A full-automatic signal simulation device for smart substation

By designing a handheld intelligent substation fully automatic signal simulation device, integrating a CPU unit and an embedded unit, automated verification of remote signaling and telemetry is achieved, solving the problems of low efficiency and large equipment size in existing technologies, and improving operational convenience and efficiency.

CN224537857UActive Publication Date: 2026-07-21李俊堂
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
李俊堂
Filing Date
2025-06-06
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

The existing remote control system relies on manual calibration for the control information integration, which has a low degree of automation, resulting in a waste of manpower and time. In addition, the existing equipment is large and inconvenient to operate.

Method used

A fully automatic signal simulation device for intelligent substations was designed. It adopts a handheld miniaturized tablet device that integrates a CPU unit, an embedded unit, a touch screen, a network interface, and a verification processor to realize automated verification of remote signaling and telemetry and supports handheld operation.

Benefits of technology

It improves the automation level of remote information verification, reduces the consumption of human resources, and enhances the convenience and efficiency of operation.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a kind of full-automatic signal simulation devices of intelligent substation, comprising: handheld tablet device shell 11 and processor module 12;Processor module 12 includes CPU unit 121 and embedded unit 122;CPU unit 121 has touch interface 1211, display interface 1212, key interface 1213, fast charging protocol interface 1214 and check and point processor 1215;Dispatching main station end network interface 1222 and intelligent substation station end network interface 1223 are connected with the electric ethernet port 113 of setting in the frame of handheld tablet device shell 11;Check and point processor 1215 is used to execute remote signal scanning check, remote measurement scanning check, remote signal point and remote measurement point. Handheld miniaturization is carried out to device, so that user is more convenient operation in the full-automatic signal simulation process of intelligent substation.
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Description

Technical Field

[0001] This utility model mainly relates to the field of substation technology, specifically to a fully automatic signal simulation device for intelligent substations. Background Technology

[0002] Currently, the coordination and commissioning of remote control (RTC) systems mainly relies on manual communication between the master station and the plant station via traditional telephone calls. The information received by the master station is manually compared point-to-point with the actual information transmitted by the plant station. This method is technically limited, lacks effective commissioning tools, has low automation, and requires significant manpower and time.

[0003] To improve the efficiency of engineering commissioning and increase the level of automation in commissioning work, it is imperative to develop a smart and rapid verification tool for remote sensing information.

[0004] Currently, the equipment used for intelligent rapid verification of remote control information is generally cabinet-type or desktop-type, which is quite large and makes it inconvenient for users to operate the equipment for verification during the fully automatic signal simulation process of intelligent substations. Utility Model Content

[0005] To address the problems existing in the prior art, this utility model provides a fully automatic signal simulation device for intelligent substations. The device is miniaturized and handheld, making it more convenient for users to operate during the fully automatic signal simulation process in intelligent substations.

[0006] To solve the above-mentioned technical problems, the technical solution proposed by this utility model is as follows:

[0007] A fully automatic signal simulation device for intelligent substations, comprising:

[0008] Handheld tablet device casing 11 and processor module 12;

[0009] Processor module 12 includes CPU unit 121 and embedded unit 122, and data can be communicated between CPU unit 121 and embedded unit 122;

[0010] CPU unit 121 has a touch interface 1211, a display interface 1212, a button interface 1213, a fast charging protocol interface 1214, and a verification and point-to-point processor 1215;

[0011] Touch interface 1211 is connected to the controller of touch display screen 111, display interface 1212 is connected to touch display screen 111, button interface 1213 is connected to the button 112 set on the edge of the handheld tablet device shell 11, and fast charging protocol interface 1214 is connected to the power manager, which is used to provide power.

[0012] The embedded unit 122 is connected to the dispatch master station network interface 1222 and the intelligent substation plant network interface 1223 through the network controller 1221; the dispatch master station network interface 1222 and the intelligent substation plant network interface 1223 are connected to the Ethernet port 113 set on the frame of the handheld tablet device casing 11.

[0013] The verification and alignment processor 1215 is used to perform remote signaling scan verification, telemetry scan verification, remote signaling alignment, and telemetry alignment.

[0014] Furthermore, a touch display screen 111 is located on the front of the handheld tablet device casing 11.

[0015] Furthermore, the CPU unit 121 also has a memory interface 1216, a flash memory interface 1217, a USB controller 1218, and an HDMI controller 1219.

[0016] Furthermore, memory interface 1216 is used to connect a memory card;

[0017] Flash interface 1217 is used to connect flash memory cards.

[0018] Furthermore,

[0019] USB controller 1218 is connected to USB port 114 located on the edge of the handheld tablet device housing 11;

[0020] The HDMI controller 1219 is connected to the HDMI port 115 located on the bezel of the handheld tablet device housing 11.

[0021] Furthermore, the power manager is connected to a Type-C port 116 located on the edge of the handheld tablet device housing 11.

[0022] Furthermore, button 112 includes a power button 1121, a volume up / down button 1122, a program run tile button 1123, and a home button 1124.

