Communication method and system of wireless satellite flash cluster sensor
By using a wireless star-flash cluster sensor communication method, and employing a wireless star-flash converter to identify, modify, and restore communication commands and data, the problem of high sensor deployment costs is solved, efficient communication among multiple sensors is achieved, and dependence on industrial controllers is reduced.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SHENZHEN CHEVEN TECH
- Filing Date
- 2025-12-22
- Publication Date
- 2026-04-28
AI Technical Summary
Existing wireless sensor deployment costs are high, and WiFi LAN deployment costs are also high and network performance is unstable, heavily affected by buildings. Industrial control systems need to be compatible with multiple communication interfaces and protocols, resulting in high sensor deployment costs.
The communication method of wireless star-flash cluster sensors is adopted. The communication commands and data are identified, modified and restored through the receiver and transmitter of the wireless star-flash converter, so as to realize communication with multiple sensors of different types and avoid dependence on industrial controllers.
It reduces the deployment cost of sensors, enables communication between multiple different types of sensors, and reduces the need for compatibility with various communication interfaces and protocols.
Smart Images

Figure CN121940720A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of sensor technology, and in particular to a communication method and system for a wireless star-shaped cluster sensor. Background Technology
[0002] Currently, wireless sensor applications are widely implemented through WiFi local area networks (LANs), primarily in industrial environments with specific working conditions. However, WiFi LANs are costly to deploy, have unstable network performance, and are severely affected by objects such as buildings, limiting their practicality. In industrial control systems, industrial controllers are typically used to connect and extend the range of sensors, facilitating the management and integration of sensor output status information. Large-scale industrial control systems often utilize smart gateways to achieve intelligent sensor management and remote cloud-based control and debugging of equipment. This sensor deployment solution requires the gateway and industrial controller to be compatible with multiple communication interfaces and protocols to adapt to various sensors, resulting in higher deployment costs. Summary of the Invention
[0003] The purpose of this invention is to provide a communication method and system for wireless star-flash cluster sensors to solve the technical problem of high sensor deployment costs in the prior art.
[0004] The technical solution of the present invention is as follows: a communication method for a wireless starburst cluster sensor is provided, comprising: After receiving a communication command at the wireless star-flash converter receiver, the communication command is modified so that the modified communication command includes a first preset identifier, and the modified communication command is sent to the corresponding wireless star-flash converter transmitter according to the first preset identifier. The wireless star flash converter transmitter deletes the first preset identifier from the modified communication command to restore the modified communication command, obtain the restored communication command, and send the restored communication command to the corresponding sensor. The sensor collects data according to the restored communication command, and sends the collected sensor data back to the corresponding wireless star-flash converter transmitter. The wireless star-flash converter transmitter modifies the sensor data so that the modified sensor data includes a second preset identifier. The modified sensor data is then sent to the corresponding wireless star-flash converter receiver according to the second preset identifier. The wireless star-flash converter receiver restores the modified sensor data to obtain the restored sensor data.
[0005] Further, after receiving the communication command at the wireless star-flash converter receiver, the communication command is modified to include a first preset identifier, and the modified communication command is sent to the corresponding wireless star-flash converter transmitter according to the first preset identifier, including: After receiving a communication command, the first microprocessor at the receiving end of the wireless star-flash converter modifies the communication command to include a first preset identifier, and sends the modified communication command to the star-flash host at the receiving end of the wireless star-flash converter; the star-flash host then sends the modified communication command to the corresponding star-flash slave at the transmitting end of the wireless star-flash converter according to the first preset identifier.
[0006] Further, enabling the StarScan host to send the modified communication command to the corresponding StarScan slave unit of the wireless StarScan converter transmitter according to the first preset identifier includes: The StarSpark host, based on the first preset identifier, transmits the modified communication command wirelessly to the corresponding StarSpark slave transmitter via transparent transmission.
