Remote monitoring device of Internet of Things
By introducing multiple mechanical motion structures and motor control into the IoT remote monitoring device, the angle and supplementary lighting of the object and person recognition lens are automatically adjusted, which solves the shortcomings of existing devices in terms of angle adjustment range and speed, and achieves efficient and intelligent monitoring effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2026-04-10
AI Technical Summary
Existing IoT remote monitoring devices are insufficient in terms of angle adjustment range and adjustment rate, making them difficult to adapt to complex and diverse application scenarios.
An IoT remote monitoring device was designed, which adopts multiple mechanical motion structures and motor control. By recognizing the movement of objects, the angle and position of the object and person recognition lens are automatically adjusted. Combined with the reinforcement lamp body, automatic supplementary lighting is provided to achieve rapid capture and angle adjustment.
It enables IoT remote monitoring devices to efficiently identify and capture images in complex environments, improving the efficiency of intelligent automation and adapting to diverse working environments.
Smart Images

Figure CN224111214U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of internet of things remote monitoring technology, concretely is a kind of internet of things remote monitoring device. BACKGROUND
[0002] The monitoring system is one of the most applied systems in security systems, and the more suitable construction site monitoring system on the market is a handheld video communication device. Video monitoring is now mainstream. From the earliest analog monitoring to the hot digital monitoring in recent years to the emerging network video monitoring now, there have been earth-shattering changes. Today, with the gradual unification of IP technology worldwide, it is necessary to reevaluate the development history of video monitoring systems. From a technical perspective, the development of video monitoring systems is divided into the first generation of analog video monitoring systems (CCTV), the second generation of digital video monitoring systems based on "PC + multimedia card" (DVR), and the third generation of IP network video monitoring systems (IPVS). Since the development of the monitoring system, in addition to the continuous innovation of monitoring technology, monitoring products have also begun to form a powerful security monitoring system with other products. This system uses electronic fences to enclose the monitored area into a closed area. The electronic fence has a blocking and alarm system, which is an active intrusion prevention fence. It counterattacks intruders, delays the intrusion time, and does not threaten human life. Once someone intrudes, the system will start the alarm, the monitoring system will also monitor and send the intrusion signal to the security department monitoring equipment, so that the management personnel can timely understand the situation of the alarm area and quickly handle it.
[0003] With the development of network technology, identification technology, microelectronic technology, coding and decoding technology, operating system technology, embedded DVR will develop towards the direction of intelligence, integration, wireless, high definition, personalization and interactivity. With the development of chip technology, higher performance central processing unit makes DVR faster and more powerful. From the early CIF hard disk recorder, D1 hard disk recorder, 960H hard disk recorder, hybrid hard disk recorder and HD-SDI hard disk recorder. In addition, with the trend of high definition, the demand for storage is increasing, and the DVR hard disk management technology is also improving. Basically, DVR may support more hard disk interfaces, support RAID technology, support DAS, SAN, NAS and other storage technology compatibility. The compression technologies used by mainstream DVRs on the market include MPEG-4, H.264 and M-JPEG. MPEG-4 and H.264 are the most common compression methods in China, and H.264 has become the mainstream because it better meets the requirements of network transmission. In the future, in order to make embedded DVR have more extensive applicability, the unification of various algorithms will be the trend of future development, but this unification is not based on the standard of any domestic enterprise, but needs the wide participation of government functional departments and various enterprises in the DVR industry chain. For example, China has AVS compression algorithm with independent intellectual property rights, and H.265 compression algorithm, which has revolutionized in many ways compared to H.264. From a technical point of view, intelligence is an important development direction. Only through intelligent analysis technology can video information management be freed from tedious tasks. In fact, real-time monitoring, early warning, information processing, retrieval and other functions all require intelligent technology. Although it is difficult to completely realize intelligent analysis technology management in a short time, technology can achieve semi-automatic monitoring intelligence to some extent. In most cases, intelligent analysis technology can complete most of the work, and staff can focus on management and coordination, which is a good application way at this stage. The market demand for intelligence is strong. Many manufacturers have launched DVR with intelligent analysis technology. The best intelligent analysis technology now has no 100% accuracy, and technology needs to make great breakthroughs and progress to meet market applications. The Internet of Things monitoring device can monitor the environment, and the monitoring camera also has video call function, making its application field wider. The existing Internet of Things remote monitoring device has small angle adjustment range and poor adjustment rate. Due to the diversity and complexity of application occasions, stronger flexibility is required. Practical new type content
[0004] The utility model discloses a kind of Internet of Things remote monitoring devices, with the characteristics of flexible adjustment of large angle, automatically capture object, to solve the problems raised in the above background technology.
[0005] In order to solve the above technical problems, the utility model provides technical scheme as follows: A kind of internet of things remote monitoring device, including internet of things remote monitoring device bottom support seat and identifier, the internet of things remote monitoring device bottom support seat is the power supply equipment with multiple mechanical movement structure, the identifier is installed at the top of internet of things remote monitoring device bottom support seat, and there is electrical connection between internet of things remote monitoring device bottom support seat.