[0023] Furthermore, a handheld strap structure is provided on the back of the handheld tablet device casing 11;

[0024] The two ends of the strap 117 of the handheld strap structure are fixed in the strap setting holes of the handheld tablet device housing 11.

[0025] Compared with the prior art, the advantages of this utility model are:

[0026] The intelligent substation fully automatic signal simulation device consists of a handheld tablet device casing 11 and a processor module 12. The processor module 12 includes a CPU unit 121 and an embedded unit 122, which communicate with each other. The CPU unit 121 has a touch interface 1211, a display interface 1212, a button interface 1213, a fast charging protocol interface 1214, and a verification and point-to-point processor 1215. The touch interface 1211 is connected to the controller of the touch display screen 111, the display interface 1212 is connected to the touch display screen 111, and the button interface 1213 is connected to the settings... A button 112 is connected to the frame of the handheld tablet device casing 11, and a fast charging protocol interface 1214 is connected to the power manager, which is used for power supply. The embedded unit 122 is connected to the dispatch master station network interface 1222 and the intelligent substation plant network interface 1223 through the network controller 1221. The dispatch master station network interface 1222 and the intelligent substation plant network interface 1223 are connected to the Ethernet port 113 located on the frame of the handheld tablet device casing 11. The verification and pairing processor 1215 is used to perform remote signaling scan verification, telemetry scan verification, remote signaling pairing, and telemetry pairing. The device is miniaturized and handheld, making it more convenient for users to operate during the fully automatic signal simulation process of the intelligent substation. Attached Figure Description

[0027] Figure 1 This is a structural diagram of the processor module of the intelligent substation fully automatic signal simulation device of this utility model.

[0028] Figure 2 This is a front view of the intelligent substation fully automatic signal simulation device of this utility model;

[0029] Figure 3 This is a right-side structural view of the fully automatic signal simulation device for intelligent substations according to this utility model.

[0030] Figure 4 This is a left-side view of the fully automatic signal simulation device for intelligent substations according to this utility model.

[0031] Figure 5 This is a rear view of the fully automatic signal simulation device for intelligent substations according to this utility model.

[0032] Legend: 11. Handheld tablet device casing; 12. Processor module; 111. Touch screen; 112. Buttons; 113. Ethernet port; 114. USB port; 115. HDMI port; 116. Type-C port; 117. Strap; 121. CPU unit; 122. Embedded unit; 1211. Touch interface; 1212. Display interface; 1213. Button interface; 1214. Fast charging protocol interface; 1215. Verification and point-to-point processor; 1216. Memory interface; 1217. Flash memory interface; 1218. USB controller; 1219. HDMI controller; 1121. Power button; 1122. Volume up / down buttons; 1123. Run program tile button; 1124. Return to home button; 1221. Network controller; 1222. Dispatch master station network interface; 1223. Smart substation plant network interface. Detailed Implementation

[0033] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0034] like Figures 1-4 As shown, this utility model embodiment provides a fully automatic signal simulation device for intelligent substations, comprising:

[0035] Handheld tablet device casing 11 and processor module 12;

[0036] Processor module 12 includes CPU unit 121 and embedded unit 122, and data can be communicated between CPU unit 121 and embedded unit 122;

[0037] CPU unit 121 has a touch interface 1211, a display interface 1212, a button interface 1213, a fast charging protocol interface 1214, and a verification and point-to-point processor 1215;

[0038] Touch interface 1211 is connected to the controller of touch display screen 111, display interface 1212 is connected to touch display screen 111, button interface 1213 is connected to the button 112 set on the edge of the handheld tablet device shell 11, and fast charging protocol interface 1214 is connected to the power manager, which is used to provide power.

[0039] The embedded unit 122 is connected to the dispatch master station network interface 1222 and the intelligent substation plant network interface 1223 through the network controller 1221; the dispatch master station network interface 1222 and the intelligent substation plant network interface 1223 are connected to the Ethernet port 113 set on the frame of the handheld tablet device casing 11.

[0040] The verification and alignment processor 1215 is used to perform remote signaling scan verification, telemetry scan verification, remote signaling alignment, and telemetry alignment.

[0041] Preferably, in some embodiments of the present invention, the touch display screen 111 is disposed on the front of the handheld tablet device housing 11.

[0042] Preferably, in some embodiments of the present invention, the CPU unit 121 further includes a memory interface 1216, a flash memory interface 1217, a USB controller 1218, and an HDMI controller 1219.

[0043] Preferably, in some embodiments of this utility model,

[0044] Memory interface 1216 is used to connect a memory card;

[0045] Flash interface 1217 is used to connect flash memory cards;

[0046] Simply insert the memory card and flash memory card into the card slot to establish a connection. In this embodiment, the memory card can be 1GB in size, and the flash memory card can be 8GB in size.

[0047] Preferably, in some embodiments of this utility model,

[0048] USB controller 1218 is connected to USB port 114 located on the edge of the handheld tablet device housing 11;

[0049] The HDMI controller 1219 is connected to the HDMI port 115 located on the bezel of the handheld tablet device housing 11.