[0007] Further, the wireless star-flash converter transmitter deletes the first preset identifier from the modified communication command to restore the modified communication command, obtaining the restored communication command, and sends the restored communication command to the corresponding sensor, including: The slave device sends the modified communication command to the second microprocessor at the transmitter of the wireless star flash converter. The second microprocessor deletes the first preset identifier in the modified communication command to restore the modified communication command, obtain the restored communication command, and sends the restored communication command to the corresponding sensor.
[0008] Further, the collected sensor data is sent back to the corresponding wireless strobe converter transmitter, causing the wireless strobe converter transmitter to modify the sensor data so that the modified sensor data includes a second preset identifier. The modified sensor data is then sent to the corresponding wireless strobe converter receiver according to the second preset identifier, including: The collected sensor data is sent back to the corresponding second microprocessor, which modifies the sensor data to include a second preset identifier. The modified sensor data is then sent to the slave device of the wireless star flash converter transmitter, which in turn sends the modified sensor data to the corresponding wireless star flash converter receiver based on the second preset identifier.
[0009] Further, the satellite flash slave of the wireless satellite flash converter transmitter sends the modified sensor data to the corresponding wireless satellite flash converter receiver according to the second preset identifier, including: The slave device of the wireless star flash converter transmitter transmits the modified sensor data to the corresponding wireless star flash converter receiver via wireless transparent transmission according to the second preset identifier.
[0010] Another technical solution of the present invention is as follows: a communication system for a wireless star-flash cluster sensor is provided, including a wireless star-flash converter receiver, a wireless star-flash converter transmitter, and a sensor; The wireless star-flash converter receiver is configured to modify the communication instruction after receiving it, so that the modified communication instruction includes a first preset identifier, and send the modified communication instruction to the corresponding wireless star-flash converter transmitter according to the first preset identifier. The wireless star flash converter transmitter is used to delete the first preset identifier in the modified communication command in order to restore the modified communication command, obtain the restored communication command, and send the restored communication command to the corresponding sensor. The sensor is used to collect data according to the restored communication command and to send the collected sensor data back to the corresponding wireless star flash converter transmitter. The wireless star-flash converter transmitter is also used to modify the sensor data so that the modified sensor data includes a second preset identifier, and to send the modified sensor data to the corresponding wireless star-flash converter receiver according to the second preset identifier; The wireless star-flash converter receiver is also used to restore the modified sensor data to obtain the restored sensor data.
[0011] Furthermore, the wireless star-flash converter receiver includes a first microprocessor and a star-flash master, and the wireless star-flash converter transmitter includes a star-flash slave; The first microprocessor is configured to modify the communication instruction after receiving it, so that the modified communication instruction includes a first preset identifier, and send the modified communication instruction to the StarSpark host; the StarSpark host is configured to send the modified communication instruction to the corresponding StarSpark slave according to the first preset identifier.
[0012] Furthermore, the wireless star-flash converter transmitter also includes a second microprocessor; The StarShock slave device is further configured to send the modified communication command to the second microprocessor, the second microprocessor being configured to delete the first preset identifier in the modified communication command to restore the modified communication command, obtain the restored communication command, and send the restored communication command to the corresponding sensor.
[0013] Furthermore, the sensor is used to send the collected sensor data back to the corresponding second microprocessor; the second microprocessor is used to modify the sensor data so that the modified sensor data includes a second preset identifier, and send the modified sensor data to the StarScan slave device; the StarScan slave device is used to send the modified sensor data to the corresponding wireless StarScan converter receiver according to the second preset identifier.
