WO2021114700A1 - 一种安防方法、系统、电子设备、存储介质及智能控制器 - Google Patents
一种安防方法、系统、电子设备、存储介质及智能控制器 Download PDFInfo
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- WO2021114700A1 WO2021114700A1 PCT/CN2020/108537 CN2020108537W WO2021114700A1 WO 2021114700 A1 WO2021114700 A1 WO 2021114700A1 CN 2020108537 W CN2020108537 W CN 2020108537W WO 2021114700 A1 WO2021114700 A1 WO 2021114700A1
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- wireless communication
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- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING SYSTEMS, e.g. PERSONAL CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B13/00—Burglar, theft or intruder alarms
- G08B13/22—Electrical actuation
- G08B13/24—Electrical actuation by interference with electromagnetic field distribution
- G08B13/2491—Intrusion detection systems, i.e. where the body of an intruder causes the interference with the electromagnetic field
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L67/00—Network arrangements or protocols for supporting network services or applications
- H04L67/01—Protocols
- H04L67/02—Protocols based on web technology, e.g. hypertext transfer protocol [HTTP]
- H04L67/025—Protocols based on web technology, e.g. hypertext transfer protocol [HTTP] for remote control or remote monitoring of applications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/80—Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/005—Discovery of network devices, e.g. terminals
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/22—Processing or transfer of terminal data, e.g. status or physical capabilities
- H04W8/24—Transfer of terminal data
Definitions
- the present disclosure relates to the field of communications, and in particular to a security method, system, electronic equipment, storage medium and intelligent controller.
- the main purpose of the present disclosure is to propose a security method, system, electronic equipment, storage medium, and intelligent controller, which effectively avoids the problem of being unable to actively know whether someone is coming at home in the prior art.
- the present disclosure has monitoring means. Secret and not easy to be discovered by others.
- a security method includes: monitoring a signal access condition within a preset range, where the signal is a wireless communication signal; In time, according to the preset trusted device information list, it is determined whether the wireless communication device sending the signal is an untrusted device; when it is determined that the wireless communication device is the untrusted device, a preset alarm operation is performed.
- determining whether the wireless communication device sending out the signal is the untrusted device according to a preset trusted device information list includes: acquiring device information of the wireless communication device sending out the signal; determining Whether the preset trusted device information list includes the device information of the wireless communication device; if it is determined that the preset trusted device information list does not include the device information of the wireless communication device, determine the The wireless communication device is the untrusted device.
- the method further includes: counting the access duration of the signal; in a case where it is determined that the wireless communication device is the untrusted device, determining the value of the signal sent by the wireless communication device Whether the access duration exceeds a preset threshold; in the case where it is determined that the access duration exceeds the preset threshold, it is determined to perform a preset alarm operation.
- the method further includes: uploading the device information of the wireless communication device to a cloud server; instructing the cloud server to count the access time of the device information of the wireless communication device, and determining When the wireless communication device is the untrusted device, instruct the cloud server to determine whether the access duration of the signal sent by the wireless communication device exceeds a preset threshold; when it is determined that the access duration exceeds the preset threshold, When the threshold is set, the cloud server is instructed to determine to perform a preset alarm operation.
- the method before monitoring the signal access condition within the preset range, the method further includes: acquiring a monitoring start triggering instruction sent by the control terminal, where the monitoring start triggering instruction is Send by the control terminal periodically and at a preset time period, or send by the control terminal periodically, or send by the control terminal at a preset time period; according to the start monitoring trigger instruction , Determining to monitor the signal access condition within the preset range.
- the method before monitoring the signal access condition within the preset range, further includes: obtaining a high-risk time period according to historical use time data of the associated smart device, and It is determined to monitor the signal access condition within the preset range during the high-risk time period.
- the method before monitoring the signal access condition within the preset range, the method further includes: confirming the start time of the automatic detection function according to the historical record of the start instruction of triggering the monitoring function ; Determine whether the current time is the start time; if the current time is the start time, determine to monitor the signal access condition within the preset range at the current time; if the current time is not If it is the start time, it is determined to monitor the signal access condition within the preset range at the start time.
- performing a preset alarm operation includes: obtaining a detection result uploaded by an associated smart device, where the detection result is characterized as the danger level of the wireless communication device; according to a preset danger level table, Perform a preset warning operation corresponding to the detection result, wherein the preset danger level table includes: at least one danger level, and a preset warning operation corresponding to each danger level in the at least one danger level.
- the device information includes: a Bluetooth MAC address.
- a security system configured to monitor signal access conditions within a preset range, and the signal is a wireless communication signal; The module is set to determine whether the wireless communication device sending the signal is an untrusted device based on the preset trusted device information list when the signal access is monitored; the security module is set to determine whether the wireless communication device is In the case of an untrusted device, perform a preset alarm operation.
- an electronic device including a processor and a memory; the memory is configured to store computer instructions, and the processor is configured to run the computer instructions stored in the memory to implement One of the above-mentioned security methods.
- a computer-readable storage medium stores one or more programs, and the one or more programs can be processed by one or more The device executes to realize the above-mentioned security method.
- an intelligent controller including: an intelligent security device configured to execute the above-mentioned security method; or, the above-mentioned security system.
- At least some of the embodiments of the present disclosure have the following beneficial effects: when a wireless communication device appears near a product at home, the device information of the wireless communication device can be directly obtained to determine whether the wireless communication device is safe. If it is not safe, the user can Knowing the situation at the first time and taking countermeasures can greatly improve the safety factor of the family, thus realizing the hidden and credible active monitoring of the home.
- Fig. 1 is a flowchart of a security method according to one of the embodiments of the present disclosure.
- Fig. 2 is a schematic diagram of an implementation process of a security method according to one of the embodiments of the present disclosure.
- Fig. 3 is a flowchart of a security method according to an optional embodiment of the present disclosure.
- Fig. 4 is a structural block diagram of a security system according to one of the embodiments of the present disclosure.
- module means, “part” or “unit” used to indicate elements is only for facilitating the description of the present disclosure, and has no specific meaning in itself. Therefore, “module”, “part” or “unit” can be used in a mixed manner.
- a security method includes: monitoring a signal access condition within a preset range, where the signal is a wireless communication signal; When entering, determine whether the wireless communication device sending the signal is an untrusted device according to the preset trusted device information list; in the case of determining that the wireless communication device is the untrusted device, perform a preset alarm operation.