[0050] Preferably, in some embodiments of this utility model,

[0051] The power manager is connected to the Type-C port 116 located on the edge of the handheld tablet device casing 11. To enable fast charging of the device, the Type-C port is used for charging. Type-C is a USB interface standard with a smaller size than both Type-A and Type-B, and can be used in both PCs and external devices.

[0052] Preferably, in some embodiments of this utility model,

[0053] Button 112 includes a power button 1121, a volume up / down button 1122, a program tile button 1123, and a home button 1124; the program tile button 1123 is for the convenience of the user to view the running programs on the display screen by pressing the button.

[0054] Preferably, in some embodiments of this utility model, such as Figure 5 As shown, a handheld strap structure is provided on the back of the handheld tablet device housing 11;

[0055] The two ends of the strap 117 of the handheld strap structure are fixed in the strap setting holes of the handheld tablet device housing 11; it is used to hold the device by passing the palm through the strap 117 when using the device, so as to prevent the device from slipping when the user is not holding it steadily, thus ensuring the safety of the device.

[0056] In summary, compared with the prior art, the advantages of this utility model are as follows:

[0057] The intelligent substation fully automatic signal simulation device consists of a handheld tablet device casing 11 and a processor module 12. The processor module 12 includes a CPU unit 121 and an embedded unit 122, which communicate with each other. The CPU unit 121 has a touch interface 1211, a display interface 1212, a button interface 1213, a fast charging protocol interface 1214, and a verification and point-to-point processor 1215. The touch interface 1211 is connected to the controller of the touch display screen 111, the display interface 1212 is connected to the touch display screen 111, and the button interface 1213 is connected to the settings... A button 112 is connected to the frame of the handheld tablet device casing 11, and a fast charging protocol interface 1214 is connected to the power manager, which is used for power supply. The embedded unit 122 is connected to the dispatch master station network interface 1222 and the intelligent substation plant network interface 1223 through the network controller 1221. The dispatch master station network interface 1222 and the intelligent substation plant network interface 1223 are connected to the Ethernet port 113 located on the frame of the handheld tablet device casing 11. The verification and pairing processor 1215 is used to perform remote signaling scan verification, telemetry scan verification, remote signaling pairing, and telemetry pairing. The device is miniaturized and handheld, making it more convenient for users to operate during the fully automatic signal simulation process of the intelligent substation.

[0058] The above are merely preferred embodiments of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are within its protection scope. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should be considered within its protection scope.

Claims

1. A fully automatic signal simulation device for intelligent substations, characterized in that, include: Handheld tablet device casing (11) and processor module (12); The processor module (12) includes a CPU unit (121) and an embedded unit (122), and the CPU unit (121) and the embedded unit (122) communicate with each other. The CPU unit (121) has a touch interface (1211), a display interface (1212), a button interface (1213), a fast charging protocol interface (1214), and a verification and point-to-point processor (1215). The touch interface (1211) is connected to the controller of the touch display screen (111), the display interface (1212) is connected to the touch display screen (111), the button interface (1213) is connected to the button (112) disposed on the edge of the handheld tablet device shell (11), and the fast charging protocol interface (1214) is connected to the power manager, which is used to provide power. The embedded unit (122) is connected to the dispatch master station network interface (1222) and the intelligent substation plant network interface (1223) through the network controller (1221); the dispatch master station network interface (1222) and the intelligent substation plant network interface (1223) are connected to the Ethernet port (113) provided on the frame of the handheld tablet device housing (11); The verification and alignment processor (1215) is used to perform remote signaling scan verification, telemetry scan verification, remote signaling alignment, and telemetry alignment.

2. The intelligent substation fully automatic signal simulation device according to claim 1, characterized in that, The touch display screen (111) is located on the front of the casing (11) of the handheld tablet device.

3. The intelligent substation fully automatic signal simulation device according to claim 1, characterized in that, The CPU unit (121) also has a memory interface (1216), a flash memory interface (1217), a USB controller (1218), and an HDMI controller (1219).

4. The intelligent substation fully automatic signal simulation device according to claim 3, characterized in that, The memory interface (1216) is used to connect a memory card; The flash interface (1217) is used to connect a flash card.

5. The intelligent substation fully automatic signal simulation device according to claim 3, characterized in that, The USB controller (1218) is connected to the USB port (114) disposed on the frame of the handheld tablet device housing (11); The HDMI controller (1219) is connected to the HDMI port (115) located on the frame of the handheld tablet device housing (11).

6. The intelligent substation fully automatic signal simulation device according to claim 1, characterized in that, The power manager is connected to a Type-C port (116) located on the edge of the handheld tablet device housing (11).

7. The intelligent substation fully automatic signal simulation device according to claim 1, characterized in that, The button (112) includes a power button (1121), a volume up / down button (1122), a program run tile button (1123), and a return to home button (1124).

8. The intelligent substation fully automatic signal simulation device according to claim 1, characterized in that, The back of the handheld tablet device housing (11) is provided with a handheld strap structure; The two ends of the strap (117) of the handheld strap structure are fixed in the strap setting holes of the handheld tablet device housing (11).