[0014] The beneficial effects of this invention are as follows: After receiving a communication command, the wireless star-track converter receiver modifies the communication command to include a first preset identifier. The modified communication command is then sent to the corresponding wireless star-track converter transmitter based on the first preset identifier. The wireless star-track converter transmitter deletes the first preset identifier from the modified communication command to restore the modified communication command, obtaining a restored communication command. The restored communication command is then sent to the corresponding sensor. Finally, the sensor collects data according to the restored communication command and sends the collected sensor data back to the corresponding wireless star-track converter transmitter. The wireless star-shaped converter transmitter modifies the sensor data to include a second preset identifier, and then sends the modified sensor data to the corresponding wireless star-shaped converter receiver based on the second preset identifier. The wireless star-shaped converter receiver then restores the modified sensor data to obtain the restored sensor data. This technical solution enables communication with multiple different types of sensors through the wireless star-shaped converter receiver and transmitter, facilitating sensor data transmission. Furthermore, it eliminates the need for an industrial controller to accommodate multiple communication interfaces and protocols, thereby reducing sensor deployment costs. Attached Figure Description
[0015] Figure 1 This is a flowchart illustrating the communication method of the wireless star-flash cluster sensor provided in an embodiment of the present invention.
[0016] Figure 2 This is a schematic diagram illustrating the configuration of the StarScan master and StarScan slave devices provided in an embodiment of the present invention.
[0017] Figure 3This is a schematic diagram of the communication system of the wireless star-flash cluster sensor provided in an embodiment of the present invention.
[0018] Figure 4 This is a first application block diagram of the communication system for the wireless star-flash cluster sensor provided in an embodiment of the present invention.
[0019] Figure 5 This is a second application block diagram of the communication system for the wireless starburst cluster sensor provided in an embodiment of the present invention. Detailed Implementation
[0020] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0021] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0022] Figure 1 This is a flowchart illustrating the communication method of a wireless star-shaped cluster sensor according to an embodiment of the present invention. It should be noted that if substantially the same result is achieved, the communication method of the wireless star-shaped cluster sensor of the present invention is not based on... Figure 1 The illustrated process sequence is limited. For example... Figure 1 As shown, the communication method of this wireless star-flash cluster sensor mainly includes the following steps: S101, after receiving the communication instruction at the wireless star flash converter receiver, the communication instruction is modified so that the modified communication instruction includes a first preset identifier, and the modified communication instruction is sent to the corresponding wireless star flash converter transmitter according to the first preset identifier; In some embodiments, after the wireless star-track converter receiver receives a communication command, the communication command is modified to include a first preset identifier. The modified communication command is then sent to the corresponding wireless star-track converter transmitter based on the first preset identifier, including: After receiving a communication command, the first microprocessor at the receiving end of the wireless star-flash converter modifies the communication command to include a first preset identifier, and sends the modified communication command to the star-flash host at the receiving end of the wireless star-flash converter; the star-flash host then sends the modified communication command to the corresponding star-flash slave at the transmitting end of the wireless star-flash converter according to the first preset identifier.
[0023] In one specific embodiment, the wireless StarSpark converter receiver may include a first microprocessor and a StarSpark master unit, and the wireless StarSpark converter transmitter may include a second microprocessor and a StarSpark slave unit. During communication, the wireless StarSpark converter requires communication pairing between the StarSpark master unit and the StarSpark slave unit. Specifically, this pairing can be performed using MAC addresses (physical addresses). In this case, the MAC address and ID number (preset identifier) of the wireless StarSpark converter transmitter need to be pre-determined, and the MAC address and ID number of the wireless StarSpark converter receiver also need to be pre-configured. It should be noted that the MAC address and ID number of the wireless StarSpark converter receiver can be configured in the StarSpark master unit, and the MAC address and ID number of the wireless StarSpark converter transmitter can be configured in the StarSpark slave unit. A configuration diagram of the StarSpark master unit and the StarSpark slave unit is shown below. Figure 2 As shown, Figure 2 The Zhongxing Flash master can have multiple MAC addresses and ID numbers, while each Zhongxing Flash slave has a unique MAC address and ID number. The MAC address of a Xingxing Flash slave cannot be changed, but the ID number can be changed; the MAC address and ID number must correspond.