[0006] In use, the object personnel identification lens is captured by the motion capture lens on the object personnel identification lens, and the angle between the object personnel identification lens and the captured object is automatically and quickly adjusted by rotating the rotating mechanism, the adjusting mechanism and the internet of things remote monitoring device rotating structure according to the motion of the captured object to obtain the best identification effect.
[0007] Preferably, the internet of things remote monitoring device bottom support seat includes an internet of things remote monitoring device rotating structure, an internet of things remote monitoring device support frame, a rotating mechanism and a connecting rod. The lower half of the internet of things remote monitoring device rotating structure is provided with a counterweight motor, and the upper half is a circular table structure that can rotate at a uniform speed. The internet of things remote monitoring device support frame is a lightweight support rod structure arranged on the internet of things remote monitoring device rotating structure. The rotating mechanism is a small motor arranged on the top of the internet of things remote monitoring device support frame. The connecting rod is a short rotating shaft structure installed in a transverse manner on the side of the rotating mechanism and forms an electrical connection with the rotating mechanism.
[0008] The internet of things remote monitoring device bottom support seat can rotate as a whole by the self-rotation of the internet of things remote monitoring device rotating structure, which drives the components on the internet of things remote monitoring device bottom support seat to rotate.
[0009] Preferably, the identifier includes a screen body, a connecting groove, an operation button and an object personnel identification lens. The identifier is a tablet computer device with a rectangular recess on the top. The screen body is arranged on the front face. The connecting groove is arranged on the back of the identifier. The operation button is arranged on both sides of the recess above the screen body and is used to control the on-off, volume adjustment and brightness adjustment of the device, respectively. The object personnel identification lens is installed in the recess above the identifier.
[0010] Preferably, the object personnel identification lens includes a motion capture lens, a reinforcing lamp body and an adjusting mechanism. The object personnel identification lens is a long rectangular camera identification device. The motion capture lens is installed at the center of the front face. The reinforcing lamp body is an LED light bead arranged on both sides of the motion capture lens. The adjusting mechanism is arranged on the back of the object personnel identification lens and connected with the internal elements of the identifier, which can control the rotation of the object personnel identification lens.
[0011] The object personnel recognition lens is adjusted in angle by self-rotation and automatically lighted to adapt to the recognition and shooting requirements in different environments.
[0012] Preferably, the connecting groove and the connecting rod are combined and connected with each other.
[0013] The rotating mechanism can control the rotation of the whole recognizer through the connection between the connecting rod and the connecting groove.
[0014] Compared with the prior art, the utility model provides a kind of internet of things remote monitoring device, with following beneficial effects: the internet of things remote monitoring device has multiple motion joints, under the control operation of object personnel recognition lens and each motor, can complete the quick capture and automatic angle adjustment to the recognition object, with better intelligent automation work efficiency, can adapt to more complex diversified working environment of personnel. BRIEF DESCRIPTION OF DRAWINGS
[0015] Fig. 1 It is the three-dimensional schematic diagram of the front of the utility model structure;
[0016] Fig. 2 It is the three-dimensional schematic diagram of the back of the utility model structure;
[0017] Fig. 3 It is the three-dimensional schematic diagram of the bottom support seat of the internet of things remote monitoring device of the utility model structure.
[0018] Wherein: 1, the bottom support seat of internet of things remote monitoring device;101, the rotating structure of internet of things remote monitoring device;102, internet of things remote monitoring device support frame;103, rotating mechanism;104, connecting rod;2, recognizer;201, screen body;202, connecting groove;203, operation button;204, object personnel recognition lens;2041, motion capture lens;2042, reinforcing lamp body;2043, adjusting mechanism. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model, and apparently, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0020] Please refer to Figs. 1-3The utility model provides a technical scheme: a kind of internet of things remote monitoring device, including internet of things remote monitoring device bottom support seat 1 and identifier 2, internet of things remote monitoring device bottom support seat 1 is the power-on equipment with multiple mechanical movement structure, identifier 2 is installed at the top of internet of things remote monitoring device bottom support seat 1, there is electrical connection between with internet of things remote monitoring device bottom support seat 1.
[0021] In use, the object is captured by the motion capture lens 2041 on the object personnel identification lens 204, and the angle between the object personnel identification lens 204 and the captured object is automatically and quickly adjusted to obtain the best identification effect by rotating the adjusting mechanism 2043, the rotating mechanism 103 and the internet of things remote monitoring device rotating structure 101 according to the motion of the captured object.
