer system such as a set of computer executable signals. Also, although the logical order is shown in the flowcharts, in some cases, the steps shown or described may be performed in a different order than illustrated.
在描述本公开的实施例提供的干扰处理方法之前,先简单介绍NFC模块的工作方式,该NFC模块工作在半双工模式。图1示出了一种NFC技术的通信流程示意图,如图1所示,包括以下步骤:步骤1,NFC读卡器发送请求信号;步骤2,卡片返回响应信号;步骤3,NFC读卡器检测到错误信号;步骤4,NFC读卡器发送错误指示信号R(NAK)给卡片;步骤5,卡片重新发送响应信号。Before describing the interference processing method provided by the embodiment of the present disclosure, the working mode of the NFC module is briefly introduced, and the NFC module operates in a half duplex mode. 1 shows a communication flow diagram of an NFC technology, as shown in FIG. 1, including the following steps: Step 1, the NFC card reader sends a request signal; Step 2, the card returns a response signal; Step 3, NFC card reader An error signal is detected; in step 4, the NFC card reader sends an error indication signal R (NAK) to the card; in step 5, the card resends the response signal.
NFC读卡器中预先设定一个判决门限,当其接收到的调制信号(例如步骤2中的响应信号或其它干扰信号)超过该判决门限时,启动解码。A decision threshold is preset in the NFC reader, and when the received modulated signal (for example, the response signal in step 2 or other interference signal) exceeds the decision threshold, decoding is initiated.
在上述NFC通信流程中,如果NFC读卡器因为误检测干扰信号而频繁地发送错误指示信号,则会导致卡片进入一个死循环,即丢弃数据、处理数据、准备发送数据、中断发送,从而将导致整个NFC通信流程混乱,造成通信失败。另外,在近距离区域,干扰信号增加,如果判决门限设置过低,NFC读卡器将因为干扰信号超过判决门限而又解码失败,从而错误地发送错误指示信号进入通信异常流程,导致近距离区域通信成功率降低,即无法保证NFC通信的可靠性。In the above NFC communication flow, if the NFC card reader frequently sends an error indication signal due to erroneous detection of an interference signal, the card will enter an infinite loop, that is, discarding data, processing data, preparing to transmit data, and interrupting transmission, thereby The entire NFC communication process is confusing, causing communication failure. In addition, in the short-range area, the interference signal increases. If the decision threshold is set too low, the NFC reader will fail to decode because the interference signal exceeds the decision threshold, thereby erroneously sending an error indication signal into the communication abnormal process, resulting in a close-range area. The communication success rate is reduced, that is, the reliability of NFC communication cannot be guaranteed.
NFC通信包括以下两个关键的通信机制:机制1,卡片通过电磁耦合获得NFC读卡器发射的能量以进行工作;机制2,卡片通过改变负载传输信号给NFC读卡器。NFC communication includes the following two key communication mechanisms: mechanism 1, the card obtains the energy emitted by the NFC reader by electromagnetic coupling to operate; mechanism 2, the card transmits the signal to the NFC reader by changing the load.
图2为一种NFC技术中卡片发送数据的原理示意图,图2中的电阻R1是卡片工作时的负载电阻,电阻R2是可接入和断开的负载电阻。当卡片开关K闭合,则负载电阻R2接入电路,卡片负载变大,读卡器检测到的电压(A点)降低。当卡片开关K打开,则负载电阻R2不接入电路,卡片负载变小,读卡器检测到的电压(A点)升高。2 is a schematic diagram of a principle of card transmission data in NFC technology. The resistor R1 in FIG. 2 is a load resistor when the card is in operation, and the resistor R2 is a load resistor that can be connected and disconnected. When the card switch K is closed, the load resistor R2 is connected to the circuit, the card load becomes large, and the voltage (point A) detected by the card reader is lowered. When the card switch K is turned on, the load resistor R2 is not connected to the circuit, the card load becomes small, and the voltage (point A) detected by the card reader rises.
卡片功耗随工作状态变化,等效的负载电阻R1也是变化的,导致读卡器端的电压发生变化。如果NFC读卡器端的判决门限较低,则会将电阻R1的变化判决为电阻R2的接入和不接入,也就是说,卡片 本身会产生很强的干扰,而且NFC读卡器和卡片距离越近,干扰越明显。The power consumption of the card varies with the operating state, and the equivalent load resistance R1 also changes, causing the voltage at the reader end to change. If the decision threshold of the NFC reader is low, the change of the resistor R1 is judged as the access and non-access of the resistor R2, that is, the card itself generates strong interference, and the NFC card reader and card The closer the distance, the more obvious the interference.
如果卡片发送响应信号后,读卡器检测出信号超过判决门限,并解码失败,则读卡器立即发送错误指示信号,卡片收到错误指示信号后,重新发送响应信号,再次进行传输,读卡器正确接收响应信号,从而完成了一个正常信令交互流程,即如图1所示的通信流程。If the card detects that the signal exceeds the decision threshold after the card sends the response signal, and the decoding fails, the card reader immediately sends an error indication signal. After the card receives the error indication signal, it resends the response signal, transmits again, and reads the card. The device correctly receives the response signal, thereby completing a normal signaling interaction process, that is, the communication flow shown in FIG.
如果卡片或者外部环境产生了干扰信号,NFC读卡器检测出信号超过判决门限,并解码失败,如果NFC读卡器立即发送错误指示信号,卡片此时还在进行响应数据处理,收到该错误指示信号后,卡片停止数据处理,并重新进行数据处理,在处理的过程中,往往产生更多的干扰信号,导致读卡器再次检测到干扰信号,并再次发送错误指示信号,从而进入一个死循环,图3示出了一种NFC技术的通信异常的流程示意图。可见,将干扰信号误判为卡片发送的响应信号对NFC通信流程的影响十分严重。目前,在NFC通信中,亟需提供一种可以有效区分干扰信号和卡片发送的响应信号的干扰处理方式。If the card or the external environment generates an interference signal, the NFC card reader detects that the signal exceeds the decision threshold and the decoding fails. If the NFC reader immediately sends an error indication signal, the card is still processing the response data and receives the error. After the indication signal, the card stops the data processing and re-processes the data. During the processing, more interference signals are generated, causing the card reader to detect the interference signal again and send the error indication signal again, thereby entering a dead. Loop, Figure 3 shows a flow diagram of a communication anomaly of NFC technology. It can be seen that the misinterpretation of the interference signal as the response signal sent by the card has a serious impact on the NFC communication process. At present, in NFC communication, it is urgent to provide an interference processing method that can effectively distinguish between an interference signal and a response signal transmitted by a card.
下面通过具体的实施例对本公开的技术方案进行详细说明,本公开的以下各实施例中的NFC读卡器为配置了NFC模块的读卡器,可以为公交卡的读卡器、公司门禁卡的读卡器、或配置有NFC模块的终端设备(用于实现NFC读卡器的功能),与NFC读卡器进行交互的卡片可以是公交卡、门禁卡或配置有NFC模块的移动终端(用于实现卡片的功能)。本公开提供的以下几个具体的实施例可以相互结合,对于相同或相似的概念或过程可能在某些实施例不再赘述。The technical solution of the present disclosure is described in detail below through specific embodiments. The NFC card reader in the following embodiments of the present disclosure is a card reader configured with an NFC module, and can be a card reader of a bus card and a company access card. a card reader, or a terminal device equipped with an NFC module (for implementing the function of the NFC card reader), the card interacting with the NFC card reader may be a bus card, an access card or a mobile terminal configured with an NFC module ( Used to implement the function of the card). The following specific embodiments of the present disclosure may be combined with each other, and the same or similar concepts or processes may not be described in some embodiments.
图4为本公开的实施例提供的一种干扰处理方法的流程图。本公开的实施例提供的干扰处理方法适用于NFC通信中NFC读卡器检测信号并进行干扰判断的情况中,该方法可以由干扰处理装置执行,该干扰处理装置可以通过硬件和软件结合的方式来实现,该干扰处理装置可以集成在NFC读卡器的处理器中,供处理器调用使用。如图4所示,本公开的实施例的干扰处理方法可以包括如下步骤S110至S130。FIG. 4 is a flowchart of an interference processing method according to an embodiment of the present disclosure. In the case where the interference processing method provided by the embodiment of the present disclosure is applicable to an NFC card reader detecting signal in NFC communication and performing interference determination, the method may be performed by an interference processing device, and the interference processing device may be combined by hardware and software. To achieve, the interference processing device can be integrated in the processor of the NFC card reader for use by the processor. As shown in FIG. 4, the interference processing method of the embodiment of the present disclosure may include the following steps S110 to S130.
S110,NFC读卡器发送请求信号。S110. The NFC card reader sends a request signal.
本公开的实施例提供的干扰处理方法为NFC通信中NFC读卡器检测调制信号并进行干扰判断的处理方式。NFC通信流程包括初始化过程和信令传输过程,卡片靠近NFC读卡器触发通信,完成初始化过程后,信令传输过程如上述图1所示,本公开的实施例提供的干扰处理方法主要针对NFC通信中的信令传输过程,即已完成初始化而执行数据通信的流程。本公开的实施例中的NFC读卡器在发送请求信号后,可以等待接收响应信号,并根据响应信号进行响应操作。The interference processing method provided by the embodiment of the present disclosure is a processing method in which an NFC card reader detects a modulated signal and performs interference determination in NFC communication. The NFC communication process includes an initialization process and a signaling transmission process, and the card is close to the NFC card reader to trigger communication. After the initialization process is completed, the signaling transmission process is as shown in FIG. 1 above, and the interference processing method provided by the embodiment of the present disclosure is mainly directed to the NFC. The signaling transmission process in communication, that is, the process of performing data communication after initialization has been completed. The NFC card reader in the embodiment of the present disclosure may wait for receiving the response signal after transmitting the request signal, and perform a response operation according to the response signal.
S120,NFC读卡器在接收到调制信号并对调制信号解码失败时,将调制信号与预设条件进行匹配,得到匹配结果,其中,所解码的调制信号为强度大于或等于干扰阈值的信号。S120. The NFC card reader, when receiving the modulation signal and decoding the modulation signal fails, matches the modulation signal with a preset condition to obtain a matching result, where the decoded modulation signal is a signal whose intensity is greater than or equal to the interference threshold.
在本公开的实施例中,NFC读卡器在发送请求信号后,且在等待接收响应信号的时间段内,可能会接收到各种调制信号,其接收到的调制信号可能是卡片发送的响应信号,也可能是环境中的干扰信号。在NFC读卡器接收到调制信号后,首先判断该调制信号是否大于或等于干扰阈值(即NFC读卡器中预先设定的判决门限),当该调制信号大于或等于干扰阈值时,触发对该调制信号进行解码,若解码失败,则说明该调制信号有可能是错误信号,然而,该调制信号也有可能是干扰信号。本公开的实施例中,NFC读卡器解码失败时,先不发送错误指示信号,而是将该调制信号与预设条件进行匹配,得到一匹配结果。In an embodiment of the present disclosure, the NFC card reader may receive various modulated signals after transmitting the request signal and waiting for receiving the response signal, and the received modulated signal may be a response of the card transmission. The signal may also be an interference signal in the environment. After receiving the modulated signal, the NFC reader first determines whether the modulated signal is greater than or equal to the interference threshold (ie, a predetermined threshold of the NFC reader), and when the modulated signal is greater than or equal to the interference threshold, triggering The modulated signal is decoded. If the decoding fails, the modulated signal may be an error signal. However, the modulated signal may also be an interference signal. In the embodiment of the present disclosure, when the NFC card reader fails to decode, the error indication signal is not sent first, but the modulation signal is matched with the preset condition to obtain a matching result.