[0024] In one specific embodiment, after the first microprocessor at the wireless star-flash converter receiver receives a communication instruction (e.g., the corresponding hexadecimal data is 01060000000089CA), it modifies the communication instruction to include a first preset identifier (e.g., the corresponding hexadecimal data is 0x02). The modified communication instruction (e.g., the corresponding hexadecimal data is 0201060000000089CA) is then sent to the star-flash host at the wireless star-flash converter receiver. The star-flash host then sends the modified communication instruction to the star-flash slave at the corresponding wireless star-flash converter transmitter according to the first preset identifier. The star-flash slave at the corresponding wireless star-flash converter transmitter is the star-flash slave at the corresponding wireless star-flash converter transmitter that corresponds to the first preset identifier.
[0025] In some embodiments, the process of having the StarScan host send the modified communication command to the corresponding StarScan slave unit of the wireless StarScan converter transmitter according to the first preset identifier includes: The StarSpark host, based on the first preset identifier, transmits the modified communication command wirelessly to the corresponding StarSpark slave transmitter via transparent transmission.
[0026] In one specific embodiment, the StarScan host transmits the modified communication command to the corresponding StarScan slave transmitter via wireless transparent transmission based on the first preset identifier. Wireless transparent transmission ensures that the data maintains its original format during transmission, eliminating the need for protocol parsing or format conversion.
[0027] S102, the wireless star flash converter transmitter deletes the first preset identifier in the modified communication command to restore the modified communication command, obtain the restored communication command, and send the restored communication command to the corresponding sensor. In some embodiments, the wireless star-flash converter transmitter deletes the first preset identifier from the modified communication command to restore the modified communication command, obtaining the restored communication command, and then sends the restored communication command to the corresponding sensor, including: The slave device sends the modified communication command to the second microprocessor at the transmitter of the wireless star flash converter. The second microprocessor deletes the first preset identifier in the modified communication command to restore the modified communication command, obtain the restored communication command, and sends the restored communication command to the corresponding sensor.
[0028] In one specific embodiment, the StarScan slave device sends the modified communication command (e.g., the corresponding hexadecimal data is 0201060000000089CA) to the second microprocessor at the transmitter of the wireless StarScan converter. The second microprocessor deletes the first preset identifier from the modified communication command to restore the modified communication command, obtaining the restored communication command (e.g., the corresponding hexadecimal data is 01060000000089CA). The restored communication command is then sent to the corresponding sensor. The restored communication command is the same as the original communication command, ensuring the consistency of communication data between the user and the sensor.
[0029] S103, the sensor collects data according to the restored communication command, sends the collected sensor data back to the corresponding wireless star flash converter transmitter, the wireless star flash converter transmitter modifies the sensor data so that the modified sensor data includes a second preset identifier, and sends the modified sensor data to the corresponding wireless star flash converter receiver according to the second preset identifier; In some embodiments, the collected sensor data is sent back to the corresponding wireless strobe converter transmitter, causing the wireless strobe converter transmitter to modify the sensor data so that the modified sensor data includes a second preset identifier. The modified sensor data is then sent to the corresponding wireless strobe converter receiver according to the second preset identifier, including: The collected sensor data is sent back to the corresponding second microprocessor, which modifies the sensor data to include a second preset identifier. The modified sensor data is then sent to the slave device of the wireless star flash converter transmitter, which in turn sends the modified sensor data to the corresponding wireless star flash converter receiver based on the second preset identifier.
[0030] In one specific embodiment, the second preset identifier can be the same as the first preset identifier, and the MAC address corresponding to the second preset identifier can be 080102030402. Specifically, the slave device of the wireless star-flash converter transmitter sends the modified sensor data to the corresponding wireless star-flash converter receiver based on the second preset identifier.