- the device information of the wireless communication device can be directly obtained to determine whether the wireless communication device is safe. If it is not safe, the user can know the situation at the first time and respond to it. Measures, which can greatly improve the safety factor of the family, so as to realize the concealed and credible active monitoring of the home.
- Fig. 1 is a flowchart of a security method according to one of the embodiments of the present disclosure. As shown in Fig. 1, the security method is applied to smart products, including but not limited to: Rubik’s cube controller, air conditioner, smart door lock, smart refrigerator And smart camera. Specifically, the method includes:
- the signal is a wireless communication signal.
- the user needs to power on the smart product and open the matching product APP on the preset user terminal. Then, the smart product can monitor all wireless communication signals within the preset range. For example, the smart product monitors the wireless communication signal appearing near it, so as to detect the wireless communication device that sends the signal.
- the preset range is not limited, and it can be automatically set by the system or by the user.
- the preset range is a range with the smart product as the center and a diameter of 20m.
- the specific methods for monitoring wireless communication signals involved in this article are not limited, which include, but are not limited to: BLE Bluetooth scanning technology and WiFi scanning technology.
- step S1 One way to implement this step S1 is: the smart product periodically scans the Bluetooth signals sent by all surrounding wireless communication devices with Bluetooth and turned on Bluetooth, and communicates with the wireless communication devices that send these Bluetooth signals through Bluetooth. .
- the execution timing of S1 is not limited, and the execution timing includes but is not limited to one or more of the following items: (1) Obtain the start monitoring trigger instruction sent by the control terminal, The start monitoring trigger instruction is sent by the control terminal periodically and in a preset time period, or sent by the control terminal periodically, or sent by the control terminal in a preset time period; The start monitoring trigger instruction determines to monitor the signal access condition within the preset range.
- control terminal includes but is not limited to one or more of the following: PC, notebook PC, tablet PC, smart phone, wearable wireless communication device, embedded wireless communication device, smart home appliance or any combination thereof.
- start monitoring trigger command sent by the smart phone every morning at 8 o'clock in the morning For example, get the start monitoring trigger command sent by the smart phone every 12 hours.
- the high-risk time period refers to the time period when there is no one at home or there are only children at home.
- the associated smart device is not limited, and it may be a TV or an air conditioner.
- the high-risk time period in the home is inferred based on the analysis of the use frequency of the TV. During this time period, it is necessary to start monitoring the wireless communication signal within the preset range.
- the monitoring mode will be automatically turned on at 8 o'clock.
- step S2 When the signal access is monitored, determine whether the wireless communication device sending the signal is an untrusted device according to the preset trusted device information list; if so, perform the following step S4, otherwise, perform the following step S3;
- the device information of the wireless communication device that sent the signal can be obtained, and then according to the preset trusted device information list, it is determined whether the connected wireless communication device is an untrusted device.
- the alarm terminal (such as user terminal), automatically notify the property to alarm, activate the door lock to lock the door, or call the home camera for video recording.
- the preset user terminal includes, but is not limited to: a mobile phone.
- the smart product when it is determined that the wireless communication device is an untrusted device, the smart product performs a preset alarm operation.
- the number of smart products is not limited, for example, at least one same or similar smart product is performing the above operations.
- the device information of the wireless communication device can be directly obtained to determine whether the wireless communication device is safe. If it is not safe, the user can know the situation at the first time and respond to it. Measures, which can greatly improve the safety factor of the family, so as to realize the concealed and credible active monitoring of the home.
- an implementation manner of the foregoing step S2 includes:
- the method of acquiring the device information is not limited, as long as it meets the requirements of this embodiment.
- the signal includes the device information of the wireless communication device that sends the signal. After analysis, the device information of the wireless communication device that sends out these connected signals can be obtained from it. Among them, the device information includes but is not limited to: Bluetooth MAC address.
- step S22 Determine whether the device information of the wireless communication device is included in the preset trusted device information list; if so, perform the following step S4, otherwise, perform the above step S23;
- the device information of the trusted device is pre-stored in the preset trusted device information list, that is, the smart product needs to pre-store the device information of the trusted wireless communication device, such as the Bluetooth MAC address of the trusted wireless communication device. If the device information of the connected wireless communication device is included in the preset trusted device information list, the wireless communication device is determined to be a trusted wireless communication device; otherwise, the wireless communication device is determined to be an untrusted device.
- the Bluetooth MAC address of the trusted device is pre-stored in the preset trusted device information list; in this case, if the access is not stored in the preset trusted device information list
- the Bluetooth MAC address of the wireless communication device can determine that the connected wireless communication device is an untrusted device; of course, if the Bluetooth MAC address of the connected wireless communication device is stored in the preset trusted device information list, you can Determine that the connected wireless communication device is a trusted device,
- the method further includes:
- the timing of actual recording is not limited in this embodiment, as long as it meets the requirements of this embodiment, for example, when it is determined that a signal is connected, the recording starts, or it can be based on a predetermined time. It is assumed that the recording is started when the trusted device information list determines that the wireless communication device is a trusted device, and the recording may also be started when the wireless communication device is determined to be an untrusted device according to the preset trusted device information list.
- Step S232 In the case of determining that the wireless communication device is an untrusted device, determine whether the access duration of the signal sent by the wireless communication device exceeds a preset threshold; if so, perform the following step S3, otherwise, perform the above Step S4;
- the smart product will also identify the type of the wireless communication device. Of course, it will also count the access time of the device information of the wireless communication device, that is, the connection time between the wireless communication device and the smart product, so as to count
- the access duration of the signal sent by the wireless communication device within the preset range can be determined based on the access duration to determine whether the connection duration of the wireless communication device to which the device information belongs is too long within the preset range.
- the connection time of the wireless communication device is too long, on the basis that the wireless communication device is an untrusted device, it can be determined to execute the above step S3 to perform the preset alarm operation. If the connection duration of the wireless communication device is within the preset time range, it will be determined that the wireless communication device is only temporarily connected, so that the above step S4 can be performed to avoid false alarms.
- the method further includes:
- step S2312 Instruct the cloud server to count the access time length of the device information of the wireless communication device, and in the case of determining that the wireless communication device is an untrusted device, instruct the cloud server to determine that the wireless communication device sends Whether the signal access time exceeds the preset threshold; if yes, execute the following step S2313, otherwise, execute the above step S4.