S130,NFC读卡器根据该匹配结果选择是否发送错误指示信号。S130. The NFC card reader selects whether to send an error indication signal according to the matching result.
在本公开的实施例中,NFC读卡器在接收到大于或等于干扰阈值的调制信号,并且对该调制信号解码失败时,将该调制信号与接收响应的预设条件进行匹配,并得到一匹配结果,该匹配结果可以在一定程度上反应出调制信号与错误信号相似还是与干扰信号更相似,此时,NFC读卡器可以根据匹配结果选择发送错误指示信号或者不发送错误指示信号。当NFC读卡器得到的匹配结果说明该调制信号是干扰信号时,若发送错误指示信号则会将干扰信号误判为错误信号,影响NFC通信的整个流程,本公开的实施例提供的方法中通过匹配结果选择性的发送错误指示信号,可以有效地避免将干扰信号误判为错误信 号的情况,同时,可以有效地保证NFC读卡器的灵敏度。In an embodiment of the present disclosure, when the NFC card reader receives the modulation signal greater than or equal to the interference threshold and fails to decode the modulation signal, the modulation signal is matched with the preset condition of the reception response, and a The matching result can reflect whether the modulated signal is similar to the error signal or the interference signal to some extent. At this time, the NFC card reader can select to send the error indication signal or not to send the error indication signal according to the matching result. When the matching result obtained by the NFC card reader indicates that the modulated signal is an interference signal, if the error indication signal is sent, the interference signal is misjudged as an error signal, which affects the entire flow of the NFC communication, and the method provided by the embodiment of the present disclosure By selectively transmitting the error indication signal through the matching result, it is possible to effectively avoid the case where the interference signal is misjudged as the error signal, and at the same time, the sensitivity of the NFC card reader can be effectively ensured.
在实际应用中,预设条件可以是针对响应信号进行配置的,即与该预设条件匹配度较高的调制信号可以认为是卡片发送的错误信号,与该预设条件匹配度较低的调制信号可以认为是干扰信号,匹配的相似度可以由设计人员预先配置,例如,在调制信号完全符合预设条件时,认为匹配成功,调制信号为错误信号,再例如,在调制信号与预设条件的匹配度达到某一阈值时,认为匹配成功,调制信号为错误信号。In a practical application, the preset condition may be configured for the response signal, that is, the modulation signal with a higher degree of matching with the preset condition may be regarded as an error signal sent by the card, and the modulation with a lower matching degree with the preset condition. The signal can be considered as an interference signal, and the similarity of the matching can be pre-configured by the designer. For example, when the modulated signal completely meets the preset condition, the matching is considered to be successful, and the modulated signal is an error signal, for example, in the modulated signal and the preset condition. When the matching degree reaches a certain threshold, the matching is considered to be successful, and the modulated signal is an error signal.
本公开的实施例提供的干扰处理方法的构思基础在于,NFC技术中,如果NFC读卡器在检测到调制信号并解码失败时立即给卡片发送错误指示信号,并且如果上述调制信号是由卡片自身或外部环境产生的干扰信号,卡片在接收到错误指示信号时正在进行响应数据的处理,此时,卡片会停止数据处理,并重新进行数据处理,在处理过程中卡片可能会产生更多的干扰信号,导致NFC读卡器再次检测到干扰信号并再次发送错误指示信号,这样,NFC读卡器和卡片会进入图3所示的死循环,降低了NFC读卡器的使用性能。也就是说,NFC技术中对NFC读卡器的判决门限的设置非常关键,若该判决门限设置的过低,虽然可以保证较远距离的通信,但是,很容易出现上述将干扰信号误判为错误信号的现象,降低了NFC读卡器的可靠性,若判决门限设置的过高,虽然可以保证近距离区域通信的可靠性,减少干扰误判的现象,但是,很难保证较远距离区域通信的灵敏度。The concept of the interference processing method provided by the embodiments of the present disclosure is based on the NFC technology, if the NFC card reader sends an error indication signal to the card immediately when the modulation signal is detected and the decoding fails, and if the modulation signal is by the card itself Or the interference signal generated by the external environment, the card is processing the response data when receiving the error indication signal. At this time, the card stops the data processing and re-processes the data, and the card may generate more interference during the processing. The signal causes the NFC card reader to detect the interference signal again and send the error indication signal again, so that the NFC card reader and the card enter the infinite loop shown in FIG. 3, which reduces the performance of the NFC card reader. That is to say, the setting of the decision threshold of the NFC card reader in the NFC technology is very critical. If the decision threshold is set too low, although the communication over a long distance can be ensured, it is easy to misinterpret the interference signal as The phenomenon of the error signal reduces the reliability of the NFC card reader. If the decision threshold is set too high, although the reliability of the short-range area communication can be ensured and the phenomenon of interference misjudgment is reduced, it is difficult to ensure a long distance area. The sensitivity of communication.
因此,本公开的实施例提供的干扰处理方法中,NFC读卡器在检测到调制信号并解码失败时,不会立即向卡片发送错误指示信号,而是将解码失败的调制信号与接收响应信号的预设条件进行匹配,随后,根据匹配结果选择性地发送错误指示信号,通过上述匹配结果可以获得调制信号的相关信息,即上述匹配结果可以在一定程度上反应出调制信号与响应信号的相似程度。因此,可以在调制信号接近响应信号的情况下发送错误指示信号,在调制信号接近干扰信号的情况下不发送错误指示信号,这样,可以很大程度上过滤掉卡片自身和外部环境产生的干扰信号,提高NFC读卡器的可靠性,并且可以同时保证远距 离区域通信的灵敏度。Therefore, in the interference processing method provided by the embodiment of the present disclosure, when the NFC card reader detects the modulation signal and fails to decode, the NFC card reader does not immediately send an error indication signal to the card, but instead decodes the failed modulation signal and the reception response signal. The preset condition is matched, and then the error indication signal is selectively transmitted according to the matching result, and the related information of the modulated signal can be obtained by the above matching result, that is, the matching result can reflect the similarity of the modulated signal and the response signal to some extent. degree. Therefore, the error indication signal can be sent when the modulation signal is close to the response signal, and the error indication signal is not sent when the modulation signal is close to the interference signal, so that the interference signal generated by the card itself and the external environment can be largely filtered out. Improve the reliability of the NFC reader and ensure the sensitivity of communication over long distances.
本公开的实施例提供的干扰处理方法中,NFC读卡器发送请求信号后等待响应信号,NFC读卡器在接收到调制信号并对该调制信号解码失败时,将该调制信号与预设条件进行匹配,并根据得到的匹配结果选择是否发送错误指示信号,上述预设条件可以在一定程度上反应出响应信号的特征,因此,匹配结果可以反应出调制信号与响应信号的相似程度,这样,NFC读卡器依据调制信号与响应信号的相似程度选择性地发送错误指示信号,可以有效地避免将干扰信号误判为错误信号,从而在提高NFC读卡器的可靠性的同时,保证远距离区域通信的灵敏度,能够兼容高可靠性和高灵敏度。In the interference processing method provided by the embodiment of the present disclosure, the NFC card reader waits for a response signal after transmitting the request signal, and the NFC card reader receives the modulated signal and fails to decode the modulated signal, and the modulated signal and the preset condition are Performing matching, and selecting whether to send an error indication signal according to the obtained matching result, the preset condition may reflect the characteristic of the response signal to some extent, and therefore, the matching result may reflect the similarity between the modulated signal and the response signal, such that The NFC card reader selectively transmits the error indication signal according to the degree of similarity between the modulation signal and the response signal, thereby effectively avoiding the misinterpretation of the interference signal as an error signal, thereby improving the reliability of the NFC card reader while ensuring the long distance. The sensitivity of regional communication is compatible with high reliability and high sensitivity.
图5为本公开的实施例提供的另一种干扰处理方法的流程图。在上述实施例的基础上,本公开的实施例中的步骤S130可以包括子步骤:S131,当匹配结果为匹配成功时,NFC读卡器发送错误指示信号;S132,当匹配结果为匹配失败时,NFC读卡器不发送错误指示信号。FIG. 5 is a flowchart of another interference processing method according to an embodiment of the present disclosure. On the basis of the foregoing embodiment, step S130 in the embodiment of the present disclosure may include the sub-step: S131, when the matching result is that the matching is successful, the NFC card reader sends an error indication signal; S132, when the matching result is a matching failure The NFC card reader does not send an error indication signal.
在本公开的实施例中,匹配结果是否为匹配成功例如可以是调制信号完全符合预设条件,也可以是调制信号落于预设条件的范围内,还可以是调制信号与预设条件的匹配度达到某一阈值。In the embodiment of the present disclosure, whether the matching result is a matching success may be, for example, the modulation signal completely conforms to the preset condition, or the modulation signal falls within a preset condition, or may be a matching of the modulation signal and the preset condition. The degree reaches a certain threshold.
可选地,在本公开的实施例中,NFC读卡器在发送请求信号后,不仅需要等待接收响应信号,还可以包括:S111,NFC读卡器确定预设条件。Optionally, in the embodiment of the present disclosure, after transmitting the request signal, the NFC card reader not only needs to wait for receiving the response signal, but also may include: S111, and the NFC card reader determines the preset condition.
在实际应用中,NFC读卡器确定预设条件的方式例如可以是根据发送的请求信号的类型、所请求的内容、在一段时间内接收响应信号的统计结果、以及NFC标准协议对卡片发送响应信号的规范确定的,该预设条件可以在一定程度上反应出响应信号的特征。In an actual application, the manner in which the NFC card reader determines the preset condition may be, for example, according to the type of the sent request signal, the requested content, the statistical result of receiving the response signal within a period of time, and the response of the NFC standard protocol to the card transmission. The specification of the signal determines that the preset condition can reflect the characteristics of the response signal to some extent.
需要说明的是,本公开的实施例不限制预设条件的具体内容,只要是可以正确地反应响应信号特征的条件都可以作为该预设条件,另外,本公开的实施例同样不限制匹配成功的形式,可以是完全匹配,也可以是一定程度上的匹配,只要是可以反应出调制信号与响应信号具有较高的相似度,都可以认为是匹配成功,而且,本公开的实施例 也不限定NFC读卡器仅根据上述因素确定预设条件,只要是可以反应响应信号的特征,都可以作为确定上述预设条件所依据的因素。It should be noted that the embodiment of the present disclosure does not limit the specific content of the preset condition, as long as the condition that can correctly reflect the response signal feature can be used as the preset condition. In addition, the embodiment of the present disclosure also does not limit the matching success. The form may be a perfect match or a certain degree of matching, as long as it can reflect that the modulated signal and the response signal have a high degree of similarity, it can be considered that the matching is successful, and the embodiments of the present disclosure are not The limited NFC card reader determines the preset condition only according to the above factors, and as long as it is a characteristic that can respond to the response signal, it can be used as a factor for determining the preset condition.
在本公开的实施例中,NFC读卡器确定出的接收响应信号的预设条件的内容不同,NFC读卡器匹配调制信号与预设条件的方式则不同,得到的匹配结果和判断是否发送错误指示信号的原则也不同,以下通过几个实施例进行详细说明。In the embodiment of the present disclosure, the content of the preset condition of the received response signal determined by the NFC card reader is different, and the manner in which the NFC card reader matches the modulated signal is different from the preset condition, and the obtained matching result and the judgment are sent. The principle of the error indication signal is also different, and the following is explained in detail through several embodiments.