[0031] In this embodiment of the invention, the collected sensor data is sent back to the corresponding second microprocessor, which modifies the sensor data to include a second preset identifier. The modified sensor data is then sent to the slave device of the wireless star-flash converter transmitter, which in turn sends the modified sensor data to the corresponding wireless star-flash converter receiver based on the second preset identifier. This allows for the rapid and secure transmission of collected sensor data back to the wireless star-flash converter receiver.
[0032] In some embodiments, the satellite flash slave of the wireless satellite flash converter transmitter sends the modified sensor data to the corresponding wireless satellite flash converter receiver according to the second preset identifier, including: The slave device of the wireless star flash converter transmitter transmits the modified sensor data to the corresponding wireless star flash converter receiver via wireless transparent transmission according to the second preset identifier.
[0033] S104, the wireless star flash converter receiver restores the modified sensor data to obtain the restored sensor data.
[0034] In one specific example, the wireless star-flash converter receiver restores the modified sensor data to obtain restored sensor data. Specifically, this may include having the star-flash host of the wireless star-flash converter receiver send the modified sensor data to a first microprocessor, and the first microprocessor restores the modified sensor data to obtain restored sensor data.
[0035] The communication method for a wireless star-flash cluster sensor provided in this embodiment of the invention involves modifying a communication command received at the receiver of a wireless star-flash converter to include a first preset identifier, and then sending the modified communication command to the corresponding wireless star-flash converter transmitter based on the first preset identifier. The transmitter then deletes the first preset identifier from the modified communication command to restore the original communication command, obtaining a restored communication command, which is then sent to the corresponding sensor. Finally, the sensor collects data according to the restored communication command and sends the collected sensor data back to the corresponding wireless star-flash converter transmitter. The wireless star-flash converter transmitter modifies the sensor data to include a second preset identifier, and then sends the modified sensor data to the corresponding wireless star-flash converter receiver based on the second preset identifier. The wireless star-flash converter receiver then restores the modified sensor data to obtain the restored sensor data. Through the wireless star-flash converter receiver and transmitter, communication with multiple different types of sensors can be achieved to transmit sensor data. Furthermore, it eliminates the need for an industrial controller to ensure compatibility with various communication interfaces and protocols, thereby reducing sensor deployment costs.
[0036] Figure 3 This is a schematic diagram of the communication system of a wireless star-flash cluster sensor according to an embodiment of the present invention. The communication system 30 of the wireless star-flash cluster sensor includes a wireless star-flash converter receiver 31, a wireless star-flash converter transmitter 32, and a sensor 33; The wireless star-flash converter receiver 31 is used to modify the communication command after receiving the communication command, so that the modified communication command includes a first preset identifier, and send the modified communication command to the corresponding wireless star-flash converter transmitter 32 according to the first preset identifier. The wireless star flash converter transmitter 32 is used to delete the first preset identifier in the modified communication command in order to restore the modified communication command, obtain the restored communication command, and send the restored communication command to the corresponding sensor 33. The sensor 33 is used to collect data according to the restored communication command and send the collected sensor data back to the corresponding wireless star flash converter transmitter 32; The wireless star-flash converter transmitter 32 is also used to modify the sensor data so that the modified sensor data includes a second preset identifier, and to send the modified sensor data to the corresponding wireless star-flash converter receiver 31 according to the second preset identifier; The wireless star-flash converter receiver 31 is also used to restore the modified sensor data to obtain the restored sensor data.
[0037] In one specific embodiment, the wireless star-shaped transmitter converter can support the connection of multiple sensors 33, which can be of the switch type, analog type, or digital type. The intelligent gateway controls more industrial sensors by connecting to and controlling the wireless star-shaped receiver converter. A first application block diagram of the communication system for the wireless star-shaped cluster sensor is shown below. Figure 4 As shown, Figure 4 The smart gateway in the system can connect to the user terminal.
