WO2020211648A1 - 衣物处理设备及其控制方法 - Google Patents
衣物处理设备及其控制方法 Download PDFInfo
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- WO2020211648A1 WO2020211648A1 PCT/CN2020/082793 CN2020082793W WO2020211648A1 WO 2020211648 A1 WO2020211648 A1 WO 2020211648A1 CN 2020082793 W CN2020082793 W CN 2020082793W WO 2020211648 A1 WO2020211648 A1 WO 2020211648A1
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- clothing
- signal
- tag
- base station
- treatment device
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F34/00—Details of control systems for washing machines, washer-dryers or laundry dryers
- D06F34/04—Signal transfer or data transmission arrangements
- D06F34/05—Signal transfer or data transmission arrangements for wireless communication between components, e.g. for remote monitoring or control
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F93/00—Counting, sorting, or marking arrangements specially adapted for laundry purposes
- D06F93/005—Marking arrangements
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F34/00—Details of control systems for washing machines, washer-dryers or laundry dryers
- D06F34/28—Arrangements for program selection, e.g. control panels therefor; Arrangements for indicating program parameters, e.g. the selected program or its progress
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06K—GRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
- G06K7/00—Methods or arrangements for sensing record carriers, e.g. for reading patterns
- G06K7/10—Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation
- G06K7/10009—Methods 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
- G06K7/10366—Methods 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 the interrogation device being adapted for miscellaneous applications
Definitions
- the invention belongs to the technical field of household appliances, and specifically relates to a clothing treatment device and a control method thereof.
- the current washing machine has the function of clothing identification.
- the washing machine is equipped with a clothing identification module: RFID module.
- RFID module a clothing identification module
- the invention patent with application number 201510829777.3 discloses a washing machine control method and a washing machine.
- the washing machine control method includes that when a user starts the washing machine to wash the clothes, the clothes recognition module scans the clothes identification tags set on the laundry to obtain the clothes identification Information; the clothing identification module sends clothing identification information to the controller, so that the controller controls the washing machine to perform laundry washing according to the washing program corresponding to the clothing identification information in the washing program library.
- the washing machine can accurately learn the clothing identification information in the process of washing the clothes, so as to wash the clothes according to the corresponding washing program, and effectively improve the washing effect of the washing machine.
- the washing machine is equipped with an RFID reader for reading the radio frequency signal of the electronic tag, but each washing machine needs to be equipped with an RFID reader, which undoubtedly increases the cost of the washing machine and is not conducive to technology promotion.
- the technical problem to be solved by the present invention is to overcome the shortcomings of the prior art, and provide a clothing treatment equipment, adding a tag excitation device and an NB-iot module.
- the tag excitation device is only used to emit excitation signals without a reading module.
- the tag signal generated by the electronic tag is obtained by a nearby signal base station, which forwards the obtained tag signal to the corresponding clothing treatment equipment through the cellular mobile communication network, so that there is no need to install a reading module on each clothing treatment equipment , So that the cost of clothing identification technology applied to washing machines and dryers is greatly reduced, which is helpful for the promotion of clothing identification technology in clothing processing equipment.
- the clothing treatment equipment includes a tag excitation device, which is used to transmit an excitation signal to excite an electronic tag on the clothing, so that the electronic tag generates a tag signal that can be obtained by a signal base station.
- a tag excitation device is added to the clothing treatment equipment.
- the tag excitation device is only used to transmit excitation signals without a reading module.
- the tag signal generated by the electronic tag is obtained by a nearby signal base station, so there is no need
- a reading module is installed on each clothing processing equipment, so that the cost of applying clothing identification technology to washing machines and dryers is greatly reduced, which is helpful for the promotion of clothing identification technology in clothing processing equipment.
- the RFID module of the existing washing machine is designed as an integrated antenna and reader.
- the antenna sends electromagnetic signals to the RFID tag.
- the RFID tag receives the electromagnetic signal through electromagnetic coupling.
- the chip in the tag will be excited and the stored information will pass through the tag.
- the antenna transmission occurs.
- the tag will emit its own tag information every time it is activated.
- the electromagnetic signal sent by the tag is transmitted to the RFID reader through the antenna of the RFID module, decoded by the reader, and sent to the washing machine controller.
- the antenna part reserved by the solution of this application the reader part will be replaced by the base station.
- the power of the excitation device can be increased to allow the tag to obtain more energy.
- As a reading device its reading ability is also unmatched by ordinary readers, thus realizing long-distance signal reading.
- the clothing treatment device is provided with a communication module, and the clothing treatment device is in communication connection with the signal base station through the communication module, and the signal receiving base station sends the tag signal.