可选地,在本公开的实施例的一种应用场景中,NFC读卡器确定预设条件的实现方式可以包括:NFC读卡器根据请求信号的类型和NFC读卡器接收响应信号的时间范围统计值中的至少一项,确定接收响应信号的时间范围。在NFC技术规范中,有多种请求信号的类型,有些请求信号用于鉴权操作,该类型的请求信号的时间窗口较为靠后,有些请求信号用于选择操作,该类型的请求信号的时间窗口较为靠前,另外,NFC读卡器还可以根据大量统计数据得到其应用类型中卡片返回响应信号的最早和最晚时间,将统计出的最早和最晚时间作为接收响应信号的时间范围。Optionally, in an application scenario of the embodiment of the present disclosure, the implementation manner of determining the preset condition by the NFC card reader may include: the NFC card reader according to the type of the request signal and the time when the NFC card reader receives the response signal. At least one of the range statistics determines the time range in which the response signal is received. In the NFC technical specification, there are various types of request signals, some of which are used for authentication operations. The time window of the request signal of this type is relatively late, and some request signals are used for selecting operations, and the time of request signals of this type. The window is more advanced. In addition, the NFC card reader can obtain the earliest and latest time of the card return response signal in its application type according to a large amount of statistical data, and use the first and last time counted as the time range of receiving the response signal.
在该应用场景中,NFC读卡器选择是否发送错误指示信号的实现方式可以包括:当匹配结果为调制信号在所确定的时间范围内时,NFC读卡器发送错误指示信号;当匹配结果为调制信号在确定的时间范围外时,NFC读卡器不发送错误指示信号。In this application scenario, the implementation manner of the NFC card reader selecting whether to send the error indication signal may include: when the matching result is that the modulation signal is within the determined time range, the NFC card reader sends an error indication signal; when the matching result is The NFC card reader does not transmit an error indication signal when the modulated signal is outside of the determined time range.
举例来说,图6为本公开的实施例提供的干扰处理方法的一种应用场景示意图,本实施例中的预设条件为接收响应信号的时间范围,即为图6中的时间窗口(t1,t2),请求信号发送后,NFC读卡器分别接收到超过干扰阈值的调制信号S1和S2,且对S1和S2均解码失败。For example, FIG. 6 is a schematic diagram of an application scenario of an interference processing method according to an embodiment of the present disclosure. The preset condition in this embodiment is a time range of receiving a response signal, that is, a time window in FIG. 6 (t1). , t2), after the request signal is sent, the NFC card reader respectively receives the modulated signals S1 and S2 exceeding the interference threshold, and the decoding of both S1 and S2 fails.
从图6可以看出,S1在时间窗口(t1,t2)之外,NFC读卡器判断S1为干扰信号,不发送错误指示信号,继续接收信号,S2在时间窗口(t1,t2)之内,NFC读卡器判断S2为卡片发送的响应信号,由于对该S2解码失败,因此,NFC读卡器需要发送错误指示信号,以指示卡片重新发送响应信号,NFC读卡器发送错误指示信号后继续等待接收响应信号。As can be seen from Fig. 6, S1 is outside the time window (t1, t2), and the NFC card reader judges that S1 is an interference signal, does not send an error indication signal, continues to receive the signal, and S2 is within the time window (t1, t2). The NFC card reader determines that S2 is a response signal sent by the card. Since the decoding of the S2 fails, the NFC card reader needs to send an error indication signal to instruct the card to resend the response signal, and the NFC card reader sends the error indication signal. Continue to wait to receive the response signal.
本实施例中,NFC读卡器通过设定响应信号的预期时间(时间窗口)来区别干扰信号和卡片发送的信号,NFC读卡器虽然接收到干扰信号,但是并没有影响NFC通信的整个流程。In this embodiment, the NFC card reader distinguishes the interference signal and the signal sent by the card by setting the expected time (time window) of the response signal. Although the NFC card reader receives the interference signal, it does not affect the entire process of the NFC communication. .
可选地,在本公开的实施例的另一种应用场景中,NFC读卡器确定预设条件的实现方式可以包括:NFC读卡器根据请求信号的类型、请求信号所请求的内容和NFC读卡器接收响应信号的数据长度统计值中的至少一项,确定响应信号的数据长度。基于NFC技术规范,请求信号的类型、请求信号所请求的内容不同,接收到的响应信号的数据长度也不同,另外,NFC读卡器还可以根据大量统计数据得到其应用类型中卡片返回响应信号的数据长度统计值,将该数据长度统计值作为接收响应信号的数据长度。Optionally, in another application scenario of the embodiment of the present disclosure, the implementation manner that the NFC card reader determines the preset condition may include: the NFC card reader according to the type of the request signal, the content requested by the request signal, and the NFC The card reader receives at least one of the data length statistics of the response signal to determine the data length of the response signal. Based on the NFC technical specification, the type of the request signal and the content requested by the request signal are different, and the data length of the received response signal is also different. In addition, the NFC card reader can also obtain the card return response signal of the application type according to a large amount of statistical data. The data length statistical value is used as the data length of the received response signal.
在该应用场景的一种实现方式中,上述数据长度可以为数据长度范围,则NFC读卡器选择是否发送错误指示信号的实现方式可以包括:当匹配结果为调制信号的数据长度在上述数据长度范围内时,NFC读卡器发送错误指示信号;当匹配结果为调制信号的数据长度在上述数据长度范围外时,NFC读卡器不发送错误指示信号。In an implementation manner of the application scenario, the data length may be a data length range, and the implementation manner of the NFC card reader selecting whether to send the error indication signal may include: when the matching result is a data length of the modulation signal at the data length When the range is within, the NFC card reader sends an error indication signal; when the matching result is that the data length of the modulation signal is outside the above data length range, the NFC card reader does not send an error indication signal.
在该应用场景的另一种实现方式中,上述数据长度可以为数据长度集合,则NFC读卡器选择是否发送错误指示信号的实现方式可以包括:当匹配结果为调制信号的数据长度与上述数据长度集合中的任意一个元素相等时,NFC读卡器发送错误指示信号;当匹配结果为调制信号的数据长度与上述数据长度集合中的每个元素都不相等时,NFC读卡器不发送错误指示信号。In another implementation manner of the application scenario, the data length may be a data length set, and the implementation manner of the NFC card reader selecting whether to send the error indication signal may include: when the matching result is the data length of the modulation signal and the foregoing data. When any one of the length sets is equal, the NFC card reader sends an error indication signal; when the matching result is that the data length of the modulated signal is not equal to each element in the above data length set, the NFC card reader does not send an error. Indication signal.
举例来说,图7为本公开的实施例提供的干扰处理方法的另一种应用场景示意图,本实施例中的预设条件为接收响应信号的数据长度集合,即为图7中的数据长度集合{L1,L2},请求信号发送后,NFC读卡器分别接收到超过干扰阈值的调制信号S1、S2和S3,且对S1、S2和S3均解码失败。For example, FIG. 7 is a schematic diagram of another application scenario of the interference processing method according to the embodiment of the present disclosure. The preset condition in this embodiment is a data length set of the received response signal, that is, the data length in FIG. 7. The set {L1, L2}, after the request signal is sent, the NFC reader receives the modulated signals S1, S2, and S3 exceeding the interference threshold, respectively, and the decoding fails for S1, S2, and S3.
从图7可以看出,S1的长度小于L2,NFC读卡器判断S1为干扰信号,不发送错误指示信号,继续接收信号,S2的长度大于L2且小于L1,NFC读卡器判断S2为干扰信号,不发送错误指示信号,继续 接收信号,S3的长度等于L2,NFC读卡器判断S3为卡片发送的响应信号,由于对该S3解码失败,因此,NFC读卡器需要发送错误指示信号,以指示卡片重新发送响应信号,NFC读卡器发送错误指示信号后继续等待接收响应信号。It can be seen from Fig. 7 that the length of S1 is less than L2, and the NFC card reader judges that S1 is an interference signal, does not send an error indication signal, and continues to receive signals. The length of S2 is greater than L2 and less than L1, and the NFC card reader judges that S2 is interference. The signal does not send the error indication signal, and continues to receive the signal. The length of S3 is equal to L2, and the NFC card reader determines that S3 is the response signal sent by the card. Since the decoding of the S3 fails, the NFC card reader needs to send an error indication signal. The response card is resent by the instruction card, and the NFC card reader continues to wait for the reception response signal after transmitting the error indication signal.
本实施例中,NFC读卡器通过设定响应信号的预期数据长度来区别干扰信号和卡片发送的信号,NFC读卡器虽然接收到干扰信号,但是并没有影响NFC通信的整个流程。In this embodiment, the NFC card reader distinguishes the interference signal and the signal transmitted by the card by setting the expected data length of the response signal. Although the NFC card reader receives the interference signal, it does not affect the entire flow of the NFC communication.
可选地,在本公开的实施例的又一种应用场景中,NFC读卡器确定预设条件的实现方式可以包括:NFC读卡器确定接收到响应信号的概率阈值,并根据发送请求信号的时间确定不同时间接收到的调制信号对应的概率系数。在该应用场景中,NFC读卡器未能估计出接收响应信号的时间范围或数据长度,由于请求信号发送后,会在规定的时间内返回响应信号,例如,最迟4秒(s)返回,因此,随着时间的增加,超过干扰阈值的信号是卡片发送的响应信号的概率越来越大,即越晚接收到的调制信号对应的概率系数越大。Optionally, in a further application scenario of the embodiment of the present disclosure, the implementation manner of determining, by the NFC card reader, the preset condition may include: determining, by the NFC card reader, a probability threshold of receiving the response signal, and according to the sending request signal The time determines the probability coefficient corresponding to the modulated signal received at different times. In this application scenario, the NFC card reader fails to estimate the time range or data length of the received response signal. After the request signal is sent, the response signal is returned within a specified time, for example, returning at the latest 4 seconds (s). Therefore, as time increases, the probability that the signal exceeding the interference threshold is the response signal sent by the card is getting larger and larger, that is, the later the received modulation signal corresponds to a higher probability coefficient.
在该应用场景中,NFC读卡器将调制信号与预设条件进行匹配的实现方式可以包括:NFC读卡器根据调制信号的特征、强度和数据长度中的至少一项,获取调制信号的初始概率,NFC读卡器计算调制信号的初始概率和调制信号对应的概率系数的乘积,得到信号概率,并将信号概率与概率阈值进行对比。NFC读卡器可以根据接收的响应信号的大量统计值,获得响应信号的特征、强度和数据长度,因此,可以根据调制信号的上述特征得到该调制信号的初始概率,需要说明的是,若NFC读卡器无法获取调制信号的初始概率,则可以认为该初始概率为1。In this application scenario, the implementation manner that the NFC card reader matches the modulation signal with the preset condition may include: the NFC card reader obtains the initial of the modulation signal according to at least one of the feature, the intensity, and the data length of the modulation signal. Probability, the NFC reader calculates the product of the initial probability of the modulated signal and the probability coefficient corresponding to the modulated signal to obtain the signal probability and compares the signal probability to the probability threshold. The NFC card reader can obtain the characteristic, intensity and data length of the response signal according to a large number of statistical values of the received response signal. Therefore, the initial probability of the modulated signal can be obtained according to the above characteristics of the modulated signal. It should be noted that if the NFC is NFC If the card reader cannot obtain the initial probability of the modulated signal, the initial probability can be considered to be 1.
在该应用场景中,NFC读卡器选择是否发送错误指示信号的实现方式可以包括:当匹配结果为信号概率大于或等于概率阈值时,NFC读卡器发送错误指示信号;当匹配结果为信号概率小于概率阈值时,NFC读卡器不发送错误指示信号。In the application scenario, the implementation manner of the NFC card reader selecting whether to send the error indication signal may include: when the matching result is that the signal probability is greater than or equal to the probability threshold, the NFC card reader sends an error indication signal; when the matching result is a signal probability When the probability threshold is less than the probability threshold, the NFC reader does not send an error indication signal.