[0038] In one specific embodiment, the wireless star-flash converter transmitter 32 may include a power supply module, a button and indicator light module, a data acquisition module, and a communication module. The power supply module can power the wireless star-flash converter and the connected sensor 33. It can be powered directly by an external 12-24V DC power supply or by a battery. It also has an expansion charging interface for charging the battery and supports external power supply from a large battery or an external solar charging panel. The button and indicator light module includes a button state machine to implement functions such as short press, long press, press down, and release. A long press of the button enters the mode switching mode (preventing accidental touches), and a short press switches the mode. The modes mainly include six modes: NPN switch mode, PNP switch mode, voltage mode, current mode, setting mode, and communication mode. Except for the setting mode, which has no corresponding indicator light, the other five modes have corresponding indicator lights. When switching between different modes, the indicator light for the corresponding mode remains constantly lit. In the setting mode, all indicator lights remain constantly lit.
[0039] The acquisition module can acquire different sensor input states, including switch, analog, and digital signals, by controlling relays. Specifically, a relay switch distinguishes between high-voltage and low-voltage signal inputs from sensor 33. High-voltage signal inputs include both switch and analog inputs, while low-voltage signal inputs are only digital (communication) inputs. Switch and analog inputs can be further distinguished by another relay switch. For the distinction between NPN and PNP type switch inputs, an NPN and PNP common interface circuit can be designed using an NPN transistor and a PNP transistor. The wireless star-flash converter transmitter 32 has two communication interfaces: one for connecting to sensor 33 or the user, and the other for connecting to the star-flash converter. The communication module offers three communication modes: communication setting mode, reporting communication mode, and forwarding communication mode. In communication setting mode, only the communication interface connected to sensor 33 or the user is enabled; in reporting communication mode, only the communication interface connected to the star-flash converter is enabled; and in forwarding communication mode, both communication interfaces are enabled.
[0040] In one specific embodiment, the wireless star-flash converter receiver 31 mainly includes a power supply module, a button and indicator light module, and a communication module. The button and indicator light module of the wireless star-flash converter receiver 31 is basically the same as that of the wireless star-flash converter transmitter 32, with only the indicator lights differing. The wireless star-flash converter receiver 31 has three modes: I / O mode (NPN switch mode, PNP switch mode, voltage mode, and current mode), setting mode, and communication mode. The indicator lights also only correspond to the I / O mode indicator and the communication mode indicator. The wireless star-flash converter receiver 31 also has two communication interfaces: one for connecting to the user and the other for connecting to the star-flash converter. There are only two communication modes: communication setting mode and forwarding communication mode. In communication setting mode, only the communication interface connected to the user is enabled; in forwarding communication mode, both communication interfaces are enabled.
[0041] In some embodiments, the wireless star-flash converter receiver 31 includes a first microprocessor and a star-flash master, and the wireless star-flash converter transmitter 32 includes a star-flash slave; The first microprocessor is configured to modify the communication instruction after receiving it, so that the modified communication instruction includes a first preset identifier, and send the modified communication instruction to the StarSpark host; the StarSpark host is configured to send the modified communication instruction to the corresponding StarSpark slave according to the first preset identifier.
[0042] In one specific embodiment, a second application block diagram of the communication system for a wireless starburst cluster sensor is shown, as follows: Figure 5 As shown, Figure 5The MCU connected to the StarSpark master module (StarSpark master) is the first microprocessor, and the MCU connected to the StarSpark slave module (StarSpark slave) is the second microprocessor.
[0043] In some embodiments, the wireless star-flash converter transmitter 32 further includes a second microprocessor; The StarShock slave device is further configured to send the modified communication command to the second microprocessor, the second microprocessor being configured to delete the first preset identifier in the modified communication command to restore the modified communication command, obtain the restored communication command, and send the restored communication command to the corresponding sensor 33.
[0044] In some embodiments, the sensor 33 is used to send the collected sensor data back to the corresponding second microprocessor; the second microprocessor is used to modify the sensor data so that the modified sensor data includes a second preset identifier, and send the modified sensor data to the StarScan slave device; the StarScan slave device is used to send the modified sensor data to the corresponding wireless StarScan converter receiver 31 according to the second preset identifier.