- the clothing treatment equipment is equipped with a communication module, and the signal base station obtains the corresponding tag signal, which is thought of as a direct and complete signal loop.
- the communication module is an NB-iot module
- the clothing processing device automatically connects to the signal base station through the NB-iot module.
- the communication module uses the NB-iot module.
- the NB-iot is built on a cellular network and only consumes about 180KHz of bandwidth. It can be directly deployed on the GSM network, UMTS network or LTE network to reduce deployment costs and achieve smooth upgrades.
- NB-IOT focuses on the low power consumption and wide coverage (LPWA) Internet of Things (IOT) market, and is an emerging technology that can be widely used worldwide. It has the characteristics of wide coverage, multiple connections, low speed, low cost, low power consumption, and excellent architecture.
- NB-IOT uses the license frequency band and can adopt three deployment methods: in-band, guard band, or independent carrier, to coexist with existing networks.
- NB-IoT is an emerging technology in the IoT field, which supports the cellular data connection of low-power devices in the wide area network. It is also called low-power wide area network (LPWAN). NB-IoT supports efficient connection of devices with long standby time and high network connection requirements. NB-IoT devices have a long battery life and can also provide very comprehensive indoor cellular data connection coverage.
- LPWAN low-power wide area network
- a plurality of clothing treatment equipment are all communicatively connected with the signal base station, and each clothing treatment equipment is correspondingly provided with a tag excitation device.
- a plurality of laundry treatment devices are all communicatively connected to the same signal base station, and each laundry treatment device shares the same signal base station, thereby saving module costs for each laundry treatment device.
- Another object of the present invention is to provide a method for controlling clothes treatment equipment.
- the clothes treatment equipment includes an excitation device.
- the control method includes: the tag excitation device emits an excitation signal to excite the electronic tag on the clothing, so that the electronic tag generates a tag signal and sends it To signal base station.
- the clothing processing equipment is in communication connection with the signal base station, and the signal base station obtains the tag signal.
- the clothing treatment equipment is provided with a cellular mobile communication module, and the clothing treatment equipment is connected to an established cellular mobile communication network through the cellular mobile communication network, and then communicates with the signal base station through the cellular mobile communication network.
- the tag signal has an identification code
- the clothing treatment device is connected to the signal base station to obtain the tag signal corresponding to the corresponding identification code.
- the tag signal generated by the electronic tag includes an identification code, and the identification code corresponds to the clothing treatment device. After the clothing treatment device is connected to the signal base station, the signal base station obtains the tag signal with the corresponding identification code.
- a plurality of clothing treatment devices are provided with a tag excitation device, the tag excitation device of each clothing treatment device writes a corresponding identification code to an electronic tag, and the electronic tag generates a tag signal with the identification code after sensing the excitation signal, The clothing processing equipment obtains a tag signal with a corresponding identification code from the signal base station.
- the tag excitation device of each clothing processing device writes the corresponding tag signal into the electronic tag, so that the clothing processing device obtains the tag signal with the corresponding identification code from the signal base station, or in other words, the signal base station
- the tag signals are sent to the corresponding clothing processing equipment according to the identification code in each tag signal.
- the tag signal includes a clothing information code
- the clothing processing device parses the clothing information code according to a set analysis rule to obtain corresponding clothing information.
- the signal is analyzed and processed on the washing machine side, and the clothing processing device determines the corresponding clothing care program according to the analyzed clothing information.
- the clothing treatment device is in communication connection with a cloud server, and the cloud server is in communication connection with the signal base station.
- the cloud server obtains the tag signal from the signal base station, it performs analysis and processing to obtain clothing information. Acquiring the clothing information by the cloud server;
- the cloud server determines the corresponding clothing care program according to the parsed clothing information, and the clothing processing device connects to the cloud server to obtain the clothing care program.
- the present invention has the following beneficial effects compared with the prior art:
- the clothing processing equipment includes a tag excitation device, which is used to transmit an excitation signal to excite the electronic tag on the clothing, so that the electronic tag generates a tag signal that can be obtained by the signal base station.
- a tag excitation device and an NB-iot module are added to the clothing treatment equipment.
- the tag excitation device is only used to transmit excitation signals without a reading module.
- the tag signal generated by the electronic tag is obtained by a nearby signal base station.
- the signal base station forwards the acquired tag signal to the corresponding clothing treatment equipment through the cellular mobile communication network, so that there is no need to set up a reading module on each clothing treatment equipment, so that the clothing identification technology is applied to the cost of washing machines and dryers.
- the sharp drop will help the promotion of clothing recognition technology in clothing processing equipment.
- Fig. 1 is a preferred control step of the laundry treatment device of the present invention.