举例来说,图8为本公开的实施例提供的干扰处理方法的又一种应用场景示意图,本实施例中的预设条件为接收到响应信号的概率 阈值,该概率阈值为预先设定的,例如为1,同时,NFC读卡器还可以预估不同时间接收到的调制信号的概率系数,请求信号发送后,NFC读卡器分别接收到超过干扰阈值的调制信号S1、S2和S3,且对S1、S2和S3均解码失败,S1、S2和S3对应的概率系数分别为0.3、0.5和0.8,另外,NFC读卡器获取到该三个信号S1、S2和S3的初始概率分别为5/3、1.2和1.375。For example, FIG. 8 is a schematic diagram of still another application scenario of the interference processing method according to the embodiment of the present disclosure. The preset condition in this embodiment is a probability threshold of receiving a response signal, where the probability threshold is preset. For example, the NFC card reader can also estimate the probability coefficients of the modulated signals received at different times. After the request signal is sent, the NFC card readers respectively receive the modulated signals S1, S2, and S3 that exceed the interference threshold. And the decoding failures of S1, S2, and S3 are respectively performed, and the probability coefficients corresponding to S1, S2, and S3 are 0.3, 0.5, and 0.8, respectively. In addition, the initial probabilities of the NFC readers acquiring the three signals S1, S2, and S3 are respectively 5/3, 1.2 and 1.375.
S1的信号概率=S1的初始概率(5/3)*概率系数(0.3)=0.5,信号概率小于1,不发送错误指示信号,继续接收信号;S2的信号概率=S1的初始概率(1.2)*概率系数(0.5)=0.6,信号概率小于1,不发送错误指示信号,继续接收信号;S3的信号概率=S1的初始概率(1.375)*概率系数(0.8)=1.1,信号概率大于1,NFC读卡器判断S3为卡片发送的响应信号,由于对该S3解码失败,因此,NFC读卡器需要发送错误指示信号,以指示卡片重新发送响应信号,NFC读卡器发送错误指示信号后继续等待接收响应信号。Signal probability of S1 = initial probability of S1 (5/3) * probability coefficient (0.3) = 0.5, signal probability is less than 1, no error indication signal is sent, and signal is continuously received; signal probability of S2 = initial probability of S1 (1.2) *Probability coefficient (0.5)=0.6, signal probability less than 1, no error indication signal is sent, continue to receive signal; S3 signal probability = initial probability of S1 (1.375) * probability coefficient (0.8) = 1.1, signal probability is greater than 1, The NFC card reader determines that S3 is a response signal sent by the card. Since the decoding of the S3 fails, the NFC card reader needs to send an error indication signal to instruct the card to resend the response signal, and the NFC card reader sends the error indication signal to continue. Waiting to receive a response signal.
本实施例中,NFC读卡器虽然无法有效地确定干扰信号,但是通过设定响应信号的概率阈值、不同时间接收到的调制信号的概率系数,以及获取不同时间接收到的调制信号的初始概率,不会过早地将干扰信号误判为卡片发送的响应信号,从而没有影响NFC通信的整个流程。In this embodiment, although the NFC card reader cannot effectively determine the interference signal, the probability threshold of the response signal, the probability coefficient of the modulated signal received at different times, and the initial probability of acquiring the modulated signal received at different times are obtained. The interference signal is not prematurely judged as the response signal sent by the card, so that the entire flow of the NFC communication is not affected.
可选地,在本公开的实施例的再一种应用场景中,NFC读卡器确定预设条件的实现方式可以包括:NFC读卡器根据NFC中预先设定的信号类型,确定响应信号的预设特征信息。在该应用场景中,基于NFC通信协议,卡片发送的响应信号具有特定的特征信息,例如,NFC读卡器的应用类型不同,其对应的卡片发送的响应信号的码元组成也不同。Optionally, in another application scenario of the embodiment of the present disclosure, the implementation manner of determining the preset condition by the NFC card reader may include: determining, by the NFC card reader, the response signal according to a preset signal type in the NFC. Preset feature information. In this application scenario, based on the NFC communication protocol, the response signal sent by the card has specific feature information. For example, the application type of the NFC card reader is different, and the symbol composition of the response signal sent by the corresponding card is also different.
在该应用场景中,NFC读卡器将调制信号与预设条件进行匹配的实现方式可以包括:NFC读卡器将调制信号的特征信息与响应信号的预设特征信息进行匹配,其中,该调制信号的特征信息包括该调制信号的调制方式、幅度和数据长度中的至少一项。In this application scenario, the implementation manner that the NFC card reader matches the modulation signal with the preset condition may include: the NFC card reader matches the feature information of the modulation signal with the preset feature information of the response signal, where the modulation The characteristic information of the signal includes at least one of a modulation mode, an amplitude, and a data length of the modulated signal.
在该应用场景中,NFC读卡器选择是否发送错误指示信号的实现方式可以包括:当匹配结果为调制信号的特征信息与响应信号的预设 特征信息的匹配程度大于或等于特征阈值时,NFC读卡器发送错误指示信号;当匹配结果为调制信号的特征信息与响应信号的预设特征信息的匹配程度小于特征阈值时,NFC读卡器不发送错误指示信号。In the application scenario, the implementation manner of the NFC card reader selecting whether to send the error indication signal may include: when the matching result is that the matching degree of the feature information of the modulation signal and the preset feature information of the response signal is greater than or equal to the feature threshold, NFC The card reader sends an error indication signal; when the matching result is that the matching degree of the feature information of the modulation signal and the preset feature information of the response signal is less than the feature threshold, the NFC card reader does not send the error indication signal.
举例来说,图9为本公开的实施例提供的干扰处理方法的再一种应用场景示意图,图9所示的应用场景中,卡片发送的响应信号由码元1和码元2组成,即本实施例中的响应信号的预设特征信息为码元1和码元2的组合,请求信号发送后,NFC读卡器分别接收到超过干扰阈值的调制信号S1和S2,且对S1和S2均解码失败,NFC读卡器分别将S1和S2与码元1和码元2的组合进行对比,由于S1和S2与码元1和码元2的组合的差别较大,判断为干扰信号,不发送错误指示信号,继续接收信号。For example, FIG. 9 is a schematic diagram of still another application scenario of the interference processing method according to the embodiment of the present disclosure. In the application scenario shown in FIG. 9, the response signal sent by the card is composed of symbol 1 and symbol 2, that is, The preset feature information of the response signal in this embodiment is a combination of symbol 1 and symbol 2. After the request signal is sent, the NFC card reader respectively receives the modulated signals S1 and S2 exceeding the interference threshold, and pairs S1 and S2. If the decoding fails, the NFC card reader compares S1 and S2 with the combination of symbol 1 and symbol 2 respectively. Since the difference between S1 and S2 and the combination of symbol 1 and symbol 2 is large, it is judged as an interference signal. The error indication signal is not sent and the signal continues to be received.
需要说明的是,上述实施例和图6到图9所示的应用场景仅是本公开的实施例的几个示意性示例,并不限制本公开的实施例中NFC读卡器确定预设条件、匹配方式、以及根据匹配结果判断是否发送错误指示信号的方式。It should be noted that the foregoing embodiment and the application scenarios shown in FIG. 6 to FIG. 9 are only a few illustrative examples of the embodiments of the present disclosure, and do not limit the NFC card reader to determine the preset condition in the embodiment of the present disclosure. , the matching method, and the manner of judging whether to send an error indication signal according to the matching result.
本公开的实施例提供的干扰处理方法可以有效地区分干扰信号和卡片发送的响应信号,即可以避免因为判决门限设置过低带来的误检测问题。本公开的实施例还通过统计响应信号的特征信息,在信号检测和判断的过程中利用响应信号的统计特征,将不具备统计特征的信号判为干扰信号,一旦判为干扰信号,则直接丢弃,NFC读卡器则可以极大地减小判决门限,从而提高通信距离,能够在提高NFC读卡器可靠性的同时保证远距离区域通信的灵敏度。The interference processing method provided by the embodiment of the present disclosure can effectively distinguish the interference signal and the response signal sent by the card, thereby avoiding the problem of false detection caused by the decision threshold setting being too low. The embodiment of the present disclosure also uses the statistical information of the response signal to utilize the statistical characteristics of the response signal in the process of signal detection and judgment, and judges the signal that does not have the statistical feature as the interference signal, and once it is determined as the interference signal, directly discards The NFC card reader can greatly reduce the decision threshold, thereby increasing the communication distance, and can improve the sensitivity of the NFC card reader while ensuring the sensitivity of the communication in the long-distance region.
可选地,在上述实施例的基础上,本公开的实施例提供的干扰处理方法还可以包括:NFC读卡器在预设响应时间内未接收到响应信号时,重新发送请求信号。Optionally, on the basis of the foregoing embodiment, the interference processing method provided by the embodiment of the present disclosure may further include: when the NFC card reader does not receive the response signal within the preset response time, resending the request signal.
本实施例为NFC读卡器将响应信号误判为干扰信号后的恢复方式,图10示出了本公开的实施例提供的干扰处理方法的再一种应用场景示意图,NFC读卡器发送请求信号后,等待接收响应信号,收到两段调制信号S1(干扰信号)和S2(卡片发送的信号),对S1和S2均解码失败,但是S2也被NFC读卡器误判为干扰信号,因此,S2 后未发送错误指示信号。NFC读卡器直到响应超时都没有正确接收到响应信号,则重新发送请求信号。在本实施例中,虽然NFC读卡器将响应信号误判为干扰信号,但可以自动恢复到正常状态,不影响NFC通信的整个流程。This embodiment is a recovery mode after the NFC card reader misjudges the response signal as an interference signal. FIG. 10 is a schematic diagram of still another application scenario of the interference processing method provided by the embodiment of the present disclosure. The NFC card reader sends a request. After the signal, waiting for receiving the response signal, receiving two modulated signals S1 (interference signal) and S2 (signal sent by the card), decoding failed for both S1 and S2, but S2 is also misidentified as an interference signal by the NFC reader. Therefore, no error indication signal is sent after S2. The NFC card reader does not correctly receive the response signal until the response timeout, and then retransmits the request signal. In this embodiment, although the NFC card reader misjudges the response signal as an interference signal, it can automatically return to the normal state without affecting the entire flow of the NFC communication.
图11为本公开的实施例提供的一种干扰处理装置的结构示意图。本实施例提供的干扰处理装置适用于NFC通信中NFC读卡器检测信号并进行干扰判断的情况中,该干扰处理装置可以通过硬件和软件结合的方式来实现,该干扰处理装置可以集成在NFC读卡器的处理器中,供处理器调用使用。如图11所示,本实施例的干扰处理装置10可以包括发送模块11、接收模块12、解码模块13和匹配模块14,其中,发送模块11用于发送请求信号,接收模块12用于接收调制信号,解码模块13用于对接收模块12接收的调制信号进行解码,所解码的调制信号为强度大于或等于干扰阈值的信号,匹配模块14用于在解码模块13对调制信号解码失败时,将该调制信号与预设条件进行匹配,得到匹配结果。FIG. 11 is a schematic structural diagram of an interference processing apparatus according to an embodiment of the present disclosure. In the case where the interference processing device provided in this embodiment is applicable to the NFC card reader detection signal in NFC communication and performs interference determination, the interference processing device can be implemented by a combination of hardware and software, and the interference processing device can be integrated in the NFC. The processor of the card reader is used by the processor to call. As shown in FIG. 11, the interference processing apparatus 10 of this embodiment may include a transmitting module 11, a receiving module 12, a decoding module 13, and a matching module 14, wherein the transmitting module 11 is configured to transmit a request signal, and the receiving module 12 is configured to receive a modulation. The signal decoding module 13 is configured to decode the modulated signal received by the receiving module 12, and the decoded modulated signal is a signal whose strength is greater than or equal to the interference threshold. The matching module 14 is configured to: when the decoding module 13 fails to decode the modulated signal, The modulated signal is matched with a preset condition to obtain a matching result.