[0045] In one specific embodiment, the StarScan slave device sends the modified sensor data to the StarScan host device of the corresponding wireless StarScan converter receiver 31 according to the second preset identifier. The StarScan host device sends the modified sensor data to the first microprocessor. The first microprocessor restores the modified sensor data to obtain the restored sensor data.
[0046] The communication system for a wireless star-flash cluster sensor provided in this embodiment of the invention includes a wireless star-flash converter receiver 31 that, upon receiving a communication command, modifies the command to include a first preset identifier and sends the modified command to the corresponding wireless star-flash converter transmitter 32 based on the first preset identifier. The wireless star-flash converter transmitter 32 then deletes the first preset identifier from the modified command to restore it, obtaining a restored command, which is then sent to the corresponding sensor 33. The sensor 33 collects data according to the restored command and sends the collected sensor data back to the corresponding sensor. A wireless star-flash converter transmitter 32 modifies the sensor data to include a second preset identifier, and sends the modified sensor data to the corresponding wireless star-flash converter receiver 31 according to the second preset identifier. The wireless star-flash converter receiver 31 restores the modified sensor data to obtain the restored sensor data. Communication with multiple different types of sensors 33 can be achieved through the wireless star-flash converter receiver 31 and the wireless star-flash converter transmitter 32 to transmit sensor data. Furthermore, it eliminates the need for an industrial controller to accommodate multiple communication interfaces and protocols, thereby reducing the deployment cost of the sensors 33. The wireless star-flash cluster sensor communication system provided in this embodiment of the invention has high sensor adaptability, supports communication with sensors using proprietary protocols, has no special restrictions on command protocols, and supports multiple communication interfaces.
[0047] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0048] The above embodiments merely illustrate preferred implementations of the present invention, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of the invention. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these all fall within the protection scope of the present invention. Therefore, the protection scope of this invention should be determined by the appended claims.
Claims
1. A communication method for a wireless starburst cluster sensor, characterized in that, include: After receiving a communication command at the wireless star-flash converter receiver, the communication command is modified so that the modified communication command includes a first preset identifier, and the modified communication command is sent to the corresponding wireless star-flash converter transmitter according to the first preset identifier. The wireless star flash converter transmitter deletes the first preset identifier from the modified communication command to restore the modified communication command, obtain the restored communication command, and send the restored communication command to the corresponding sensor. The sensor collects data according to the restored communication command, and sends the collected sensor data back to the corresponding wireless star-flash converter transmitter. The wireless star-flash converter transmitter modifies the sensor data so that the modified sensor data includes a second preset identifier. The modified sensor data is then sent to the corresponding wireless star-flash converter receiver according to the second preset identifier. The wireless star-flash converter receiver restores the modified sensor data to obtain the restored sensor data.
2. The communication method of the wireless star-flash cluster sensor according to claim 1, characterized in that, After receiving a communication command at the wireless star-flash converter receiver, the communication command is modified to include a first preset identifier. The modified communication command is then sent to the corresponding wireless star-flash converter transmitter based on the first preset identifier, including: After receiving a communication command, the first microprocessor at the receiving end of the wireless star-flash converter modifies the communication command to include a first preset identifier, and sends the modified communication command to the star-flash host at the receiving end of the wireless star-flash converter; the star-flash host then sends the modified communication command to the corresponding star-flash slave at the transmitting end of the wireless star-flash converter according to the first preset identifier.
3. The communication method for the wireless starburst cluster sensor according to claim 2, characterized in that, The process of enabling the StarScan host to send the modified communication command to the corresponding StarScan slave unit of the wireless StarScan converter transmitter according to the first preset identifier includes: The StarSpark host, based on the first preset identifier, transmits the modified communication command wirelessly to the corresponding StarSpark slave transmitter via transparent transmission.