- This embodiment provides a clothing treatment device, which includes a tag excitation device configured to emit an excitation signal to excite an electronic tag on the clothing, so that the electronic tag generates a tag signal that can be obtained by a signal base station.
- a tag excitation device to the clothing treatment equipment.
- the tag excitation device is only used to transmit excitation signals without a reading module.
- the tag signals generated by the electronic tags are obtained by the nearby signal base station, so there is no need to process each laundry Reading modules are installed on the equipment, so that the cost of applying clothing identification technology to washing machines and dryers is greatly reduced, and it is helpful for the promotion of clothing identification technology in clothing processing equipment.
- the RFID module of the existing washing machine is designed as an integrated antenna and reader.
- the antenna sends electromagnetic signals to the RFID tag.
- the RFID tag receives the electromagnetic signal through electromagnetic coupling.
- the chip in the tag will be excited and the stored information will pass through the tag.
- the antenna transmission occurs.
- the tag will emit its own tag information every time it is activated.
- the electromagnetic signal sent by the tag is transmitted to the RFID reader through the antenna of the RFID module, decoded by the reader, and sent to the washing machine controller.
- the present invention only retains the antenna part, and the reader part will be replaced by the base station.
- the power of the excitation device can be increased to allow the tag to obtain more energy.
- the reading device's reading ability is also unmatched by ordinary readers, thus realizing long-distance signal reading.
- the washing machine only installs the tag excitation device, the cost of the module will be greatly reduced than before, which helps promote the RFID clothing identification function, and the signal base station is used as a data collection device, if the clothing processing equipment wants to obtain the signal base station Data, it must be connected to the base station, the clothing treatment equipment is provided with a communication module, the clothing treatment equipment communicates with the signal base station through the communication module, and the receiving signal base station sends the tag signal.
- the clothing treatment equipment is equipped with a communication module, and the signal base station obtains the corresponding tag signal, which is thought of as a direct and complete signal loop.
- the existing wireless module is NB-iot, and the NB-iot module is also called narrowband Internet of Things.
- the communication module uses the NB-iot module, and the clothing processing equipment automatically connects to the signal base station through the NB-iot module.
- the NB-iot module is based on the cellular network, and the communication module uses the NB-iot module.
- the NB-iot is built on the cellular network and only consumes about 180KHz of bandwidth. It can be directly deployed on the GSM network, UMTS network or LTE network to reduce deployment costs and achieve Smooth upgrade.
- NB-IOT focuses on the low power consumption and wide coverage (LPWA) Internet of Things (IOT) market, and is an emerging technology that can be widely used worldwide. It has the characteristics of wide coverage, multiple connections, low speed, low cost, low power consumption, and excellent architecture.
- NB-IOT uses the license frequency band and can adopt three deployment methods: in-band, guard band, or independent carrier, to coexist with existing networks.
- NB-IoT supports the cellular data connection of low-power devices in the wide area network, which is also called low-power wide area network.
- NB-IoT supports efficient connection of devices with long standby time and high network connection requirements.
- NB-IoT devices have a long battery life and can also provide very comprehensive indoor cellular data connection coverage.
- a plurality of clothing treatment equipment are all communicatively connected with the signal base station, and each clothing treatment equipment is correspondingly provided with a tag excitation device.
- Multiple clothing treatment devices are all connected to the same signal base station in communication, and each clothing treatment device shares the same signal base station, thereby saving module costs for each clothing treatment device.
- the tag excitation device is installed inside the clothing treatment equipment, and the excitation signal range of the tag excitation device is smaller than the range of the tag signal generated after the electronic tag is excited.
- the clothing processing equipment judges whether the conditions for turning on the label excitation device are met. If the judgment result is yes, control the label excitation device to turn on the emission excitation signal, otherwise control the label excitation device to turn off;
- the laundry treatment equipment judges whether the conditions for turning on the label excitation device are met, including judging whether the door is closed and judging whether the start button of the clothing treatment equipment is triggered. If both of the judgment results are yes, the clothing treatment equipment controls the label excitation device to turn on the emission excitation Signal, otherwise it controls the tag excitation device to turn off. In this way, it is prevented that when the door is opened, the excitation signal will stimulate the electronic tags on the clothes outside the door. And when the door is not closed, it is possible that the user has not put all the clothes into the clothes treatment equipment. At this time, if the label excitation device is controlled to be turned on, the electronic tags on the clothes worn by the human body will also be excited.
- the second embodiment provides a control method applied to the above-mentioned clothes treatment equipment.
- the clothes treatment equipment includes an excitation device.