本公开的实施例提供的干扰处理装置用于在NFC通信中检测调制信号并进行干扰判断的处理。NFC通信流程包括初始化过程和信令传输过程,卡片靠近NFC读卡器触发通信,完成初始化过程后,信令传输过程如上述图1所示,本公开的实施例提供的干扰处理装置主要针对NFC通信中的信令传输过程,即已完成初始化而执行数据通信的流程。本公开的实施例中的发送模块11在发送请求信号后,NFC读卡器可以等待接收响应信号,并根据响应信号进行响应操作。The interference processing apparatus provided by the embodiment of the present disclosure is for processing for detecting a modulation signal and performing interference determination in NFC communication. The NFC communication process includes an initialization process and a signaling transmission process, and the card is close to the NFC card reader to trigger communication. After the initialization process is completed, the signaling transmission process is as shown in FIG. 1 above, and the interference processing device provided by the embodiment of the present disclosure is mainly directed to the NFC. The signaling transmission process in communication, that is, the process of performing data communication after initialization has been completed. After the transmitting module 11 in the embodiment of the present disclosure transmits the request signal, the NFC card reader can wait for receiving the response signal and perform a response operation according to the response signal.
本公开实施例中,发送模块11在发送请求信号后,且在NFC读卡器等待接响应信号的时间段内,接收模块12可能会接收到各种调制信号,其接收到的调制信号可能是卡片发送的响应信号,也可能是环境中的干扰信号。在接收模块12接收到调制信号后,首先判断该调制信号是否大于或等于干扰阈值(即NFC读卡器中预先设定的判决门限),当该调制信号大于或等于干扰阈值时,触发解码模块13对该调制信号进行解码,若解码失败,则说明该调制信号有可能是错误信号,然而,该调制信号也有可能是干扰信号。本公开实施例中,解 码模块13解码失败时,发送模块11先不发送错误指示信号,而是由匹配模块14将该调制信号与预设条件进行匹配,得到一匹配结果。In the embodiment of the present disclosure, after the sending module 11 sends the request signal, and during the period in which the NFC card reader waits for the response signal, the receiving module 12 may receive various modulated signals, and the received modulated signal may be The response signal sent by the card may also be an interference signal in the environment. After the receiving module 12 receives the modulated signal, it first determines whether the modulated signal is greater than or equal to an interference threshold (ie, a predetermined threshold in the NFC card reader), and when the modulated signal is greater than or equal to the interference threshold, triggers the decoding module. 13 The decoded signal is decoded. If the decoding fails, the modulated signal may be an error signal. However, the modulated signal may also be an interference signal. In the embodiment of the present disclosure, when the decoding module 13 fails to decode, the sending module 11 does not send the error indication signal first, but the matching module 14 matches the modulated signal with the preset condition to obtain a matching result.
在本公开的实施例中,发送模块11还用于根据匹配模块14得到的匹配结果选择是否发送错误指示信号。接收模块12在接收到大于或等于干扰阈值的调制信号,并且解码模块13对该调制信号解码失败时,匹配模块14将该调制信号与接收响应的预设条件进行匹配,并得到一匹配结果,该匹配结果可以在一定程度上反应出调制信号与错误信号相似还是与干扰信号更相似,此时,发送模块11可以根据匹配结果选择发送错误指示信号或者不发送错误指示信号。当NFC读卡器得到的匹配结果说明该调制信号是干扰信号时,若发送错误指示信号即是将干扰信号误判为错误信号,影响NFC通信的整个流程,本公开的实施例提供的干扰处理装置中的发送模块11通过根据匹配结果选择性地发送错误指示信号,可以有效地避免将干扰信号误判为错误信号的情况,同时,可以有效地保证NFC读卡器的灵敏度。In the embodiment of the present disclosure, the sending module 11 is further configured to select whether to send an error indication signal according to the matching result obtained by the matching module 14. When the receiving module 12 receives the modulation signal greater than or equal to the interference threshold, and the decoding module 13 fails to decode the modulated signal, the matching module 14 matches the modulated signal with the preset condition of the received response, and obtains a matching result. The matching result can reflect whether the modulated signal is similar to the error signal or the interference signal to a certain extent. At this time, the transmitting module 11 can select the transmission error indication signal or the error indication signal according to the matching result. When the matching result obtained by the NFC card reader indicates that the modulation signal is an interference signal, if the error indication signal is sent, that is, the interference signal is misinterpreted as an error signal, affecting the entire flow of the NFC communication, and the interference processing provided by the embodiment of the present disclosure The transmitting module 11 in the device can effectively avoid the situation in which the interference signal is mistakenly determined as an error signal by selectively transmitting the error indication signal according to the matching result, and at the same time, the sensitivity of the NFC card reader can be effectively ensured.
在实际应用中,预设条件可以是针对响应信号进行配置的,即与该预设条件匹配度较高的调制信号可以认为是卡片发送的错误信号,与该预设条件匹配度较低的调制信号可以认为是干扰信号,匹配的相似度可以由设计人员预先配置,例如,在调制信号完全符合预设条件时,认为匹配成功,调制信号为错误信号,再例如,在调制信号与预设条件的匹配度达到某一阈值时,认为匹配成功,调制信号为错误信号。In a practical application, the preset condition may be configured for the response signal, that is, the modulation signal with a higher degree of matching with the preset condition may be regarded as an error signal sent by the card, and the modulation with a lower matching degree with the preset condition. The signal can be considered as an interference signal, and the similarity of the matching can be pre-configured by the designer. For example, when the modulated signal completely meets the preset condition, the matching is considered to be successful, and the modulated signal is an error signal, for example, in the modulated signal and the preset condition. When the matching degree reaches a certain threshold, the matching is considered to be successful, and the modulated signal is an error signal.
本公开的实施例提供的干扰处理装置的构思基础在于,NFC技术中,如果NFC读卡器在检测到调制信号并解码失败时,立即给卡片发送错误指示信号,并且如果上述调制信号是由卡片自身或外部环境产生的干扰信号,卡片在接收到错误指示信号时正在进行响应数据的处理,此时,卡片会停止数据处理,并重新进行数据处理,在处理过程中卡片可能会产生更多的干扰信号,导致NFC读卡器再次检测到干扰信号并再次发送错误指示信号,这样,NFC读卡器和卡片会进入图3所示的死循环,降低了NFC读卡器的使用性能。也就是说,NFC技术中对NFC读卡器的判决门限的设置非常关键,若该判决门限设置的过 低,虽然可以保证较远距离的通信,但是,很容易出现上述将干扰信号误判为错误信号的现象,降低了NFC读卡器的可靠性,若该判决门限设置的过高,虽然可以保证近距离区域通信的可靠性,减少干扰误判的现象,但是,很难保证较远距离区域通信的灵敏度。The concept of the interference processing apparatus provided by the embodiments of the present disclosure is based on the fact that, in the NFC technology, if the NFC card reader detects a modulated signal and fails to decode, it immediately sends an error indication signal to the card, and if the above modulated signal is a card The interference signal generated by the self or the external environment, the card is processing the response data when receiving the error indication signal. At this time, the card stops the data processing and re-processes the data, and the card may generate more during the processing. The interference signal causes the NFC card reader to detect the interference signal again and send the error indication signal again, so that the NFC card reader and the card enter the infinite loop shown in FIG. 3, which reduces the performance of the NFC card reader. That is to say, the setting of the decision threshold of the NFC card reader in the NFC technology is very critical. If the decision threshold is set too low, although the communication over a long distance can be ensured, it is easy to misinterpret the interference signal as The phenomenon of the error signal reduces the reliability of the NFC card reader. If the decision threshold is set too high, although the reliability of the short-range area communication can be ensured and the phenomenon of interference misjudgment is reduced, it is difficult to ensure a long distance. Sensitivity of regional communication.
本公开的实施例提供的干扰处理装置中,NFC读卡器在检测到调制信号并解码失败时,不会立即向卡片发送错误指示信号,而是将解码失败的调制信号与接收响应信号的预设条件进行匹配,随后,根据匹配结果选择性地发送错误指示信号,通过上述匹配结果可以获得调制信号的相关信息,即上述匹配结果可以在一定程度上反应出调制信号与响应信号的相似程度。因此,可以在调制信号接近响应信号的情况下发送错误指示信号,在调制信号接近干扰信号的情况下不发送错误指示信号,这样,可以很大程度上过滤掉卡片自身和外部环境产生的干扰信号,提高NFC读卡器的可靠性,并且可以同时保证远距离区域通信的灵敏度。In the interference processing apparatus provided by the embodiment of the present disclosure, when the NFC card reader detects the modulation signal and fails to decode, the NFC card reader does not immediately send an error indication signal to the card, but preprocesses the decoding failure signal and the reception response signal. The condition is matched, and then the error indication signal is selectively transmitted according to the matching result, and the correlation information of the modulation signal can be obtained by the above matching result, that is, the matching result can reflect the degree of similarity between the modulation signal and the response signal to some extent. Therefore, the error indication signal can be sent when the modulation signal is close to the response signal, and the error indication signal is not sent when the modulation signal is close to the interference signal, so that the interference signal generated by the card itself and the external environment can be largely filtered out. Improve the reliability of the NFC reader and ensure the sensitivity of communication over long distances.
本公开的实施例提供的干扰处理装置用于执行本公开的如图4所示的实施例提供的干扰处理方法,具备相应的功能模块,其实现原理和技术效果类似,此处不再赘述。The interference processing device provided by the embodiment of the present disclosure is configured to perform the interference processing method provided by the embodiment shown in FIG. 4 of the present disclosure, and has a corresponding functional module, and the implementation principle and the technical effect are similar, and details are not described herein again.
在实际应用中,本公开的实施例中的发送模块11根据匹配结果选择是否发送错误指示信号的实现方式可以包括:当匹配结果为匹配成功时,发送模块11发送错误指示信号;当匹配结果为匹配失败时,发送模块11不发送错误指示信号。In an actual application, the implementation manner of the sending module 11 in the embodiment of the present disclosure for selecting whether to send an error indication signal according to the matching result may include: when the matching result is that the matching is successful, the sending module 11 sends an error indication signal; when the matching result is When the match fails, the transmitting module 11 does not send an error indication signal.
在本公开实施例中,匹配结果是否为匹配成功例如可以是调制信号完全符合预设条件,也可以是调制信号落于预设条件的范围内,还可以是调制信号与预设条件的匹配度达到某一阈值。In the embodiment of the present disclosure, whether the matching result is a matching success may be, for example, the modulation signal completely conforms to the preset condition, or the modulation signal falls within the range of the preset condition, or may be the matching degree between the modulation signal and the preset condition. A certain threshold is reached.
可选地,图12为本公开的实施例提供的另一种干扰处理装置的结构示意图。在图11所示装置的结构基础上,本公开的实施例提供的干扰处理装置10还可以包括确定模块15,用于在发送模块11发送请求信号后,确定接收的预设条件。Optionally, FIG. 12 is a schematic structural diagram of another interference processing apparatus according to an embodiment of the present disclosure. Based on the structure of the apparatus shown in FIG. 11, the interference processing apparatus 10 provided by the embodiment of the present disclosure may further include a determining module 15 for determining the received preset condition after the sending module 11 sends the request signal.