- the actual recording start time is not limited, as long as it meets the requirements of this embodiment, such as: start recording when it is determined that a signal is connected, or it can be based on
- the preset trusted device information list determines that the wireless communication device is a trusted device to start recording, or the preset trusted device information list determines that the wireless communication device is an untrusted device.
- the smart product will also upload the device information of the wireless communication device to the cloud server, and the cloud server will match and identify the type of the wireless communication device through the Internet. Of course, it will also count the wireless communication device's information.
- the access time of the device information that is, the connection time between the wireless communication device and the smart product is counted, so as to count the access time of the signal sent by the wireless communication device within the preset range, and the access time can be judged according to the access time. Whether the connection duration of the wireless communication device to which the device information belongs is too long.
- connection time of the wireless communication device is too long, based on determining that the wireless communication device is an untrusted device, it can be determined to execute the above step S3 to perform a preset alarm operation. If the connection duration of the wireless communication device is within the preset time range, it will be determined that the wireless communication device is only temporarily connected, so that the above step S4 can be performed to avoid false alarms.
- step S231, step 2312, step 2313, and step S4 can be replaced by step S231, step 232, step S3, and step S4, and vice versa.
- performing the preset alarm operation includes:
- the detection result is characterized as the danger level of the wireless communication device.
- S32 Perform a preset alarm operation corresponding to the detection result according to a preset danger level table, where the preset danger level table includes: at least one danger level, each of the at least one danger level corresponds to The preset alarm operation.
- the associated smart device is associated with the smart product involved in executing steps S1 to S4, step S21 to step S23, step S231 to step S232, and step S2311 to step S2313.
- the associated smart devices include other smart security products in the house.
- the smart product will obtain the detection result of the associated smart device detecting the danger level of the wireless communication device, and then the smart product will execute the preset corresponding to the detection result according to the preset danger level table
- the alarm operation wherein the preset danger level table includes: at least one danger level, and the preset alarm operation corresponding to each danger level in the at least one danger level, so as to realize the linkage with other intelligent security products in the house. Further verify the abnormal situation.
- the associated smart device is any type of machine that executes processing procedures and/or computing operations, including but not limited to one or more of the following: PC, notebook PC, tablet PC, smart phone, wearable wireless communication device , Embedded wireless communication equipment, smart home appliances or any combination thereof.
- the smart product can also report the device information of the wireless communication device determined as an untrusted device to the user terminal.
- the smart product will report the device information cloud server of the wireless communication device that is determined to be an untrusted device, and forward the device information to the preset user terminal through the cloud server.
- the smart product or the cloud server also obtains the detection result of the wireless communication device by the smart device associated therewith.
- the detection result is characterized as the danger level of the wireless communication device; then, according to the preset danger level table, Perform a preset alarm operation corresponding to the detection result.
- the communication methods involved in this article are not limited, which include but are not limited to: WiFi communication, wired Ethernet communication, BLE Bluetooth communication, Bluetooth Mesh communication, ZigBee communication, LoRa communication, and 2G/3G /4G/5G communication.
- FIG. 2 is a schematic diagram of the implementation process of a security method according to one of the embodiments of the present disclosure
- Figure 3 is a flowchart of a security method according to one of the optional embodiments of the present disclosure, as shown in Figures 2 and 3
- the security method requires the smart product to meet the following three conditions.
- the smart product integrates BLE Bluetooth function, which can be turned on or off by the smart product
- the smart product needs to have networking functions, such as the smart product It integrates WiFi communication function or can use BLE Bluetooth communication technology to transfer data through the gateway; thirdly, it needs a back-end server and corresponding smart product APP to support the entire smart home security system.
- the specific project design framework is shown in Figure 2 above. Here are the detailed steps:
- the user needs to power on the smart product and open the matching smart product APP operation, then add the Bluetooth MAC address of the trusted wireless communication device on the smart product APP interface, and then click to turn on the arming function on the APP.
- the smart product will periodically scan all surrounding Bluetooth wireless communication devices with Bluetooth enabled, so that the MAC addresses of surrounding Bluetooth wireless communication devices can be obtained. Then by judging whether the acquired MAC address of the Bluetooth wireless communication device is the Bluetooth MAC address of the trusted wireless communication device, if the Bluetooth MAC address of the trusted wireless communication device is trusted, the smart product restarts the regular scan; otherwise, it uploads the Bluetooth wireless communication device.
- the MAC address of the communication device is sent to the cloud server, and the cloud server uses the Internet to match and identify the wireless communication device that the MAC address belongs to, and starts timing the access time of the MAC address, and then judges whether the access time of the MAC address is too long long? If it is not, the smart product restarts regular scanning; if it is, the server will report the relevant unfamiliar Bluetooth device information to the user's mobile phone, and link with other smart security smart products in the house to further verify the abnormal situation.
- the WiFi communication in the figure can be other communication technologies, such as wired Ethernet communication, BLE Bluetooth communication, Bluetooth Mesh communication, ZigBee communication, LoRa communication, 2G/3G/4G/5G communication, and so on.
- the determining module 120 includes: an acquiring unit configured to acquire device information of the wireless communication device that sends out the signal; and a list determining unit configured to determine whether the preset trusted device information list includes The device information of the wireless communication device; a determining unit configured to determine that the wireless communication device is an untrusted device in the case where it is determined that the device information of the wireless communication device is not included in the preset trusted device information list , And when it is determined that the preset trusted device information list includes the device information of the wireless communication device, determining that the wireless communication device is a trusted device.
- the apparatus further includes: a first statistics module configured to count the access duration of the signal; a first judgment module configured to determine that the wireless communication device is an untrusted device Next, determine whether the access duration of the signal sent by the wireless communication device exceeds a preset threshold; in the case where it is determined that the access duration exceeds the preset threshold, determine to perform a preset alarm operation.
- the apparatus further includes: an upload module configured to upload device information of the wireless communication device to a cloud server; and a second judgment module configured to instruct the cloud server to count the wireless communication The access duration of the device information of the device, and in the case of determining that the wireless communication device is an untrusted device, instruct the cloud server to determine whether the access duration of the signal sent by the wireless communication device exceeds a preset threshold; If it is determined that the access duration exceeds a preset threshold, instruct the cloud server to determine to perform a preset alarm operation.
- the system further includes: a first start-up monitoring module configured to obtain a start-up monitoring trigger instruction sent by the control terminal, and the start-up monitoring trigger instruction is periodically and preset by the control terminal. It is sent within a time period, or is sent periodically by the control terminal, or is sent by the control terminal in a preset time period; according to the start monitoring trigger instruction, it is determined to access the signal within the preset range The situation is monitored.