- the control method includes: the tag excitation device emits an excitation signal to excite an electronic tag on the clothing, so that the electronic tag generates a tag signal, and Send to the signal base station.
- the clothing processing equipment is in communication connection with the signal base station, and the signal base station obtains the tag signal.
- the clothing treatment equipment is provided with a cellular mobile communication module, and the clothing treatment equipment is connected to an established cellular mobile communication network through the cellular mobile communication network, and then communicates with the signal base station through the cellular mobile communication network. After the washing machine is turned on, it is directly connected to the cellular mobile communication network to realize the connection with the signal base station.
- the tag signal generated after the electronic tag is activated has an identification code
- the clothing processing device is connected to the signal base station to obtain the tag signal corresponding to the corresponding identification code.
- the tag signal generated by the electronic tag includes an identification code, and the identification code corresponds to the clothing processing device. After the clothing processing device is connected to the signal base station, the signal base station obtains the tag signal with the corresponding identification code.
- a plurality of clothing treatment equipment is provided with a tag excitation device, and the tag excitation device of each clothing treatment device writes a corresponding identification code to the electronic tag, and the electronic tag generates a tag signal with the identification code after sensing the excitation signal, and the clothing processing equipment
- the signal base station obtains the tag signal with the corresponding identification code.
- the tag excitation device of each clothing treatment device writes the corresponding tag signal into the electronic tag, so that the clothing treatment device obtains the tag signal with the corresponding identification code from the signal base station, or in other words, the signal base station obtains different clothing treatment equipment
- the tag signal is sent to the corresponding clothing processing equipment according to the identification code in each tag signal.
- the tag signal generated after the electronic tag is activated includes clothing information code