[0022] In the embodiment, the internet of things remote monitoring device bottom support seat 1 includes the internet of things remote monitoring device rotating structure 101, the internet of things remote monitoring device support frame 102, the rotating mechanism 103 and the connecting rod 104. The lower half of the internet of things remote monitoring device rotating structure 101 is provided with a counterweight motor, and the upper half is a circular table structure that can rotate at a uniform speed. The internet of things remote monitoring device support frame 102 is a lightweight support rod structure arranged on the internet of things remote monitoring device rotating structure 101. The rotating mechanism 103 is a small motor arranged on the top of the internet of things remote monitoring device support frame 102. The connecting rod 104 is a short rotating shaft structure installed in a horizontal manner on the side of the rotating mechanism 103, and forms an electrical connection with the rotating mechanism 103.
[0023] Through the above technical solution, the internet of things remote monitoring device bottom support seat 1 can rotate as a whole by the self-rotation of the internet of things remote monitoring device rotating structure 101, and drive the components on the internet of things remote monitoring device bottom support seat 1 to rotate.
[0024] Specifically, the identifier 2 includes a screen body 201, a connecting groove 202, an operation button 203 and an object personnel identification lens 204. The identifier 2 is a tablet computer device with a rectangular recess on the top. The screen body 201 is arranged on the front, and the connecting groove 202 is arranged on the back of the identifier 2. The operation button 203 is arranged on both sides of the recess above the screen body 201, and is used to control the on-off, volume adjustment and brightness adjustment of the device, respectively. The object personnel identification lens 204 is installed in the recess above the identifier 2.
[0025] The embodiment two of the utility model discloses, specifically, object personnel recognition camera 204 includes motion capture camera 2041, reinforcing lamp body 2042 and adjusting mechanism 2043, object personnel recognition camera 204 is a long rectangular camera recognition equipment, motion capture camera 2041 is installed in the front center, reinforcing lamp body 2042 is LED light pearl, is set up in the both sides of motion capture camera 2041, adjusting mechanism 2043 is set up in the back of object personnel recognition camera 204, is connected with the internal element of recognizer 2, can control object personnel recognition camera 204 and rotate, through the above technical scheme, object personnel recognition camera 204 is through self-rotation adjustment angle and automatic light compensation to adapt to the recognition shooting requirement under different environments.
[0026] Specifically, the connecting groove 202 and the connecting rod 104 are connected with each other, and through the above technical scheme, the rotating mechanism 103 can control the rotation of the recognizer 2 as a whole through the connection between the connecting rod 104 and the connecting groove 202.
[0027] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. An IoT remote monitoring device comprising an IoT remote monitoring device bottom support base (1) and an identifier (2), characterized in that: The bottom support seat (1) of the Internet of Things remote monitoring device is an electrical connection device with multiple mechanical movement structures, the identifier (2) is installed on the top of the bottom support seat (1) of the Internet of Things remote monitoring device, and is electrically connected with the bottom support seat (1) of the Internet of Things remote monitoring device, the bottom support seat (1) of the Internet of Things remote monitoring device comprises a rotating structure (101) of the Internet of Things remote monitoring device, a support frame (102) of the Internet of Things remote monitoring device, a rotating mechanism (103) and a connecting rod (104), the lower half of the rotating structure (101) of the Internet of Things remote monitoring device is provided with a counterweight motor, and the upper half is a circular table structure that can rotate at a uniform speed, the support frame (102) of the Internet of Things remote monitoring device is a light support rod structure arranged on the rotating structure (101) of the Internet of Things remote monitoring device, the rotating mechanism (103) is a small motor arranged on the top of the support frame (102) of the Internet of Things remote monitoring device, and the connecting rod (104) is a short rotating shaft structure installed in a transverse form on the side of the rotating mechanism (103) and forms an electrical connection with the rotating mechanism (103), the identifier (2) comprises a screen body (201), a connecting groove (202), an operation button (203) and an object personnel identification lens (204), the identifier (2) is a flat computer device with a rectangular groove opened at the top, the screen body (201) is arranged on the front surface, and the connecting groove (202) is arranged on the back surface of the identifier (2).
2. The remote monitoring device of claim 1, wherein: The operation button (203) is arranged on the two sides of the groove above the screen body (201) and is used for controlling the on-off of the device, volume adjustment and brightness adjustment, respectively.
3. The remote monitoring device of claim 1, wherein: The object personnel identification lens (204) is installed in the groove above the identifier (2).
4. The remote monitoring device of claim 1, wherein: The object personnel identification lens (204) comprises a motion capture lens (2041), a reinforcing lamp body (2042) and an adjusting mechanism (2043), the object personnel identification lens (204) is a long rectangular camera identification device, and the motion capture lens (2041) is installed at the center of the front surface.
5. The IoT remote monitoring device of claim 4, wherein: The reinforcing lamp body (2042) is an LED light bead arranged on the two sides of the motion capture lens (2041).
6. The IoT remote monitoring device of claim 4, wherein: The adjusting mechanism (2043) is arranged on the back surface of the object personnel identification lens (204) and is connected with the internal elements of the identifier (2), so that the object personnel identification lens (204) can be controlled to rotate.
7. The remote monitoring device of claim 1, wherein: The connecting groove (202) and the connecting rod (104) are connected with each other.