- a first start-up monitoring module configured to obtain a start-up monitoring trigger instruction sent by the control terminal, and the start-up monitoring trigger instruction is periodically and preset by the control terminal. It is sent within a time period, or is sent periodically by the control terminal, or is sent by the control terminal in a preset time period; according to the start monitoring trigger instruction, it is determined to access the signal within the preset range The situation is monitored.
- the system further includes: a second startup monitoring module, configured to obtain a high-risk time period according to the historical use time data of the associated smart device, and determine that the high-risk time period is The signal access situation inside is monitored.
- a second startup monitoring module configured to obtain a high-risk time period according to the historical use time data of the associated smart device, and determine that the high-risk time period is The signal access situation inside is monitored.
- the obtaining module is configured to obtain the detection result uploaded by the associated smart device, wherein the detection result is characterized by the danger level of the wireless communication device; and the execution of the test results is performed according to a preset danger level table.
- the preset warning operation corresponding to the detection result wherein the preset danger level table includes: at least one danger level, and a preset warning operation corresponding to each danger level in the at least one danger level.
- the device information includes: a Bluetooth MAC address.
- an intelligent controller including: an intelligent security device configured to execute the above-mentioned security method; or, the above-mentioned security system.
- the smart controller includes but is not limited to one or more of the following: smart controller, remote control, and smart cube.
- an electronic device including a processor and a memory; the memory is configured to store computer instructions, and the processor is configured to run the computer instructions stored in the memory to implement One of the above-mentioned security methods.
- a computer-readable storage medium stores one or more modules, and the one or more modules can be processed by one or more The device executes to realize the above-mentioned security method.
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Abstract
一种安防方法、系统、电子设备、存储介质及智能控制器,其中,方法包括:对预设范围内的信号接入情况进行监测(S1),信号为无线通讯信号;在监测到信号接入时,根据预设可信设备信息列表,确定发出信号的无线通讯设备是否为不可信设备(S2);在确定无线通讯设备为不可信设备的情况下,进行预设告警操作(S3)。就此,当家中产品附近出现无线通讯设备时,就可以直接通过获取到无线通讯设备的设备信息以确定无线通讯设备是否安全,若不安全,用户可以在第一时间知道情况并作出应对措施,由此可以大大提升家庭的安全系数,从而实现了对家里的隐蔽而可信的主动监控。
Description
交叉援引
本公开基于申请号为201911255210.4、申请日为2019-12-09的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本公开作为参考。
本公开涉及通讯领域,尤其涉及一种安防方法、系统、电子设备、存储介质及智能控制器。