在本公开的实施例中,确定模块15确定预设条件的方式例如可以是根据发送的请求信号的类型、所请求的内容、在一段时间内接收 响应信号的统计结果、以及NFC标准协议对卡片发送响应信号的规范确定的,该预设条件可以在一定程度上反应出响应信号的特征。In an embodiment of the present disclosure, the determining module 15 determines the preset condition, for example, according to the type of the sent request signal, the requested content, the statistical result of receiving the response signal within a period of time, and the NFC standard protocol pair card. The specification of the response signal is determined, and the preset condition can reflect the characteristics of the response signal to some extent.
需要说明的是,本公开的实施例不限制预设条件的具体内容,只要是可以正确地反应响应信号特征的条件都可以作为该预设条件,另外,本公开的实施例同样不限制匹配成功的形式,可以是完全匹配,也可以是一定程度上的匹配,只要是可以反应出调制信号与响应信号具有较高的相似度,都可以认为是匹配成功,而且,本公开的实施例也不限定确定模块15仅根据上述因素确定预设条件,只要是可以反应响应信号的特征,都可以作为确定上述预设条件所依据的因素。It should be noted that the embodiment of the present disclosure does not limit the specific content of the preset condition, as long as the condition that can correctly reflect the response signal feature can be used as the preset condition. In addition, the embodiment of the present disclosure also does not limit the matching success. The form may be a perfect match or a certain degree of matching, as long as it can reflect that the modulated signal and the response signal have a high degree of similarity, it can be considered that the matching is successful, and the embodiments of the present disclosure are not The limit determination module 15 determines the preset condition only according to the above factors, and as long as it is a feature that can respond to the response signal, it can be used as a factor for determining the preset condition.
在本公开实施例中,确定模块15确定出的接收响应信号的预设条件的内容不同,匹配模块14匹配调制信号与预设条件的方式则不同,得到的匹配结果和发送模块11判断是否发送错误指示信号的原则也不同,以下通过几个实施例进行详细说明。In the embodiment of the present disclosure, the content of the preset condition of the received response signal determined by the determining module 15 is different, and the manner in which the matching module 14 matches the modulated signal and the preset condition is different, and the obtained matching result and the sending module 11 determine whether to send or not. The principle of the error indication signal is also different, and the following is explained in detail through several embodiments.
本公开实施例提供的干扰处理装置用于执行本公开的如图5所示的实施例提供的干扰处理方法,具备相应的功能模块,其实现原理和技术效果类似,此处不再赘述。The interference processing apparatus provided by the embodiment of the present disclosure is configured to perform the interference processing method provided by the embodiment shown in FIG. 5 of the present disclosure, and has a corresponding functional module, and the implementation principle and the technical effect are similar, and details are not described herein again.
可选地,在本公开的实施例的一种应用场景中,确定模块15确定预设条件的实现方式可以包括:根据请求信号的类型和NFC读卡器接收响应信号的时间范围统计值中的至少一项,确定接收响应信号的时间范围。确定模块15确定接收响应信号的时间范围的具体方式在上述实施例中已经详细说明,故在此不再赘述。Optionally, in an application scenario of the embodiment of the present disclosure, the determining, by the determining module 15, the implementation manner of the preset condition may include: according to a type of the request signal and a time range statistic value of the NFC card reader receiving the response signal. At least one item determines the time range in which the response signal is received. The specific manner in which the determining module 15 determines the time range in which the response signal is received has been described in detail in the above embodiments, and therefore will not be described herein.
在该应用场景中,发送模块11根据匹配结果选择是否发送错误指示信号的实现方式可以包括:当匹配结果为调制信号在所确定的时间范围内时,发送模块11发送错误指示信号;当匹配结果为调制信号在确定的时间范围外时,发送模块11不发送错误指示信号。In the application scenario, the implementation manner of the sending module 11 selecting whether to send the error indication signal according to the matching result may include: when the matching result is that the modulation signal is within the determined time range, the sending module 11 sends an error indication signal; When the modulated signal is outside the determined time range, the transmitting module 11 does not transmit an error indication signal.
可选地,在本公开的实施例的另一种应用场景中,确定模块15确定预设条件的实现方式可以包括:根据请求信号的类型、请求信号所请求的内容和接收模块12接收的响应信号的数据长度统计值中的至少一项,确定响应信号的数据长度。确定模块15确定接收的响应信号的数据长度的具体方式在上述实施例中已经详细说明,故在此不 再赘述。Optionally, in another application scenario of the embodiment of the present disclosure, the determining module 15 determines that the implementation manner of the preset condition may include: according to the type of the request signal, the content requested by the request signal, and the response received by the receiving module 12 At least one of the data length statistics of the signal determines the data length of the response signal. The specific manner in which the determining module 15 determines the data length of the received response signal has been described in detail in the above embodiments, and therefore will not be described herein.
在该应用场景的一种实现方式中,上述数据长度可以为数据长度范围,则发送模块11根据匹配结果选择是否发送错误指示信号的实现方式可以包括:当匹配结果为调制信号的数据长度在上述数据长度范围内时,发送模块11发送错误指示信号;当匹配结果为调制信号的数据长度在上述数据长度范围外时,发送模块11不发送错误指示信号。In an implementation manner of the application scenario, the data length may be a data length range, and the implementation manner of the sending module 11 selecting whether to send the error indication signal according to the matching result may include: when the matching result is the data length of the modulation signal, When the data length is within the range, the sending module 11 sends an error indication signal; when the matching result is that the data length of the modulated signal is outside the data length range, the transmitting module 11 does not send the error indication signal.
在该应用场景的另一种实现方式中,上述数据长度可以为数据长度集合,则发送模块11根据匹配结果选择是否发送错误指示信号的实现方式可以包括:当匹配结果为调制信号的数据长度与数据长度集合中的任意一个元素相等时,发送模块11发送错误指示信号;当匹配结果为调制信号的数据长度与数据长度集合中的每个元素都不相等时,发送模块11不发送错误指示信号。In another implementation manner of the application scenario, the data length may be a data length set, and the implementation manner of the sending module 11 selecting whether to send the error indication signal according to the matching result may include: when the matching result is the data length of the modulated signal When any one of the data length sets is equal, the sending module 11 sends an error indication signal; when the matching result is that the data length of the modulated signal is not equal to each element in the data length set, the sending module 11 does not send an error indication signal. .
可选地,在本公开的实施例的又一种应用场景中,确定模块15确定预设条件的实现方式可以包括:确定接收到响应信号的概率阈值,并根据发送模块11发送请求信号的时间,确定不同时间接收到的调制信号对应的概率系数。确定模块15确定接收到响应信号的概率阈值和不同时间接收到的调制信号对应的概率系数的具体方式在上述实施例中已经详细说明,故在此不再赘述。Optionally, in a further application scenario of the embodiment of the present disclosure, the determining, by the determining module 15, the implementation manner of the preset condition may include: determining a probability threshold of receiving the response signal, and according to the time when the sending module 11 sends the request signal And determining a probability coefficient corresponding to the modulated signal received at different times. The specific manner in which the determining module 15 determines the probability threshold of receiving the response signal and the probability coefficient corresponding to the modulated signal received at different times has been described in detail in the above embodiments, and therefore will not be described herein.
在该应用场景中,匹配模块14可以包括:获取单元,用于根据调制信号的特征、强度和数据长度中的至少一项,获取调制信号的初始概率;计算单元,用于计算获取单元获取的调制信号的初始概率和确定模块15确定的调制信号对应的概率系数的乘积,得到信号概率;匹配单元,用于将计算单元计算得到的信号概率与确定模块15确定的概率阈值进行对比。In the application scenario, the matching module 14 may include: an acquiring unit, configured to acquire an initial probability of the modulated signal according to at least one of a feature, an intensity, and a data length of the modulated signal; and a calculating unit configured to calculate the acquired by the acquiring unit The product of the initial probability of the modulated signal and the probability coefficient corresponding to the modulated signal determined by the determining module 15 is used to obtain a signal probability; the matching unit is configured to compare the signal probability calculated by the calculating unit with the probability threshold determined by the determining module 15.
在该应用场景中,发送模块11根据匹配结果选择是否发送错误指示信号的实现方式可以包括:当匹配结果为信号概率大于或等于概率阈值时,发送模块11发送错误指示信号;当匹配结果为信号概率小于概率阈值时,发送模块11不发送错误指示信号。In this application scenario, the implementation manner of the sending module 11 selecting whether to send the error indication signal according to the matching result may include: when the matching result is that the signal probability is greater than or equal to the probability threshold, the sending module 11 sends an error indication signal; when the matching result is a signal When the probability is less than the probability threshold, the transmitting module 11 does not transmit an error indication signal.
可选地,在本公开的实施例的再一种应用场景中,确定模块15 确定预设条件的实现方式可以包括:根据NFC中预先设定的信号类型,确定响应信号的预设特征信息。确定模块15确定接收的响应信号的预设特征信息的具体方式在上述实施例中已经详细说明,故在此不再赘述。Optionally, in a further application scenario of the embodiment of the present disclosure, the determining, by the determining module 15, the implementation manner of the preset condition may include: determining preset feature information of the response signal according to a preset signal type in the NFC. The specific manner in which the determining module 15 determines the preset feature information of the received response signal has been described in detail in the foregoing embodiment, and thus is not described herein again.
在该应用场景中,匹配模块14将调制信号与预设条件进行匹配的实现方式可以包括:将调制信号的特征信息与响应信号的预设特征信息进行匹配,其中,调制信号的特征信息包括调制信号的调制方式、幅度和数据长度中的至少一项。In this application scenario, the matching module 14 can match the modulation signal with the preset condition, and the method includes: matching the feature information of the modulated signal with the preset feature information of the response signal, where the feature information of the modulated signal includes modulation At least one of a modulation mode, an amplitude, and a data length of the signal.
在该应用场景中,发送模块11根据匹配结果选择是否发送错误指示信号的实现方式可以包括:当匹配结果为调制信号的特征信息与响应信号的预设特征信息的匹配程度大于或等于特征阈值时,发送模块11发送错误指示信号;当匹配结果为调制信号的特征信息与响应信号的预设特征信息的匹配程度小于特征阈值时,发送模块11不发送错误指示信号。In this application scenario, the implementation manner of the sending module 11 selecting whether to send the error indication signal according to the matching result may include: when the matching result is that the matching degree of the feature information of the modulated signal and the preset feature information of the response signal is greater than or equal to the feature threshold. The sending module 11 sends an error indication signal. When the matching result is that the matching degree of the feature information of the modulated signal and the preset feature information of the response signal is less than the feature threshold, the sending module 11 does not send the error indication signal.
可选地,在本公开的实施例中,发送模块11还用于在接收模块12在预设响应时间内未接收到响应信号时重新发送所述请求信号。Optionally, in the embodiment of the present disclosure, the sending module 11 is further configured to resend the request signal when the receiving module 12 does not receive the response signal within a preset response time.
在实际应用中,本公开的图11和图12所示的实施例中的发送模块11和接收模块12可以通过NFC读卡器的收发器来实现,确定模块15、解码模块13和匹配模块14可以通过网络节点的处理器来实现,该处理器例如可以是一个中央处理器(Central Processing Unit,简称为:CPU),或者是特定集成电路(Application Specific Integrated Circuit,简称为:ASIC),或者是实施本公开的实施例的一个或多个集成电路。In practical applications, the transmitting module 11 and the receiving module 12 in the embodiment shown in FIG. 11 and FIG. 12 of the present disclosure may be implemented by a transceiver of an NFC card reader, and the determining module 15, the decoding module 13, and the matching module 14 The processor may be implemented by a processor of a network node, such as a central processing unit (CPU), or an application specific integrated circuit (ASIC), or One or more integrated circuits implementing embodiments of the present disclosure.