- the clothing processing device analyzes the clothing information code according to the set analysis rule to obtain corresponding clothing information.
- the clothing processing device has an analysis function.
- the clothing processing device parses the received tag signal.
- the clothing processing device determines the corresponding clothing care program according to the analyzed clothing information, or determines the parameter values of the clothing care program according to the analyzed clothing information.
- a preferred control method of this embodiment is provided, specifically:
- the tag excitation device is turned on to emit excitation signals
- the electronic tag generates a tag signal
- the signal base station obtains the tag signal, and forwards the tag signal to the corresponding clothing processing equipment according to the identification code in the tag signal;
- the clothing processing equipment receives the tag signal, and parses the clothing information code in the tag signal to obtain corresponding clothing information;
- the clothing processing equipment determines a corresponding clothing care program according to the clothing information.
- the signal base station has an analysis function. After the signal base station receives the tag signal, it parses out the clothing information according to the set rules, and sends the parsed clothing information directly to the clothing treatment device. The clothing information performs a corresponding clothing treatment program matching process.
- the clothing processing equipment includes a tag excitation device, the clothing processing equipment is in communication connection with the cloud server, and the cloud server is in communication connection with the signal base station.
- the cloud server obtains the tag signal from the signal base station, it performs analysis and processing to obtain clothing information.
- the clothing processing device connects to the cloud server to obtain the clothing information.
- the cloud server determines the corresponding clothing care program according to the parsed clothing information, and the clothing processing device connects to the cloud server to obtain the clothing care program.
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Abstract
一种衣物处理设备及其控制方法,该衣物处理设备包括标签激励装置,标签激励装置用于发射激励信号激励衣物上的电子标签,使得电子标签生成可被信号基站获取的标签信号。该衣物处理设备上增加一个标签激励装置和NB-iot模块,标签激励装置只用于发射激励信号,并不设置读取模块,电子标签生成的标签信号由附近的信号基站获取,该信号基站将获取的标签信号通过蜂窝移动通信网络转发给相应的衣物处理设备,如此则不需要在每个衣物处理设备上均设置读取模块,使得衣物识别技术应用到洗衣机、干衣机的成本大幅下降,有助于衣物识别技术在衣物处理设备上的推广。