在日常生活中,安全总是人们最关心的一个需求点,用户总会担心自己如果出门在外办事,以致于家中无人看守,使家里的一些贵重物品被盗窃或其他损害用户利益的事情发生。随着科技的迅速发展,偷盗手段也是层出不穷,急需一些可靠实用的方法来提升家里的安全系数。
发明内容
本公开的主要目的在于提出一种安防方法、系统、电子设备、存储介质及智能控制器,有效避免了现有技术中无法对家中是否来人的情况进行主动获知的问题,本公开具有监测手段隐秘且不易被人发现的效果。
在本公开的其中一实施例中,提供了一种安防方法,所述方法包括:对预设范围内的信号接入情况进行监测,所述信号为无线通讯信号;在监测到所述信号接入时,根据预设可信设备信息列表,确定发出所述信号的无线通讯设备是 否为不可信设备;在确定所述无线通讯设备为所述不可信设备的情况下,进行预设告警操作。
在一些可选实施例中,根据预设可信设备信息列表,确定发出所述信号的无线通讯设备是否为所述不可信设备,包括:获取发出所述信号的无线通讯设备的设备信息;确定所述预设可信设备信息列表中是否包括所述无线通讯设备的设备信息;在确定所述预设可信设备信息列表中不包括所述无线通讯设备的设备信息的情况下,确定所述无线通讯设备为所述不可信设备。
在一些可选实施例中,所述方法还包括:统计所述信号的接入时长;在确定所述无线通讯设备为所述不可信设备的情况下,判断所述无线通讯设备发出的信号的接入时长是否超过预设阈值;在确定所述接入时长超过所述预设阈值的情况下,确定进行预设告警操作。
在一些可选实施例中,所述方法还包括:将所述无线通讯设备的设备信息上传至云服务器;指示所述云服务器统计所述无线通讯设备的设备信息的接入时长,并在确定所述无线通讯设备为所述不可信设备的情况下,指示所述云服务器判断所述无线通讯设备发出的信号的接入时长是否超过预设阈值;在确定所述接入时长超过所述预设阈值的情况下,指示所述云服务器确定进行预设告警操作。
在一些可选实施例中,在对所述预设范围内的所述信号接入情况进行监测之前,所述方法还包括:获取控制终端发送的启动监测触发指令,所述启动监测触发指令是由所述控制终端周期性和在预设时间段进行发送,或者,由所述控制终端周期性进行发送,或者,由所述控制终端在预设时间段进行发送;根据所述启动监测触发指令,确定对所述预设范围内的所述信号接入情况进行监测。
在一些可选实施例中,在对所述预设范围内的所述信号接入情况进行监测之前,所述方法还包括:根据关联的智能设备的历史使用时间数据,得到高危时间段,并确定在所述高危时间段对所述预设范围内的所述信号接入情况进行监测。
在一些可选实施例中,在对所述预设范围内的所述信号接入情况进行监测之前,所述方法还包括:根据触发监测功能启动指令的历史记录,确认自动检测功能的启动时刻;判断当前时刻是否为所述启动时刻;如果所述当前时刻为所述启动时刻,则确定在当前时刻对所述预设范围内的所述信号接入情况进行监测;如果所述当前时刻并非为所述启动时刻,则确定在所述启动时刻对所述预设范围内的所述信号接入情况进行监测。
在一些可选实施例中,进行预设告警操作,包括:获取关联的智能设备上传的检测结果,其中,所述检测结果表征为所述无线通讯设备的危险等级;根据预设危险等级表,执行与所述检测结果对应的预设告警操作,其中,所述预设危险等级表包括:至少一个危险等级,所述至少一个危险等级中每个危险等级对应的预设告警操作。
在一些可选实施例中,所述设备信息包括:蓝牙MAC地址。
在本公开的其中一实施例中,还提供了一种安防系统,所述系统包括:监测模块,设置为对预设范围内的信号接入情况进行监测,所述信号为无线通讯信号;确定模块,设置为在监测到所述信号接入时,根据预设可信设备信息列表,确定发出信号的无线通讯设备是否为不可信设备;安防模块,设置为在确定所述无线通讯设备为所述不可信设备的情况下,进行预设告警操作。
在本公开的其中一实施例中,还提供了一种电子设备,包括处理器和存储器;所述存储器设置为存储计算机指令,所述处理器设置为运行所述存储器存 储的计算机指令,以实现上述的一种安防方法。
在本公开的其中一实施例中,还提供了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一个或者多个程序,所述一个或者多个程序可被一个或者多个处理器执行,以实现上述的一种安防方法。
在本公开的其中一实施例中,还提供了一种智能控制器,包括:智能安防装置,设置为执行上述的一种安防方法;或,上述的一种安防系统。
本公开至少部分实施例具有如下有益效果:当家中产品附近出现无线通讯设备时,就可以直接通过获取到该无线通讯设备的设备信息以确定该无线通讯设备是否安全,若不安全,用户可以在第一时间知道该情况并作出应对措施,由此可以大大提升家庭的安全系数,从而实现了对家里的隐蔽而可信的主动监控。
图1是根据本公开其中一实施例的一种安防方法的流程图。
图2是根据本公开其中一实施例的一种安防方法的实现过程示意图。
图3是根据本公开其中一可选实施例的一种安防方法的流程图。
图4是根据本公开其中一实施例的一种安防系统的结构框图。
应当理解,此处所描述的具体实施例仅仅用以解释本公开,并不用于限定本公开。
在后续的描述中,使用用于表示元件的诸如“模块”、“部件”或“单元”的后缀仅为了有利于本公开的说明,其本身没有特定的意义。因此,“模块”、 “部件”或“单元”可以混合地使用。
为了便于理解本公开实施例,下面通过几个具体实施例对本公开的实施过程进行详细的阐述。
在本公开的其中一实施例中,提供了一种安防方法,所述方法包括:对预设范围内的信号接入情况进行监测,所述信号为无线通讯信号;在监测到所述信号接入时,根据预设可信设备信息列表,确定发出所述信号的无线通讯设备是否为不可信设备;在确定所述无线通讯设备为所述不可信设备的情况下,进行预设告警操作。
因此,当家中产品附近出现无线通讯设备时,就可以直接通过获取到该无线通讯设备的设备信息以确定该无线通讯设备是否安全,若不安全,用户可以在第一时间知道该情况并作出应对措施,由此可以大大提升家庭的安全系数,从而实现了对家里的隐蔽而可信的主动监控。
图1是根据本公开其中一实施例的一种安防方法的流程图,如图1所示,该安防方法应用于智能产品,包括但不限于:魔方控制器、空调、智能门锁、智能冰箱和智能摄像头。具体的,该方法包括:
S1:对预设范围内的信号接入情况进行监测;
在另一实施例中,该信号为无线通讯信号。
首先,用户需要给该智能产品上电,并且打开预设用户终端上配套的产品APP。然后,使得该智能产品可以对预设范围内的所有无线通讯信号进行监测。如:该智能产品监测其附近出现的无线通讯信号,从而监测到发出该信号的的无线通讯设备。
当然,在本实施例中,并不对该预设范围进行限定,其可由系统自动设定, 也可由用户自行设定。如:预设范围为以该智能产品为中心,且直径为20m的范围。
在本实施例中,并不对本文中涉及的对无线通讯信号进行监测的具体方式进行限定,其包括但不限于:BLE蓝牙扫描技术和WiFi扫描技术。
该步骤S1的一种实现方式为:该智能产品会周期性扫描周围所有带蓝牙且已开启蓝牙的无线通讯设备所发出的蓝牙信号,并通过蓝牙与发出这些蓝牙信号的无线通讯设备进行蓝牙通讯。