图13为本的公开实施例提供的又一种干扰处理装置的结构示意图。本实施例提供的干扰处理装置20可以包括存储器21和处理器22,其中,存储器21用于保存可执行指令,处理器22用于执行存储器21保存的所述可执行指令,以进行如下操作步骤:S31,发送请求信号;S32,在接收到调制信号并对调制信号解码失败时,将该调制信号与预设条件进行匹配,得到匹配结果;S33,根据匹配结果选择是否发送错误指示信号。FIG. 13 is a schematic structural diagram of still another interference processing apparatus according to an embodiment of the present disclosure. The interference processing device 20 provided in this embodiment may include a memory 21 for holding executable instructions, and a processor 22 for executing the executable instructions saved by the memory 21 to perform the following operations. S31: transmitting a request signal; S32, when receiving the modulated signal and decoding the modulated signal fails, matching the modulated signal with a preset condition to obtain a matching result; and S33, selecting whether to send an error indication signal according to the matching result.
可选地,在本公开的实施例中,处理器22执行可执行指令时,操作步骤S33的实现方式可以包括:S331,当匹配结果为匹配成功时,发送错误指示信号;S332,当匹配结果为匹配失败时,不发送错误指示信号。Optionally, in the embodiment of the present disclosure, when the processor 22 executes the executable instruction, the implementation of the operation step S33 may include: S331, when the matching result is that the matching is successful, sending an error indication signal; S332, when the matching result is When the match fails, the error indication signal is not sent.
可选地,在本公开的实施例中,处理器22执行可执行指令时,在执行操作步骤S31之后,还进行如下操作:确定预设条件。Optionally, in the embodiment of the present disclosure, when the processor 22 executes the executable instruction, after performing the operation step S31, the following operation is further performed: determining the preset condition.
本公开的实施例中,确定预设条件的实现方式可以包括以下几种:第一种,根据请求信号的类型和NFC读卡器接收响应信号的时间范围统计值中的至少一项,确定接收响应信号的时间范围;第二种,根据请求信号的类型、请求信号所请求的内容和NFC读卡器接收的响应信号的数据长度统计值中的至少一项,确定响应信号的数据长度;第三种,确定接收到响应信号的概率阈值,并根据发送请求信号的时间,确定不同时间接收到的调制信号对应的概率系数;第四种,根据NFC中预先设定的信号类型,确定响应信号的预设特征信息。In an embodiment of the present disclosure, the implementation manner of determining the preset condition may include the following: First, determining, according to at least one of a type of the request signal and a time range statistic value of the NFC reader receiving the response signal. The time range of the response signal; secondly, determining the data length of the response signal according to at least one of the type of the request signal, the content requested by the request signal, and the data length statistical value of the response signal received by the NFC reader; Three, determining a probability threshold of receiving the response signal, and determining a probability coefficient corresponding to the modulated signal received at different times according to the time of transmitting the request signal; and fourth, determining a response signal according to a preset signal type in the NFC Preset feature information.
需要说明的是,在确定的预设条件为不同内容时,处理器22执行可执行指令时步骤S33的实现方式在上述实施例中已经详细说明,故在此不再赘述。It should be noted that, when the determined preset condition is different content, the implementation manner of step S33 when the processor 22 executes the executable instruction has been described in detail in the foregoing embodiment, and thus is not described herein again.
可选地,在本公开的实施例中,处理器22执行可执行指令时,还进行如下操作步骤:S34,在预设响应时间内未接收到响应信号时,重新发送请求信号。Optionally, in the embodiment of the present disclosure, when the processor 22 executes the executable instruction, the following steps are further performed: S34: when the response signal is not received within the preset response time, the request signal is retransmitted.
本公开的实施例还提供一种计算机可读存储介质,该计算机可读存储介质存储有计算机可执行指令,该处理器执行该计算机可执行指令时,进行如下操作:S41,发送请求信号;S42,在接收到调制信号并对调制信号解码失败时,将该调制信号与预设条件进行匹配,得到匹配结果;S43,根据匹配结果选择是否发送错误指示信号。An embodiment of the present disclosure further provides a computer readable storage medium storing computer executable instructions, when the processor executes the computer executable instructions, performing the following operations: S41, transmitting a request signal; S42 When receiving the modulated signal and decoding the modulated signal fails, the modulated signal is matched with a preset condition to obtain a matching result; and S43, according to the matching result, whether to send an error indication signal is selected.
可选地,在本公开的实施例中,该处理器执行该计算机可执行指令时,操作步骤S43的实现方式可以包括:S431,当匹配结果为匹配成功时,发送错误指示信号;S432,当匹配结果为匹配失败时,不发送错误指示信号。Optionally, in the embodiment of the present disclosure, when the processor executes the computer executable instruction, the implementation of operation step S43 may include: S431, when the matching result is that the matching is successful, sending an error indication signal; S432, when If the match result is that the match fails, the error indication signal is not sent.
可选地,在本公开的实施例中,该处理器执行该计算机可执行 指令时,在执行操作步骤S41之后,还进行如下操作:确定预设条件。Optionally, in the embodiment of the present disclosure, when the processor executes the computer executable instruction, after performing the operation step S41, the following operation is further performed: determining a preset condition.
本公开的实施例中,确定预设条件的实现方式可以包括以下几种:第一种,根据请求信号的类型和NFC读卡器接收响应信号的时间范围统计值中的至少一项,确定接收响应信号的时间范围;第二种,根据请求信号的类型、请求信号所请求的内容和NFC读卡器接收的响应信号的数据长度统计值中至少一项,确定响应信号的数据长度;第三种,确定接收到响应信号的概率阈值,并根据发送请求信号的时间,确定不同时间接收到的调制信号对应的概率系数;第四种,根据NFC中预先设定的信号类型,确定响应信号的预设特征信息。In an embodiment of the present disclosure, the implementation manner of determining the preset condition may include the following: First, determining, according to at least one of a type of the request signal and a time range statistic value of the NFC reader receiving the response signal. The time range of the response signal; secondly, determining the data length of the response signal according to at least one of the type of the request signal, the content requested by the request signal, and the data length statistical value of the response signal received by the NFC reader; Determining a probability threshold of receiving the response signal, and determining a probability coefficient corresponding to the modulated signal received at different times according to the time of transmitting the request signal; and fourth, determining the response signal according to a preset signal type in the NFC Preset feature information.
需要说明的是,在确定的预设条件为不同内容时,该处理器执行该计算机可执行指令时操作步骤S43的实现方式在上述实施例中已经详细说明,故在此不再赘述。It should be noted that, when the determined preset condition is different content, the implementation manner of the operation step S43 when the processor executes the computer executable instruction has been described in detail in the foregoing embodiment, and thus is not described herein again.
可选地,在本公开的实施例中,该处理器执行该计算机可执行指令时,还进行如下操作:S44,在预设响应时间内未接收到响应信号时,重新发送请求信号。Optionally, in the embodiment of the present disclosure, when the processor executes the computer executable instruction, the processor further performs the following operations: S44: when the response signal is not received within the preset response time, the request signal is retransmitted.
本领域普通技术人员可以理解上述干扰处理方法中的全部或部分步骤可以通过程序来指示相关硬件(例如处理器)完成,所述程序可以存储于计算机可读存储介质中,如只读存储器、磁盘或光盘等。可选地,上述实施例的全部或部分步骤也可以使用一个或多个集成电路来实现。相应地,上述实施例中的各模块/单元可以采用硬件的形式实现,例如通过集成电路来实现其相应功能,也可以采用软件功能模块的形式实现,例如通过处理器执行存储于存储器中的程序/指令来实现其相应功能。本公开的实施例不限制于任何特定形式的硬件和软件的结合。A person of ordinary skill in the art may understand that all or part of the above-mentioned interference processing methods may be completed by a program to indicate related hardware (for example, a processor), and the program may be stored in a computer readable storage medium such as a read only memory or a disk. Or a CD or the like. Alternatively, all or part of the steps of the above embodiments may also be implemented using one or more integrated circuits. Correspondingly, each module/unit in the above embodiment may be implemented in the form of hardware, for example, by implementing an integrated circuit to implement its corresponding function, or may be implemented in the form of a software function module, for example, executing a program stored in the memory by a processor. / instruction to achieve its corresponding function. Embodiments of the present disclosure are not limited to any particular form of combination of hardware and software.
虽然本公开所揭露的实施方式如上,但所述的内容仅为便于理解本公开而采用的示例,并非用以限定本公开。任何本公开所属领域内的技术人员在不脱离本公开所揭露的精神和范围的前提下,可以在实施的形式及细节上进行任何的修改与变化,本公开的专利保护范围以所附的权利要求书所界定的范围为准。The embodiments disclosed in the present disclosure are as described above, but are merely examples for facilitating the understanding of the present disclosure, and are not intended to limit the present disclosure. Any modification and variation in the form and details of the embodiments may be made by those skilled in the art without departing from the spirit and scope of the disclosure. The scope defined in the request shall prevail.

Claims (19)

  1. 一种干扰处理方法,包括步骤:An interference processing method includes the steps of:
    近距离无线通信(NFC)读卡器发送请求信号;a short-range wireless communication (NFC) card reader transmits a request signal;
    所述NFC读卡器在接收到调制信号并对所述调制信号解码失败时,将所述调制信号与预设条件进行匹配,得到匹配结果;The NFC card reader, when receiving the modulation signal and decoding the modulation signal, fails to match the modulation signal with a preset condition to obtain a matching result;
    所述NFC读卡器根据所述匹配结果选择是否发送错误指示信号。The NFC card reader selects whether to send an error indication signal according to the matching result.
  2. 根据权利要求1所述的干扰处理方法,其中,所述NFC读卡器根据所述匹配结果选择是否发送错误指示信号的步骤包括:The interference processing method according to claim 1, wherein the step of the NFC card reader selecting whether to send an error indication signal according to the matching result comprises:
    当所述匹配结果为匹配成功时,所述NFC读卡器发送所述错误指示信号;When the matching result is that the matching is successful, the NFC card reader sends the error indication signal;
    当所述匹配结果为匹配失败时,所述NFC读卡器不发送所述错误指示信号。When the matching result is a match failure, the NFC card reader does not transmit the error indication signal.
  3. 根据权利要求1所述的干扰处理方法,还包括步骤:The interference processing method according to claim 1, further comprising the steps of:
    在所述NFC读卡器发送请求信号之后,所述NFC读卡器确定所述预设条件,其中,所述NFC读卡器根据所述请求信号的类型和所述NFC读卡器接收的响应信号的时间范围统计值中的至少一项,确定接收所述响应信号的时间范围作为所述预设条件。After the NFC card reader sends a request signal, the NFC card reader determines the preset condition, wherein the NFC card reader receives a response according to a type of the request signal and the NFC card reader At least one of the time range statistics of the signal determines a time range in which the response signal is received as the preset condition.
  4. 根据权利要求1所述的干扰处理方法,还包括步骤:The interference processing method according to claim 1, further comprising the steps of:
    在所述NFC读卡器发送请求信号之后,所述NFC读卡器确定所述预设条件,其中,所述NFC读卡器根据所述请求信号的类型、所述请求信号所请求的内容和所述NFC读卡器接收的响应信号的数据长度统计值中的至少一项,确定所述响应信号的数据长度作为所述预设条件。After the NFC card reader sends a request signal, the NFC card reader determines the preset condition, wherein the NFC card reader according to the type of the request signal, the content requested by the request signal, and At least one of a data length statistical value of the response signal received by the NFC card reader determines a data length of the response signal as the preset condition.