Description
本发明属于家电技术领域,具体地说,涉及一种衣物处理设备及其控制方法。
随着新技术的发展进步,衣物处理设备,如洗衣机、干衣机、洗干一体机等设备均被配置新的技术,实现了更加智能化的控制。如现在的洗衣机具有衣物识别功能,如在洗衣机上设置有衣物识别模块:RFID模块,现有的带RFID衣物识别功能的洗衣机,其中RFID识别模块集成有天线和阅读器,导致洗衣机的模块成本较高,难以在普通机器上实现技术推广。
申请号为201510829777.3的发明专利公开了一种洗衣机的控制方法和洗衣机,该洗衣机的控制方法包括在用户启动洗衣机进行衣物洗涤时,衣物识别模块扫描待洗衣物上设置的衣物识别标签,得到衣物识别信息;衣物识别模块将衣物识别信息发送至控制器,以使控制器控制洗衣机根据洗涤程序库中与衣物识别信息对应的洗涤程序进行衣物洗涤。通过本发明能够使洗衣机在洗涤衣物的过程中准确获知衣物识别信息,以根据对应的洗涤程序洗涤衣物,有效提升洗衣机的洗涤效果。该洗衣机设置有RFID阅读器,用于读取电子标签的射频信号,但是各洗衣机都需要安装RFID阅读器无疑增加了洗衣机成本,不利于技术推广。
有鉴于此,特提出本发明。
发明内容
本发明要解决的技术问题在于克服现有技术的不足,提供一种衣物处理设备,增加一个标签激励装置和NB-iot模块,标签激励装置只用于发射激励信号,并不设置读取模块,电子标签生成的标签信号由附近的信号基站获取,该信号基站将获取的标签信号通过蜂窝移动通信网络转发给相应的衣物处理设备,如此则不需要在每个衣物处理设备上均设置读取模块,使得衣物识别技术应用到洗衣机、干衣机的成本大幅下降,有助于衣物识别技术在衣物处理设备上的推广。
为解决上述技术问题,本发明采用技术方案的基本构思是:
衣物处理设备,包括标签激励装置,所述标签激励装置用于发射激励信号激励衣物上的电子标签,使得电子标签生成可被信号基站获取的标签信号。
在上述方案中,在衣物处理设备上增加一个标签激励装置,标签激励装置只用于发射激 励信号,并不设置读取模块,电子标签生成的标签信号由附近的信号基站获取,如此则不需要在每个衣物处理设备上均设置读取模块,使得衣物识别技术应用到洗衣机、干衣机的成本大幅下降,有助于衣物识别技术在衣物处理设备上的推广。
现有洗衣机的RFID模块是天线和阅读器一体设计,天线发出电磁信号给RFID标签,RFID标签通过电磁耦合的方式接收到电磁信号,标签内的芯片会被激发,并将所存储的信息通过标签天线发送出现,每激发一次标签会发射一次本身的标签信息,标签发出的电磁信号由经RFID模块的天线传入RFID阅读器,由阅读器进行解码发送给洗衣机控制器,对比传统的RFID系统结构,本申请方案仅仅保留的天线部分,阅读器部分将由基站进行取代,为了让电子标签产生更大能量的电磁信号,将激励装置的功率加大,即可让标签获取更大能量,而信号基站作为读取装置,其读取能力也是普通阅读器无法比拟的,从而实现了远距离的信号读取。
优选的,衣物处理设备设置有通信模块,衣物处理设备通过所述通信模块与所述信号基站通信连接,接收信号基站发送所述标签信号。
衣物处理设备设置通信模块,由信号基站获取相应标签信号,想成直接完整的信号回路。
优选的,所述通信模块为NB-iot模块,衣物处理设备通过NB-iot模块自动连接所述信号基站。
在上述方案中,通信模块选用NB-iot模块,NB-iot构建于蜂窝网络,只消耗大约180KHz的带宽,可直接部署于GSM网络、UMTS网络或LTE网络,以降低部署成本、实现平滑升级。NB-IOT聚焦于低功耗广覆盖(LPWA)物联网(IOT)市场,是一种可在全球范围内广泛应用的新兴技术。其具有覆盖广、连接多、速率低、成本低、功耗低、架构优等特点。NB-IOT使用License频段,可采取带内、保护带或独立载波三种部署方式,与现有网络共存。NB-IoT是IoT领域一个新兴的技术,支持低功耗设备在广域网的蜂窝数据连接,也被叫作低功耗广域网(LPWAN)。NB-IoT支持待机时间长、对网络连接要求较高设备的高效连接。NB-IoT设备电池寿命长,同时还能提供非常全面的室内蜂窝数据连接覆盖。
优选的,多个衣物处理设备均与所述信号基站通信连接,每一衣物处理设备上对应设置有一标签激励装置。
在上述方案中,多个衣物处理设备均与同一信号基站通信连接,各衣物处理设备共享同一信号基站,从而为各衣物处理设备均节约了模块成本。
本发明另一目的在于提供衣物处理设备的控制方法,衣物处理设备包括激励装置,所述的控制方法包括:标签激励装置发射激励信号激励衣物上的电子标签,使得电子标签生成标 签信号,并发送至信号基站。
优选的,衣物处理设备与所述信号基站通信连接,由所述信号基站获取所述标签信号。
优选的,所述衣物处理设备设置有蜂窝移动通信模块,衣物处理设备通过蜂窝移动通信网络连接至已建立的蜂窝移动通信网络,再通过所述蜂窝移动通信网络与所述信号基站通信连接。
优选的,所述标签信号具有标识码,衣物处理设备连接所述信号基站获取相应标识码对应的标签信号。
在上述方案中,电子标签生成的标签信号包括有标识码,标识码与衣物处理设备相对应,衣物处理设备连接信号基站后,由信号基站获取具有相应标识码的标签信号。
优选的,多个衣物处理设备均设置有标签激励装置,各衣物处理设备的标签激励装置向电子标签写入相应标识码,电子标签感应所述激励信号后生成具有所述标识码的标签信号,衣物处理设备由所述信号基站获取具有相应标识码的标签信号。
在上述方案中,各衣物处理设备的标签激励装置向电子标签内写入相应的标签信号,如此则衣物处理设备由所述信号基站获取具有相应标识码的标签信号,或者换个说法是,信号基站获取不同衣物处理设备端衣物电子标签的标签信号后,根据各标签信号中的标识码将标签信号发送至相应的衣物处理设备上。