在另一实施例中,并不对该S1的执行时机进行限定,该执行时机包括但不限于以下各项中的一项或多项:(1)获取控制终端发送的启动监测触发指令,所述启动监测触发指令是由所述控制终端周期性和在预设时间段进行发送,或者,由所述控制终端周期性进行发送,或者,由所述控制终端在预设时间段进行发送;根据所述启动监测触发指令,确定对所述预设范围内的所述信号接入情况进行监测。
其中,该控制终端包括但不限于以下一项或多项:PC、笔记本PC、平板PC、智能手机、可穿戴无线通讯设备、嵌入式无线通讯设备、智能家电或其任何组合。
如:获取智能手机每天早上八点发送的启动监测触发指令,或者获取智能手机每隔12小时发送的启动监测触发指令。
(2)根据关联的智能设备的历史使用时间数据,得到高危时间段,并确定在所述高危时间段对所述预设范围内的所述信号接入情况进行监测。
其中,该高危时间段指的是家中无人或家中只有小孩等时间段。
具体的,在本实施例中,并不对该关联的智能设备进行限定,其可为电视或空调。如:根据电视机的使用频率分析推断出家中高危时间段,在该时间段 内则需要启动对预设范围内的无线通讯信号进行监测。
如上班时间段是8点到下午5点,根据历史信息或者用户手机预设这个时间段是家中无人时间段,则到了8点就自动开启监测模式。
(3)根据触发所述监测功能启动指令的历史记录,确认自动检测功能的启动时刻;判断当前时刻是否为所述启动时刻;如果所述当前时刻为所述启动时刻,则确定在当前时刻对所述预设范围内的所述信号接入情况进行监测;如果所述当前时刻并非为所述启动时刻,则确定在所述启动时刻对所述预设范围内的所述信号接入情况进行监测。
S2:在监测到信号接入时,根据预设可信设备信息列表,确定发出所述信号的无线通讯设备是否为不可信设备;若是,则执行以下步骤S4,否则,执行以下步骤S3;
在监测到有信号接入时,即可获取发出该信号的无线通讯设备的设备信息,然后根据预设可信设备信息列表,确定接入的所述无线通讯设备是否为不可信设备。
S3:进行预设告警操作;
如:推送信息给告警终端(如:用户终端)、自动通知物业进行告警、启动门锁进行锁门、或者调用家中的摄像头进行视频记录。当然,也可与其他关联的智能设备进行联动,具体详情在后续进行详述。其中,该预设用户终端包括但不限于:手机。
S4:继续对预设范围内的信号接入情况进行监测。
在本实施例中,在确定无线通讯设备为不可信设备的情况下,则智能产品进行预设告警操作。
当然,值得注意的是,在本实施例中,并不对该智能产品的数量进行限定, 如:至少有一个相同或相似的智能产品在进行上述操作。
因此,当家中产品附近出现无线通讯设备时,就可以直接通过获取到该无线通讯设备的设备信息以确定该无线通讯设备是否安全,若不安全,用户可以在第一时间知道该情况并作出应对措施,由此可以大大提升家庭的安全系数,从而实现了对家里的隐蔽而可信的主动监控。
具体的,在另一实施例中,上述步骤S2的一种实现方式包括:
S21:获取发出所述信号的无线通讯设备的设备信息;
在本实施例中,并不对该设备信息的获取方式进行限定,只需其满足本实施例的要求即可,如:该信号中包括发出该信号的无线通讯设备的设备信息,通过对这些信号进行解析,即可从中获取发出这些接入的信号的无线通讯设备的设备信息。其中,这些设备信息包括但不限于:蓝牙MAC地址。
S22:确定预设可信设备信息列表中是否包括所述无线通讯设备的设备信息;若是,则执行以下步骤S4,否则,执行以上步骤S23;
S23:确定所述无线通讯设备为不可信设备。
所述预设可信设备信息列表中预存有可信设备的设备信息,即:智能产品需要预存值得信任的无线通讯设备的设备信息,如:预存值得信任的无线通讯设备的蓝牙MAC地址。如果该接入的无线通讯设备的设备信息包含于预设可信设备信息列表中,则确定该无线通讯设备为可信任无线通讯设备,否则,则确定该无线通讯设备为不可信设备。
若该设备信息包括蓝牙MAC地址,则该预设可信设备信息列表中预存有可信设备的蓝牙MAC地址;在此情况下,如果该预设可信设备信息列表中未存储有该接入无线通讯设备的蓝牙MAC地址,则可以确定该接入的无线通讯设备为不可信设备;当然,如果该预设可信设备信息列表中存储有该接入无线通讯设 备的蓝牙MAC地址,则可以确定该接入的无线通讯设备为可信设备,
在另一实施例中,在确定所述无线通讯设备为不可信设备之后,且在进行预设告警操作之前,该方法还包括:
S231:统计所述信号的接入时长;
值得注意的是,在本实施例中并不对实际执行记录的时机进行限定,只需其满足本实施例的要求即可,如:在确定有信号接入时时开始记录,也可以是在根据预设可信设备信息列表确定该无线通讯设备是可信设备时开始记录,还可以是在根据预设可信设备信息列表确定该无线通讯设备为不可信设备时开始记录。
S232:在确定所述无线通讯设备为不可信设备的情况下,判断所述无线通讯设备发出的所述信号的接入时长是否超过预设阈值;若是,则执行以下步骤S3,否则,执行以上步骤S4;
具体的,该智能产品还会识别出该无线通讯设备的种类,当然,还会统计无线通讯设备的设备信息的接入时长,即:统计该无线通讯设备与该智能产品的连接时长,从而统计该无线通讯设备发出的信号在该预设范围内的接入时长,依据该接入时长可判断该设备信息所属的无线通讯设备在预设范围内的连接时长是否过长。当然,如果该无线通讯设备的连接时长过长,则在该无线通讯设备为不可信设备的基础上,从而可以确定执行以上步骤S3以进行预设告警操作。如果该无线通讯设备的连接时长在预设时间范围之内,则会确定判定该无线通讯设备只是临时接入,从而可以执行以上步骤S4,以免出现误报。
在另一实施例中,在确定所述无线通讯设备为不可信设备之后,且在进行预设告警操作之前,该方法还包括:
S2311:将所述无线通讯设备的设备信息上传至云服务器;
S2312:指示所述云服务器统计所述无线通讯设备的设备信息的接入时长,并在确定所述无线通讯设备为不可信设备的情况下,指示所述云服务器判断所述无线通讯设备发出的信号的接入时长是否超过预设阈值;若是,则执行以下步骤S2313,否则,执行以上步骤S4。
值得注意的是,在本实施例中并不对实际执行记录的开始时刻进行限定,只需其满足本实施例的要求即可,如:在确定有信号接入时时开始记录,也可以是在根据预设可信设备信息列表确定该无线通讯设备是可信设备时开始记录,还可以是在根据预设可信设备信息列表确定该无线通讯设备为不可信设备时开始记录。
S2313:指示所述云服务器确定进行预设告警操作。
具体的,该智能产品还会上传该无线通讯设备的设备信息到云服务器上,而该云服务器会通过互联网来匹配识别出该无线通讯设备的种类,当然,还会统计所述无线通讯设备的设备信息的接入时长,即:统计该无线通讯设备与该智能产品的连接时长,从而统计该无线通讯设备发出的信号在该预设范围内的接入时长,依据该接入时长可判断该设备信息所属的无线通讯设备的连接时长是否过长。当然,如果该无线通讯设备的连接时长过长,则在判定该无线通讯设备为不可信设备的基础上,从而可以确定执行以上步骤S3以进行预设告警操作。如果该无线通讯设备的连接时长在预设时间范围之内,则会确定判定该无线通讯设备只是临时接入,从而可以执行以上步骤S4,以免出现误报。
