Intelligent voice recognition announcer for linen management
Patent Information
- Application Number
- CN202521371649.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-01
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-07-01
AI Technical Summary
[0005]本实用新型要解决的技术问题是现有布草管理用智能语音识别播报器的识别器挑选速度太慢,且容易出错
[0012]本实用新型与现有技术相比的优点在于:本装置采用单个布草均安装电子标签的方式将各个布草进行标记,并将该标签录入分析器的数据库,在挑拣时,只需将布草放在识别扫描器上方进行数据扫描,便可以通过分析器快速分析出客户信息,并使用播报器完成播报,使得布草信息快速确认的同时,还可以保证识别信息的精准度,且为了避免电子标签损坏而影响分析,在电子标签的上方还刻有单独的编号,用以辅助确认信息,为了完成编号信息的快速录入,在检测壳体的一侧还安装有编号输入器进行辅助确认。
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Figure CN224816733U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of linen management, specifically to an intelligent voice recognition broadcaster for linen management. Background Technology
[0002] Because linen laundry plants collect linens from many different hotels and wash them together, and for budget hotels, the styles and appearances of the linens are quite similar, making it difficult to distinguish which linen comes from which hotel, intelligent voice recognition broadcasters for linen management are usually used to help confirm linen information in order to facilitate quick sorting of linens from different customers.
[0003] Existing intelligent voice recognition broadcasters for linen management mainly consist of a recognizer and a broadcaster. The conventional method is to use the recognizer to identify each piece of linen. The recognizer can display the data of the chip on the linen, thus allowing you to find out which hotel the linen belongs to.
[0004] While this method can sort and pick out linens, it is too slow and inefficient for linen washing plants. Furthermore, since the identification method is usually visual batch identification, it is prone to counting errors when dealing with large quantities. Utility Model Content
[0005] The technical problem this invention aims to solve is that the recognition speed of existing intelligent voice recognition broadcasters for linen management is too slow and prone to errors.
[0006] To solve the above-mentioned technical problems, the technical solution provided by this utility model is: an intelligent voice recognition broadcaster for linen management, including a recognizer for identifying linens and a broadcaster for issuing recognition information; The linen is equipped with an RFID electronic tag on its upper part, and the electronic tag is engraved with a number for physical identification. The identifier is an electronic identifier for RFID technology, which consists of a detection housing for placing linens, an identification scanner located in the cavity of the detection area of the detection housing, an analyzer for analyzing the data of the identification scanner, and a number input device that passes through the detection housing. The number input device, recognition scanner, and broadcaster are all connected to the analyzer. The number input device and recognition scanner are connected to the input recognition system of the analyzer, and the broadcaster is connected to the voice output system.
[0007] As an improvement, the number input device has a concealed structure, and a cover plate is provided on the top of the detection housing to protect the number input device.
[0008] As an improvement, the identifier is powered and uploads synchronized data via a USB data interface.
[0009] As an improvement, the outer wall of the detection housing is fitted with a protective shell for non-Newtonian fluid.
[0010] As an improvement, the bottom cover of the detection housing is a detachable structure, and the detection housing is connected to the bottom cover of the detection housing by bolts.
[0011] As an improvement, a sound-permeable mesh is provided on the top of the detection housing to facilitate the transmission of sound from the broadcaster.
[0012] The advantages of this invention compared to existing technologies are as follows: This device uses an electronic tag to mark each piece of linen and records the tag into the analyzer's database. During the picking process, the linen is simply placed above the recognition scanner for data scanning, and the analyzer can quickly analyze the customer information and broadcast it through a broadcaster. This allows for rapid confirmation of linen information while ensuring the accuracy of the identification information. In order to prevent damage to the electronic tag from affecting the analysis, a unique number is engraved on the top of the electronic tag to assist in confirming the information. To facilitate the rapid input of the number information, a number input device is also installed on one side of the detection housing for auxiliary confirmation. Attached Figure Description
[0013] Figure 1 This is a general structural diagram of an intelligent voice recognition broadcaster for linen management according to this utility model.
[0014] Figure 2 This is an open view of the overall structure of an intelligent voice recognition broadcaster for linen management according to this utility model.
[0015] Figure 3 This is a cross-sectional view of the overall structure of an intelligent voice recognition broadcaster for linen management according to this utility model.
[0016] Figure 4 This is a structural diagram of an electronic tag for an intelligent voice recognition broadcaster used in linen management, according to this utility model.
[0017] Figure 5 This is a flowchart of an intelligent voice recognition broadcaster for linen management according to this utility model.
[0018] As shown in the figure: 1. Linen; 2. Identifier; 21. Detection housing; 22. Identification scanner; 23. Analyzer; 24. Number input device; 241. Cover plate; 25. USB data interface; 3. Announcer; 31. Sound-permeable mesh; 4. Electronic tag; 41. Number; 5. Protective housing. Detailed Implementation
[0019] The present invention will now be described in further detail with reference to the accompanying drawings.