4. The communication method of the wireless star-flash cluster sensor according to claim 2, characterized in that, The process involves deleting the first preset identifier from the modified communication command at the wireless star-flash converter transmitter to restore the modified communication command, obtaining the restored communication command, and then sending the restored communication command to the corresponding sensor, including: The slave device sends the modified communication command to the second microprocessor at the transmitter of the wireless star flash converter. The second microprocessor deletes the first preset identifier in the modified communication command to restore the modified communication command, obtain the restored communication command, and sends the restored communication command to the corresponding sensor.
5. The communication method of the wireless star-flash cluster sensor according to claim 4, characterized in that, The collected sensor data is sent back to the corresponding wireless star-flash converter transmitter, which modifies the sensor data to include a second preset identifier. The modified sensor data is then sent to the corresponding wireless star-flash converter receiver based on the second preset identifier. This process includes: The collected sensor data is sent back to the corresponding second microprocessor, which modifies the sensor data to include a second preset identifier. The modified sensor data is then sent to the slave device of the wireless star flash converter transmitter, which in turn sends the modified sensor data to the corresponding wireless star flash converter receiver based on the second preset identifier.
6. The communication method of the wireless star-flash cluster sensor according to claim 5, characterized in that, The process involves the wireless star-flash converter transmitter's slave unit transmitting the modified sensor data to the corresponding wireless star-flash converter receiver based on the second preset identifier, including: The slave device of the wireless star flash converter transmitter transmits the modified sensor data to the corresponding wireless star flash converter receiver via wireless transparent transmission according to the second preset identifier.
7. A communication system for a wireless starburst cluster sensor, characterized in that, Includes a wireless star strobe converter receiver, a wireless star strobe converter transmitter, and a sensor; The wireless star-flash converter receiver is configured to modify the communication instruction after receiving it, so that the modified communication instruction includes a first preset identifier, and send the modified communication instruction to the corresponding wireless star-flash converter transmitter according to the first preset identifier. The wireless star flash converter transmitter is used to delete the first preset identifier in the modified communication command in order to restore the modified communication command, obtain the restored communication command, and send the restored communication command to the corresponding sensor. The sensor is used to collect data according to the restored communication command and to send the collected sensor data back to the corresponding wireless star flash converter transmitter. The wireless star-flash converter transmitter is also used to modify the sensor data so that the modified sensor data includes a second preset identifier, and to send the modified sensor data to the corresponding wireless star-flash converter receiver according to the second preset identifier; The wireless star-flash converter receiver is also used to restore the modified sensor data to obtain the restored sensor data.
8. The communication system for the wireless starburst cluster sensor according to claim 7, characterized in that, The wireless star-flash converter receiver includes a first microprocessor and a star-flash master, and the wireless star-flash converter transmitter includes a star-flash slave. The first microprocessor is configured to modify the communication instruction after receiving it, so that the modified communication instruction includes a first preset identifier, and send the modified communication instruction to the StarSpark host; the StarSpark host is configured to send the modified communication instruction to the corresponding StarSpark slave according to the first preset identifier.
9. The communication system for the wireless starburst cluster sensor according to claim 8, characterized in that, The wireless star-flash converter transmitter also includes a second microprocessor; The StarShock slave device is further configured to send the modified communication command to the second microprocessor, the second microprocessor being configured to delete the first preset identifier in the modified communication command to restore the modified communication command, obtain the restored communication command, and send the restored communication command to the corresponding sensor.
10. The communication system for the wireless starburst cluster sensor according to claim 9, characterized in that, The sensor is used to send the collected sensor data back to the corresponding second microprocessor; the second microprocessor is used to modify the sensor data so that the modified sensor data includes a second preset identifier, and send the modified sensor data to the StarScan slave device; the StarScan slave device is used to send the modified sensor data to the corresponding wireless StarScan converter receiver according to the second preset identifier.