优选的,所述标签信号包括衣物信息编码,所述衣物处理设备以设定的解析规则解析所述的衣物信息编码得到相应衣物信息。
在上述方案中,在洗衣机端对信号进行解析处理,衣物处理设备根据解析的衣物信息确定相应的衣物护理程序。
在另一种实施方案中,衣物处理设备与云服务器通信连接,所述云服务器与信号基站通信连接,云服务器由信号基站获取到标签信号后,进行解析处理得到衣物信息,衣物处理设备连接所述云服务器获取所述衣物信息;
更优选的,所述云服务器根据解析的衣物信息确定相应的衣物护理程序,衣物处理设备连接所述云服务器获取所述衣物护理程序。
采用上述技术方案后,本发明与现有技术相比具有以下有益效果:
本发明中,衣物处理设备包括标签激励装置,所述标签激励装置用于发射激励信号激励衣物上的电子标签,使得电子标签生成可被信号基站获取的标签信号。本发明中在衣物处理 设备上增加一个标签激励装置和NB-iot模块,标签激励装置只用于发射激励信号,并不设置读取模块,电子标签生成的标签信号由附近的信号基站获取,该信号基站将获取的标签信号通过蜂窝移动通信网络转发给相应的衣物处理设备,如此则不需要在每个衣物处理设备上均设置读取模块,使得衣物识别技术应用到洗衣机、干衣机的成本大幅下降,有助于衣物识别技术在衣物处理设备上的推广。
下面结合附图对本发明的具体实施方式作进一步详细的描述。
附图作为本发明的一部分,用来提供对本发明的进一步的理解,本发明的示意性实施例及其说明用于解释本发明,但不构成对本发明的不当限定。显然,下面描述中的附图仅仅是一些实施例,对于本领域普通技术人员来说,在不付出创造性劳动的前提下,还可以根据这些附图获得其他附图。在附图中:
图1是本发明衣物处理设备优选的一种控制步骤。
需要说明的是,这些附图和文字描述并不旨在以任何方式限制本发明的构思范围,而是通过参考特定实施例为本领域技术人员说明本发明的概念。
为使本发明实施例的目的、技术方案和优点更加清楚,下面将结合本发明实施例中的附图,对实施例中的技术方案进行清楚、完整地描述,以下实施例用于说明本发明,但不用来限制本发明的范围。
在本发明的描述中,需要说明的是,术语“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
在本发明的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本发明中的具体含义。
实施例一
本实施例提供一种衣物处理设备,其包括标签激励装置,所述标签激励装置用于发射激励信号激励衣物上的电子标签,使得电子标签生成可被信号基站获取的标签信号。在衣物处 理设备上增加一个标签激励装置,标签激励装置只用于发射激励信号,并不设置读取模块,电子标签生成的标签信号由附近的信号基站获取,如此则不需要在每个衣物处理设备上均设置读取模块,使得衣物识别技术应用到洗衣机、干衣机的成本大幅下降,有助于衣物识别技术在衣物处理设备上的推广。
现有洗衣机的RFID模块是天线和阅读器一体设计,天线发出电磁信号给RFID标签,RFID标签通过电磁耦合的方式接收到电磁信号,标签内的芯片会被激发,并将所存储的信息通过标签天线发送出现,每激发一次标签会发射一次本身的标签信息,标签发出的电磁信号由经RFID模块的天线传入RFID阅读器,由阅读器进行解码发送给洗衣机控制器,对比传统的RFID系统结构,本发明仅仅保留的天线部分,阅读器部分将由基站进行取代,为了让电子标签产生更大能量的电磁信号,将激励装置的功率加大,即可让标签获取更大能量,而信号基站作为读取装置,其读取能力也是普通阅读器无法比拟的,从而实现了远距离的信号读取。
本实施例中,洗衣机只安装标签激励装置,其模块的成本会比之前大大下降,这有助于RFID衣物识别功能的推广,而信号基站作为一个数据收集装置,衣物处理设备如果要获取信号基站的数据,就必须连接基站,衣物处理设备设置有通信模块,衣物处理设备通过所述通信模块与所述信号基站通信连接,接收信号基站发送所述标签信号。衣物处理设备设置通信模块,由信号基站获取相应标签信号,想成直接完整的信号回路。
现有的无线模块除了WiFi,还有就是NB-iot,而NB-iot模块也叫窄带物联网,通信模块选用NB-iot模块,衣物处理设备通过NB-iot模块自动连接所述信号基站。
NB-iot模块基于蜂窝网络,通信模块选用NB-iot模块,NB-iot构建于蜂窝网络,只消耗大约180KHz的带宽,可直接部署于GSM网络、UMTS网络或LTE网络,以降低部署成本、实现平滑升级。NB-IOT聚焦于低功耗广覆盖(LPWA)物联网(IOT)市场,是一种可在全球范围内广泛应用的新兴技术。其具有覆盖广、连接多、速率低、成本低、功耗低、架构优等特点。NB-IOT使用License频段,可采取带内、保护带或独立载波三种部署方式,与现有网络共存。NB-IoT支持低功耗设备在广域网的蜂窝数据连接,也被叫作低功耗广域网。NB-IoT支持待机时间长、对网络连接要求较高设备的高效连接。NB-IoT设备电池寿命长,同时还能提供非常全面的室内蜂窝数据连接覆盖。
优选的,多个衣物处理设备均与所述信号基站通信连接,每一衣物处理设备上对应设置有一标签激励装置。多个衣物处理设备均与同一信号基站通信连接,各衣物处理设备共享同一信号基站,从而为各衣物处理设备均节约了模块成本。
所述标签激励装置安装在衣物处理设备内部,标签激励装置的激励信号射程范围小于所述电子标签被激励后生成的标签信号的射程范围。
为了误识别,衣物处理设备接收到开启识别指令后,判断是否达到开启标签激励装置的条件,若判断结果为是,则控制标签激励装置开启发射激励信号,否则控制标签激励装置关闭;
衣物处理设备判断是否达到开启标签激励装置的条件包括判断机门是否关闭和判断衣物处理设备的启动键是否被触发,若两者判断结果均为是,则衣物处理设备控制标签激励装置开启发射激励信号,否则控制标签激励装置关闭。如此,则防止了机门打开时,激励信号会激发到机门外部的衣物上的电子标签。且机门未关闭时,可能用户还未将全部衣物放入衣物处理设备,此时若控制开启标签激励装置会同样激励到人体穿着的衣物上的电子标签。