[0020] As per the instruction manual Figure 1 ,2 As shown in Figures 3 and 4, the existing RFID technology mainly consists of an electronic tag 4 installed on the linen 1 (the RFID electronic tag 4 is designed for high-pressure, high-temperature, and water-washing environments, and can maintain stable performance in high-temperature ironing at up to 200 degrees Celsius and more than 200 washing cycles. These tags are usually made of soft textiles or silicone materials to wrap the chip antenna, which can be directly sewn or embedded in the linen without affecting the comfort and lifespan of the fabric) and a reader 2 for scanning the electronic tag 4. In order to facilitate the identification of the merchants of the linen 1, a broadcaster 3 connected to the store network is installed inside the reader 2. The broadcaster 3 is generally installed inside the detection housing 21 of the reader 2 and is connected to the output of the analyzer 23 inside the detection housing 21 via a data cable. The identification scanner 22 that detects the signal of the electronic tag 4 is also installed inside the cavity of the detection housing 21. In order to avoid the chaos inside the cavity, isolation support columns are usually used to isolate the various parts.
[0021] To facilitate maintenance of this device, the bottom cover of the detection housing 21 is a detachable structure, and the detection housing 21 is connected to the bottom cover of the detection housing 21 by bolts.
[0022] To facilitate the detection of faulty electronic tags 4, a physical identification number 41 is engraved on the top of the electronic tag 4, and a number input device 24 for inputting the number 41 is provided on one side of the detection housing 21. The number input device 24 passes through the top surface of the detection housing 21 and is lower than the upper surface of the detection housing 21, and is covered by a cover plate 241, that is, the number input device 24 is made into a hidden structure, so as to prevent accidental touch when using the recognizer 2. The number input device 24 and the recognition scanner 22 are both connected to the input end of the analyzer 23. The number input device 24, the recognition scanner 22 and the announcer 3 are all connected to the analyzer 23. The number input device 24 and the recognition scanner 22 are connected to the input recognition system of the analyzer 23, and the announcer 3 is connected to the voice output system. The database of the analyzer 23 is connected to the host via a USB data interface 25.
[0023] To prevent the detector 2 from being dropped during the transfer of linen 1, the outer wall of the detection housing 21 is fitted with a non-Newtonian fluid protective shell 5 to ensure that the detection housing 21 will not be cracked.
[0024] In order to ensure that the voice of the broadcaster 3 can be transmitted normally out of the detection housing 21, a sound-transmitting mesh 31 is provided on the top of the detection housing 21 to facilitate the transmission of the voice of the broadcaster 3.
[0025] In specific implementation, this utility model is... Figure 5The operation process of this device is as follows: After connecting the main control room and USB data interface 25 via the data cable, the identifier 2 is turned on. When the linen 1 is placed on top of the identifier 2, the scanner 22 scans and transmits the data of the electronic tag 4 on the linen 1 to the analyzer 23. When the analysis data is normal, the corresponding data inside the analyzer 23 will be read and the corresponding customer information will be broadcast through the announcer 3, so as to facilitate the operator to identify the ownership of the linen 1. When an abnormal signal occurs, the analyzer 23 will cause the announcer 3 to emit an error signal alarm sound, prompting the operator to manually identify the linen 1. The number 41 engraved on the electronic tag 4 is entered through the number input device 24 to help confirm the customer information of the linen 1, so as to facilitate the operator's distribution. Similarly, when the sensor fails to detect the linen, the information can also be confirmed directly through the number input device 24, so as to quickly complete the distribution of the linen 1.
[0026] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.
Claims
1. A smart voice recognition broadcaster for linen management, comprising a recognizer (2) for identifying linens (1) and a broadcaster (3) for issuing recognition information, characterized in that: The linen (1) is provided with an RFID electronic tag (4) on its upper part, and the electronic tag (4) is engraved with a physical identification number (41). The identifier (2) is an electronic identifier for RFID technology. The identifier (2) consists of a detection housing (21) for placing linen (1), an identification scanner (22) located in the detection area cavity of the detection housing (21), an analyzer (23) for analyzing the data of the identification scanner (22), and a number input device (24) passing through the detection housing (21). The number input device (24), the recognition scanner (22) and the announcer (3) are all connected to the analyzer (23), and the number input device (24) and the recognition scanner (22) are connected to the input recognition system of the analyzer (23), and the announcer (3) is connected to the voice output system; The number input device (24) is a hidden structure, and a cover plate (241) is provided above the detection housing (21) to protect the number input device (24). The identifier (2) is powered and uploads synchronized data via a USB data interface (25); The outer wall end of the detection housing (21) is fitted with a protective shell (5) for non-Newtonian fluid. The bottom cover of the detection housing (21) is a detachable structure, and the detection housing (21) is connected to the bottom cover of the detection housing (21) by bolts. The detection housing (21) is provided with a sound-permeable mesh (31) above it to facilitate the transmission of sound from the broadcaster (3).