在本实施例中,可以通过上述步骤S231、步骤232、步骤S3及步骤S4替代该步骤S2311、步骤2312、步骤2313及步骤S4,反之亦然。
在另一实施例中,上述进行预设告警操作包括:
S31:获取关联的智能设备上传的检测结果;
其中,该检测结果表征为所述无线通讯设备的危险等级。
S32:根据预设危险等级表,执行与所述检测结果对应的预设告警操作,其中,所述预设危险等级表包括:至少一个危险等级,所述至少一个危险等级中每个危险等级对应的预设告警操作。
其中,该关联的智能设备与执行上述步骤S1至步骤S4、步骤S21至步骤S23、步骤S231至步骤S232、和步骤S2311至步骤S2313所涉及的智能产品关联。该关联的智能设备包括房子里其他的智能安防产品。
具体的,该智能产品会获取关联的智能设备对所述无线通讯设备的危险等级进行检测的检测结果,然后,该智能产品会根据预设危险等级表,执行与所述检测结果对应的预设告警操作,其中,所述预设危险等级表包括:至少一个危险等级,所述至少一个危险等级中每个危险等级对应的预设告警操作,从而实现了联动房子里其他的智能安防产品,来进一步核实异常情况。
其中,该关联的智能设备为执行处理流程和/或计算操作的任何类型的机器,其包括但不限于以下一项或多项:PC、笔记本PC、平板PC、智能手机、可穿戴无线通讯设备、嵌入式无线通讯设备、智能家电或其任何组合。
当然,该智能产品还可上报上述判定为不可信设备的无线通讯设备的设备信息给用户终端。
当然,该智能产品会上报上述判定为不可信设备的无线通讯设备的设备信息云服务器,通过云服务器转发该设备信息给预设用户终端。
此外,该智能产品或该云服务器也获取与其关联的智能设备对所述无线通讯设备的检测结果,此处,该检测结果表征为无线通讯设备的危险等级;然后,根据预设危险等级表,执行与所述检测结果对应的预设告警操作。其中,其他产品对无线通讯设备的检测可参照上述步骤S1至步骤S4、步骤S21至步骤S23、 步骤S231至步骤S233、和步骤S2311至步骤S2313。
此外,在本实施例中,并不对本文中涉及的通讯方式进行限定,其包括但不限于:WiFi通讯、有线以太网通讯、BLE蓝牙通讯、蓝牙Mesh通讯、ZigBee通讯、LoRa通讯和2G/3G/4G/5G通讯。
就此,当家中产品附近出现无线通讯信号时,就可以直接通过获取发出该信号的设备信息以确定该无线通讯设备是否安全,若不安全,用户可以在第一时间知道该情况并作出应对措施,由此可以大大提升家庭的安全系数。
图2是根据本公开其中一实施例的一种安防方法的实现过程示意图,图3是根据本公开其中一可选实施例的一种安防方法的流程图,如图2和3所示,该安防方法需要该智能产品满足以下三个条件,第一:该智能产品内部集成BLE蓝牙功能,该功能可由该智能产品控制开启或关闭;第二该智能产品需要具备联网的功能,例如该智能产品自身集成WiFi通讯功能或者可以通过网关利用BLE蓝牙通讯技术进行数据中转等;第三需要后台服务器以及对应配套该智能产品APP来做整个智能家居安防系统的支撑。具体的方案设计框架图,如上图2所示。下面是详细的操作步骤:
首先是用户需要给该智能产品进行上电并打开配套的该智能产品APP操作,然后在该智能产品APP的界面上添加信任无线通讯设备的蓝牙MAC地址,再点击开启APP上的布防功能,这时该智能产品会定时扫描周围所有的带蓝牙且已开启蓝牙的无线通讯设备,这样可以获取到周围的蓝牙无线通讯设备的MAC地址。然后通过判断所获取的蓝牙无线通讯设备MAC地址是否为信任无线通讯设备的蓝牙MAC地址,如果是信任无线通讯设备的蓝牙MAC地址,则该智能产品重新开始定时扫描;否则,则上传该蓝牙无线通讯设备的MAC地址到云服务器 上,云服务器再通过互联网来匹配识别该MAC地址是属于何种无线通讯设备并且开始计时该MAC地址的接入时长,然后再判断该MAC地址接入时长是否过长?如果不是,则该智能产品重新开始定时扫描;如果是则服务器会上报相关的陌生蓝牙设备信息给用户手机,并且联动房子里其他的智能安防该智能产品,来进一步核实异常情况。
其中,如图2所示,图中的WiFi通讯可以是其他通讯技术,例如有线以太网通讯、BLE蓝牙通讯、蓝牙Mesh通讯、ZigBee通讯、LoRa通讯、2G/3G/4G/5G通讯等等。
图4是根据本公开其中一实施例的一种安防系统的结构框图,如图4所示,在本公开的其中一实施例中,还提供了一种安防系统,其应设置为智能产品,该安防系统包括:监测模块110,设置为对预设范围内的信号接入情况进行监测,所述信号为无线通讯信号;确定模块120,设置为在监测到所述信号接入时,根据预设可信设备信息列表,确定发出所述信号的无线通讯设备是否为不可信设备;安防模块130,设置为在确定所述无线通讯设备为不可信设备的情况下,进行预设告警操作。
在一些可选实施例中,所述确定模块120包括:获取单元,设置为获取发出所述信号的无线通讯设备的设备信息;列表确定单元,设置为确定预设可信设备信息列表中是否包括所述无线通讯设备的设备信息;确定单元,设置为在确定所述预设可信设备信息列表中不包括所述无线通讯设备的设备信息的情况下,确定所述无线通讯设备为不可信设备,以及在确定所述预设可信设备信息列表中包括所述无线通讯设备的设备信息的情况下,确定所述无线通讯设备为可信设备。
在一些可选实施例中,所述装置还包括:第一统计模块,设置为统计所述信号的接入时长;第一判断模块,设置为在确定所述无线通讯设备为不可信设备的情况下,判断所述无线通讯设备发出的信号的接入时长是否超过预设阈值;在确定所述接入时长超过预设阈值的情况下,确定进行预设告警操作。
在一些可选实施例中,所述装置还包括:上传模块,设置为将所述无线通讯设备的设备信息上传至云服务器;第二判断模块,设置为指示所述云服务器统计所述无线通讯设备的设备信息的接入时长,并在确定所述无线通讯设备为不可信设备的情况下,指示所述云服务器判断所述无线通讯设备发出的信号的接入时长是否超过预设阈值;在确定所述接入时长超过预设阈值的情况下,指示所述云服务器确定进行预设告警操作。
在一些可选实施例中,所述系统还包括:第一启动监测模块,设置为获取控制终端发送的启动监测触发指令,所述启动监测触发指令是由所述控制终端周期性和在预设时间段进行发送,或者,由所述控制终端周期性进行发送,或者,由所述控制终端在预设时间段进行发送;根据所述启动监测触发指令,确定对预设范围内的信号接入情况进行监测。
在一些可选实施例中,所述系统还包括:第二启动监测模块,设置为根据关联的智能设备的历史使用时间数据,得到高危时间段,并确定在所述高危时间段对预设范围内的信号接入情况进行监测。