实施例二
本实施例二提供应用于上述衣物处理设备的控制方法,衣物处理设备包括激励装置,所述的控制方法包括:标签激励装置发射激励信号激励衣物上的电子标签,使得电子标签生成标签信号,并发送至信号基站。
衣物处理设备与所述信号基站通信连接,由所述信号基站获取所述标签信号。
所述衣物处理设备设置有蜂窝移动通信模块,衣物处理设备通过蜂窝移动通信网络连接至已建立的蜂窝移动通信网络,再通过所述蜂窝移动通信网络与所述信号基站通信连接。洗衣机在开机后,直接连接所述蜂窝移动通信网络,实现与信号基站的连接。
电子标签被激励后生成的标签信号具有标识码,衣物处理设备连接所述信号基站获取相应标识码对应的标签信号。电子标签生成的标签信号包括有标识码,标识码与衣物处理设备相对应,衣物处理设备连接信号基站后,由信号基站获取具有相应标识码的标签信号。
多个衣物处理设备均设置有标签激励装置,各衣物处理设备的标签激励装置向电子标签写入相应标识码,电子标签感应所述激励信号后生成具有所述标识码的标签信号,衣物处理设备由所述信号基站获取具有相应标识码的标签信号。各衣物处理设备的标签激励装置向电子标签内写入相应的标签信号,如此则衣物处理设备由所述信号基站获取具有相应标识码的标签信号,或者换个说法是,信号基站获取不同衣物处理设备端衣物电子标签的标签信号后,根据各标签信号中的标识码将标签信号发送至相应的衣物处理设备上。
实施例三
本实施中,电子标签被激励后生成的标签信号中包括有衣物信息编码,所述衣物处理设 备以设定的解析规则解析所述的衣物信息编码得到相应衣物信息。衣物处理设备具有解析功能,衣物处理设备对接收的标签信号进行解析处理,衣物处理设备根据解析的衣物信息确定相应的衣物护理程序,或者根据解析的衣物信息确定衣物护理程序的参数值。
参见图1所示,提供本实施例优选的控制方法,具体为:
S1、衣物处理设备开启;
S2、标签激励装置开启发射激励信号;
S3、电子标签生成标签信号;
S4、信号基站获取所述标签信号,并根据标签信号中的标识码将标签信号转发至相应的衣物处理设备;
S5、衣物处理设备接收所述标签信号,解析标签信号中衣物信息编码得到相应衣物信息;
S6、衣物处理设备根据所述衣物信息确定相应的衣物护理程序。
在另一实施方案中,信号基站具有解析功能,信号基站接收到标签信号后,以设定规则解析出衣物信息,并将解析后的衣物信息直接发送至衣物处理设备端,衣物处理设备端根据所述衣物信息进行相应的衣物处理程序匹配过程。
实施例四
本实施例中,衣物处理设备包括标签激励装置,衣物处理设备与云服务器通信连接,所述云服务器与信号基站通信连接,云服务器由信号基站获取到标签信号后,进行解析处理得到衣物信息,衣物处理设备连接所述云服务器获取所述衣物信息。
更优选的,所述云服务器根据解析的衣物信息确定相应的衣物护理程序,衣物处理设备连接所述云服务器获取所述衣物护理程序。
以上所述仅是本发明的较佳实施例而已,并非对本发明作任何形式上的限制,虽然本发明已以较佳实施例揭露如上,然而并非用以限定本发明,任何熟悉本专利的技术人员在不脱离本发明技术方案范围内,当可利用上述提示的技术内容做出些许更动或修饰为等同变化的等效实施例,但凡是未脱离本发明技术方案的内容,依据本发明的技术实质对以上实施例所作的任何简单修改、等同变化与修饰,均仍属于本发明方案的范围内。
Claims (10)
- 衣物处理设备,其特征在于,包括标签激励装置,所述标签激励装置用于发射激励信号激励衣物上的电子标签,使得电子标签生成可被信号基站获取的标签信号。
- 根据权利要求1所述的衣物处理设备,其特征在于,设置有通信模块,衣物处理设备通过所述通信模块与所述信号基站通信连接,接收信号基站发送所述标签信号;优选的,所述通信模块为NB-iot模块,衣物处理设备通过NB-iot模块自动连接所述信号基站。
- 根据权利要求1或2所述的衣物处理设备,其特征在于,多个衣物处理设备均与所述信号基站通信连接,每一衣物处理设备上对应设置有一标签激励装置。
- 衣物处理设备的控制方法,衣物处理设备包括激励装置,所述的控制方法包括:标签激励装置发射激励信号激励衣物上的电子标签,使得电子标签生成标签信号,并发送至信号基站。
- 根据权利要求4所述的控制方法,其特征在于,衣物处理设备与所述信号基站通信连接,由所述信号基站获取所述标签信号。
- 根据权利要求5所述的控制方法,其特征在于,所述衣物处理设备设置有蜂窝移动通信模块,衣物处理设备通过蜂窝移动通信网络连接至已建立的蜂窝移动通信网络,再通过所述蜂窝移动通信网络与所述信号基站通信连接。
- 根据权利要求4-6任一所述的控制方法,其特征在于,所述标签信号具有标识码,衣物处理设备连接所述信号基站获取相应标识码对应的标签信号。
- 根据权利要求7所述的控制方法,其特征在于,多个衣物处理设备均设置有标签激励装置,各衣物处理设备的标签激励装置向电子标签写入相应标识码,电子标签感应所述激励信号后生成具有所述标识码的标签信号,衣物处理设备由所述信号基站获取具有相应标识码的标签信号。
- 根据权利要求4-8任一所述的控制方法,其特征在于,所述标签信号包括衣物信息编码,所述衣物处理设备以设定的解析规则解析所述的衣物信息编码得到相应衣物信息;优选的,衣物处理设备根据解析的衣物信息确定相应的衣物护理程序。
- 根据权利要求4所述的控制方法,其特征在于,衣物处理设备与云服务器通信连接,所述云服务器与信号基站通信连接,云服务器由信号基站获取到标签信号后,进行解析处理得到衣物信息,衣物处理设备连接所述云服务器获取所述衣物信息;更优选的,所述云服务器根据解析的衣物信息确定相应的衣物护理程序,衣物处理设备连接所述云服务器获取所述衣物护理程序。
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