  5. 根据权利要求3所述的干扰处理方法,其中,所述NFC读卡器根据所述匹配结果选择是否发送错误指示信号的步骤包括:The interference processing method according to claim 3, wherein the step of the NFC card reader selecting whether to transmit an error indication signal according to the matching result comprises:
    当所述匹配结果为所述调制信号在所确定的时间范围内时,所述NFC读卡器发送所述错误指示信号;When the matching result is that the modulation signal is within the determined time range, the NFC card reader sends the error indication signal;
    当所述匹配结果为所述调制信号在所述确定的时间范围外时,所述NFC读卡器不发送所述错误指示信号。The NFC card reader does not transmit the error indication signal when the matching result is that the modulation signal is outside the determined time range.
  6. 根据权利要求4所述的干扰处理方法,其中,所述数据长度为数据长度范围,所述NFC读卡器根据所述匹配结果选择是否发送错误指示信号的步骤包括:The interference processing method according to claim 4, wherein the data length is a data length range, and the step of the NFC card reader selecting whether to send an error indication signal according to the matching result comprises:
    当所述匹配结果为所述调制信号的数据长度在所述数据长度范围内时,所述NFC读卡器发送所述错误指示信号;When the matching result is that the data length of the modulation signal is within the data length range, the NFC card reader sends the error indication signal;
    当所述匹配结果为所述调制信号的数据长度在所述数据长度范围外时,所述NFC读卡器不发送所述错误指示信号。When the matching result is that the data length of the modulation signal is outside the data length range, the NFC card reader does not transmit the error indication signal.
  7. 根据权利要求4所述的干扰处理方法,其中,所述数据长度为数据长度集合,所述NFC读卡器根据所述匹配结果选择是否发送错误指示信号的步骤包括:The interference processing method according to claim 4, wherein the data length is a data length set, and the step of the NFC card reader selecting whether to send an error indication signal according to the matching result comprises:
    当所述匹配结果为所述调制信号的数据长度与所述数据长度集合中的任意一个元素相等时,所述NFC读卡器发送所述错误指示信号;And when the matching result is that the data length of the modulation signal is equal to any one of the data length sets, the NFC card reader sends the error indication signal;
    当所述匹配结果为所述调制信号的数据长度与所述数据长度集合中的每个元素都不相等时,所述NFC读卡器不发送所述错误指示信号。The NFC card reader does not transmit the error indication signal when the matching result is that the data length of the modulation signal is not equal to each element in the data length set.
  8. 根据权利要求1所述的干扰处理方法,还包括:The interference processing method according to claim 1, further comprising:
    在所述NFC读卡器发送请求信号之后,所述NFC读卡器确定接收到所述响应信号的概率阈值作为所述预设条件,并根据发送所述请求信号的时间,确定不同时间接收到的调制信号对应的概率系数。After the NFC card reader sends the request signal, the NFC card reader determines a probability threshold of receiving the response signal as the preset condition, and determines that the time is received according to the time when the request signal is sent. The probability coefficient corresponding to the modulated signal.
  9. 根据权利要求1所述的干扰处理方法,还包括:The interference processing method according to claim 1, further comprising:
    在所述NFC读卡器发送请求信号之后,所述NFC读卡器根据NFC中预先设定的信号类型,确定所述响应信号的预设特征信息作为所述 预设条件。After the NFC card reader sends the request signal, the NFC card reader determines the preset feature information of the response signal as the preset condition according to a signal type preset in the NFC.
  10. 根据权利要求8所述的干扰处理方法,其中,所述NFC读卡器将所述调制信号与所述预设条件进行匹配的步骤包括:The interference processing method according to claim 8, wherein the step of the NFC card reader matching the modulation signal with the preset condition comprises:
    所述NFC读卡器根据所述调制信号的特征、强度和数据长度中的至少一项,获取所述调制信号的初始概率;Obtaining, by the NFC card reader, an initial probability of the modulated signal according to at least one of a feature, an intensity, and a data length of the modulated signal;
    所述NFC读卡器计算所述调制信号的初始概率和所述调制信号对应的概率系数的乘积,得到信号概率,并将所述信号概率与所述概率阈值进行对比,The NFC card reader calculates a product of an initial probability of the modulated signal and a probability coefficient corresponding to the modulated signal to obtain a signal probability, and compares the signal probability with the probability threshold.
    所述NFC读卡器根据所述匹配结果选择是否发送错误指示信号的步骤包括:The step of the NFC card reader selecting whether to send an error indication signal according to the matching result includes:
    当所述匹配结果为所述信号概率大于或等于所述概率阈值时,所述NFC读卡器发送所述错误指示信号;And when the matching result is that the signal probability is greater than or equal to the probability threshold, the NFC card reader sends the error indication signal;
    当所述匹配结果为所述信号概率小于所述概率阈值时,所述NFC读卡器不发送所述错误指示信号。When the matching result is that the signal probability is less than the probability threshold, the NFC card reader does not send the error indication signal.
  11. 根据权利要求9所述的干扰处理方法,其中,所述NFC读卡器将所述调制信号与所述预设条件进行匹配的步骤包括:The interference processing method according to claim 9, wherein the step of the NFC card reader matching the modulation signal with the preset condition comprises:
    所述NFC读卡器将所述调制信号的特征信息与所述响应信号的预设特征信息进行匹配,其中,所述调制信号的特征信息包括所述调制信号的调制方式、幅度和数据长度中的至少一项,The NFC card reader matches the feature information of the modulated signal with the preset feature information of the response signal, wherein the feature information of the modulated signal includes a modulation mode, an amplitude, and a data length of the modulated signal. At least one of
    所述NFC读卡器根据所述匹配结果选择是否发送错误指示信号的步骤包括:The step of the NFC card reader selecting whether to send an error indication signal according to the matching result includes:
    当所述匹配结果为所述调制信号的特征信息与所述响应信号的预设特征信息的匹配程度大于或等于特征阈值时,所述NFC读卡器发送所述错误指示信号;When the matching result is that the matching degree of the feature information of the modulation signal and the preset feature information of the response signal is greater than or equal to the feature threshold, the NFC card reader sends the error indication signal;
    当所述匹配结果为所述调制信号的特征信息与所述响应信号的预设特征信息的匹配程度小于所述特征阈值时,所述NFC读卡器不发送所述错误指示信号。And when the matching result is that the matching degree of the feature information of the modulation signal and the preset feature information of the response signal is less than the feature threshold, the NFC card reader does not send the error indication signal.
  12. 一种干扰处理装置,设置于近距离无线通信NFC读卡器中,包括:An interference processing device is disposed in a short-range wireless communication NFC card reader, and includes:
    发送模块,用于发送请求信号;a sending module, configured to send a request signal;
    接收模块,用于接收调制信号;a receiving module, configured to receive a modulated signal;
    解码模块,用于对所述接收模块接收的调制信号进行解码;a decoding module, configured to decode a modulated signal received by the receiving module;
    匹配模块,用于在所述解码模块对所述调制信号解码失败时,将所述调制信号与预设条件进行匹配,得到匹配结果,a matching module, configured to: when the decoding module fails to decode the modulated signal, match the modulated signal with a preset condition to obtain a matching result, where
    所述发送模块还用于根据所述匹配模块得到的所述匹配结果选择是否发送错误指示信号。The sending module is further configured to select whether to send an error indication signal according to the matching result obtained by the matching module.
  13. 根据权利要求12所述的干扰处理装置,其中,所述发送模块根据所述匹配结果选择是否发送错误指示信号包括:The interference processing device according to claim 12, wherein the selecting, by the sending module, whether to send an error indication signal according to the matching result comprises:
    当所述匹配结果为匹配成功时,所述发送模块发送所述错误指示信号;When the matching result is that the matching is successful, the sending module sends the error indication signal;
    当所述匹配结果为匹配失败时,所述发送模块不发送所述错误指示信号。When the matching result is a match failure, the sending module does not send the error indication signal.
  14. 根据权利要求12所述的干扰处理装置,还包括:The interference processing device of claim 12, further comprising:
    确定模块,用于确定所述预设条件,其中,所述确定模块根据所述请求信号的类型和所述NFC读卡器接收响应信号的时间范围统计值中的至少一项,确定接收所述响应信号的时间范围作为所述预设条件。a determining module, configured to determine the preset condition, wherein the determining module determines to receive the according to at least one of a type of the request signal and a time range statistic value of the NFC card reader receiving a response signal The time range of the response signal is taken as the preset condition.
  15. 根据权利要求12所述的干扰处理装置,还包括:The interference processing device of claim 12, further comprising:
    确定模块,用于确定所述预设条件,其中,所述确定模块根据所述请求信号的类型、所述请求信号所请求的内容和所述NFC读卡器接收的响应信号的数据长度统计值中的至少一项,确定所述响应信号的数据长度作为所述预设条件。a determining module, configured to determine the preset condition, wherein the determining module is configured according to a type of the request signal, a content requested by the request signal, and a data length statistical value of a response signal received by the NFC card reader And at least one of determining a data length of the response signal as the preset condition.
  16. 根据权利要求12所述的干扰处理装置,还包括:The interference processing device of claim 12, further comprising:
    确定模块,用于确定所述预设条件,其中,所述确定模块确定接收到所述响应信号的概率阈值作为所述预设条件,并根据发送所述请求信号的时间,确定不同时间接收到的调制信号对应的概率系数。a determining module, configured to determine the preset condition, where the determining module determines a probability threshold of receiving the response signal as the preset condition, and determines that the time is received according to a time when the request signal is sent The probability coefficient corresponding to the modulated signal.
  17. 根据权利要求12所述的干扰处理装置,还包括:The interference processing device of claim 12, further comprising:
    确定模块,用于确定所述预设条件,其中,所述确定模块根据NFC中预先设定的信号类型,确定所述响应信号的预设特征信息作为所述预设条件。And a determining module, configured to determine the preset condition, wherein the determining module determines, according to a preset signal type in the NFC, preset feature information of the response signal as the preset condition.
  18. 一种干扰处理装置,包括存储器和处理器,所述存储器用于保存可执行指令,所述处理器用于执行所述存储器保存的所述可执行指令,以进行如下操作:An interference processing apparatus includes a memory for holding executable instructions, and a processor for executing the executable instructions saved by the memory to perform the following operations:
    发送请求信号;Sending a request signal;
    在接收到调制信号并对所述调制信号解码失败时,将所述调制信号与预设条件进行匹配,得到匹配结果;When receiving the modulated signal and decoding the modulated signal fails, matching the modulated signal with a preset condition to obtain a matching result;
    根据所述匹配结果选择是否发送错误指示信号。Whether to send an error indication signal is selected according to the matching result.
  19. 一种计算机可读存储介质,所述计算机可读存储介质存储有计算机可执行指令,所述处理器执行所述计算机可执行指令时,进行如下操作:A computer readable storage medium storing computer executable instructions, and when the processor executes the computer executable instructions, performing the following operations:
    发送请求信号;Sending a request signal;
    在接收到调制信号并对所述调制信号解码失败时,将所述调制信号与预设条件进行匹配,得到匹配结果;When receiving the modulated signal and decoding the modulated signal fails, matching the modulated signal with a preset condition to obtain a matching result;
    根据所述匹配结果选择是否发送错误指示信号。Whether to send an error indication signal is selected according to the matching result.
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