在一些可选实施例中,所述系统还包括:第三启动监测模块,设置为根据触发监测功能启动指令的历史记录,确认自动检测功能的启动时刻;判断当前时刻是否为所述启动时刻;如果所述当前时刻为所述启动时刻,则确定在当前时刻对预设范围内的信号接入情况进行监测;如果所述当前时刻并非为所述启动时刻,则确定在所述启动时刻对预设范围内的信号接入情况进行监测。
在一些可选实施例中,获取模块,设置为获取关联的智能设备上传的检测结果,其中,所述检测结果表征为所述无线通讯设备的危险等级;根据预设危险等级表,执行与所述检测结果对应的预设告警操作,其中,所述预设危险等级表包括:至少一个危险等级,所述至少一个危险等级中每个危险等级对应的预设告警操作。
在一些可选实施例中,所述设备信息包括:蓝牙MAC地址。
在本公开的其中一实施例中,还提供了一种智能控制器,包括:智能安防装置,设置为执行上述的一种安防方法;或,上述的一种安防系统。
当然,在本实施例中,该智能控制器包括但不限于以下各项中的一项或多项:智能控制器、遥控及智能魔方。
在本公开的其中一实施例中的一种智能控制器所涉及的名词及实现原理具体可以参照上述实施例的一种安防方法或上述实施例的一种安防系统,在此不再赘述。
在本公开的其中一实施例中,还提供了一种电子设备,包括处理器和存储器;所述存储器设置为存储计算机指令,所述处理器设置为运行所述存储器存储的计算机指令,以实现上述的一种安防方法。
在本公开的其中一实施例中的一种电子设备所涉及的名词及实现原理具体可以参照上述实施例中的一种安防方法,在此不再赘述。
在本公开的其中一实施例中,还提供了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一个或者多个模块,所述一个或者多个模块可被一个或者多个处理器执行,以实现上述的一种安防方法。
在本公开的其中一实施例中的一种计算机可读存储介质所涉及的名词及实现原理具体可以参照上述实施例中的一种安防方法,在此不再赘述。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。
上述本公开实施例序号仅仅为了描述,不代表实施例的优劣。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本公开的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端(可以是手机,计算机,服务器,空调器,或者网络无线通讯设备等)执行本公开各个实施例所述的方法。
上面结合附图对本公开的实施例进行了描述,但是本公开并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本公开的启示下,在不脱离本公开宗旨和权利要求所保护的范围情况下,还可做出很多形式,这些均属于本公开的保护之内。
Claims (13)
- 一种安防方法,所述方法包括:对预设范围内的信号接入情况进行监测,所述信号为无线通讯信号;在监测到所述信号接入时,根据预设可信设备信息列表,确定发出所述信号的无线通讯设备是否为不可信设备;在确定所述无线通讯设备为不可信设备的情况下,进行预设告警操作。
- 根据权利要求1所述的方法,其中,所述预设可信设备信息列表中预存有可信设备的设备信息,根据预设可信设备信息列表,确定发出所述信号的无线通讯设备是否为所述不可信设备,包括:获取发出所述信号的无线通讯设备的设备信息;确定所述预设可信设备信息列表中是否包括所述无线通讯设备的设备信息;在确定所述预设可信设备信息列表中不包括所述无线通讯设备的设备信息的情况下,确定所述无线通讯设备为所述不可信设备。
- 根据权利要求1所述的方法,其中,所述方法还包括:统计所述信号的接入时长;在确定所述无线通讯设备为所述不可信设备的情况下,判断所述无线通讯设备发出的信号的接入时长是否超过预设阈值;在确定所述接入时长超过所述预设阈值的情况下,确定进行预设告警操作。
- 根据权利要求2所述的方法,其中,所述方法还包括:将所述无线通讯设备的设备信息上传至云服务器;指示所述云服务器统计所述无线通讯设备的设备信息的接入时长,并在确定所述无线通讯设备为所述不可信设备的情况下,指示所述云服务器判断所述无线通讯设备发出的信号的接入时长是否超过预设阈值;在确定所述接入时长超过所述预设阈值的情况下,指示所述云服务器确定进行预设告警操作。
- 根据权利要求1所述的方法,其中,在对所述预设范围内的所述信号接入情况进行监测之前,所述方法还包括:获取控制终端发送的启动监测触发指令,所述启动监测触发指令是由所述控制终端周期性和在预设时间段进行发送,或者,由所述控制终端周期性进行发送,或者,由所述控制终端在预设时间段进行发送;根据所述启动监测触发指令,确定对所述预设范围内的所述信号接入情况进行监测。
- 根据权利要求1所述的方法,其中,在对所述预设范围内的所述信号接入情况进行监测之前,所述方法还包括:根据关联的智能设备的历史使用时间数据,得到高危时间段,并确定在所述高危时间段对预设范围内的信号接入情况进行监测。
- 根据权利要求1所述的方法,其中,在对所述预设范围内的所述信号接入情况进行监测之前,所述方法还包括:根据触发监测功能启动指令的历史记录,确认自动检测功能的启动时刻;判断当前时刻是否为所述启动时刻;如果所述当前时刻为所述启动时刻,则确定在所述当前时刻对所述预设范围内的所述信号接入情况进行监测;如果所述当前时刻并非为所述启动时刻,则确定在所述启动时刻对所述预设范围内的所述信号接入情况进行监测。
- 根据权利要求1所述的方法,其中,进行预设告警操作,包括:获取关联的智能设备上传的检测结果,其中,所述检测结果表征为所述无 线通讯设备的危险等级;根据预设危险等级表,执行与所述检测结果对应的预设告警操作,其中,所述预设危险等级表包括:至少一个危险等级,所述至少一个危险等级中每个危险等级对应的预设告警操作。
- 根据权利要求1所述的方法,其中,所述设备信息包括:蓝牙媒体接入控制MAC地址。
- 一种安防系统,所述系统包括:监测模块,设置为对预设范围内的信号接入情况进行监测,所述信号为无线通讯信号;确定模块,设置为在监测到所述信号接入时,根据预设可信设备信息列表,确定发出所述信号的无线通讯设备是否为不可信设备;安防模块,设置为在确定所述无线通讯设备为所述不可信设备的情况下,进行预设告警操作。
- 一种电子设备,包括处理器和存储器;所述存储器设置为存储计算机指令,所述处理器设置为运行所述存储器存储的计算机指令,以实现权利要求1至9中任一项所述的一种安防方法。
- 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一个或者多个程序,所述一个或者多个程序可被一个或者多个处理器执行,以实现权利要求1至9中任一项所述的一种安防方法。
- 一种智能控制器,包括:智能安防装置,设置为执行权利要求1至9中任一项所述的一种安防方法;或,权利要求10所述的一种安防系统。
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