Security system to protect people from aggressive animal behavior
Patent Information
- Application Number
- DE202025104375
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2025-07-28
- Publication Date
- 2025-09-25
- Estimated Expiration
- 2035-07-31
Smart Images

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Abstract
Description
TECHNICAL FIELD
[0001] The present invention relates to security systems. More specifically, the present invention relates to a system for protecting people from aggressive animal behavior to prevent health problems and financial losses. BACKGROUND
[0002] Unexpected dog attacks on seniors, children, and women can lead to dangerous problems, as they can spread disease, cause accidents, or financial losses. Changes in animal behavior can cause accidents due to health conditions, external environmental parameters, etc. Sudden animal attacks on humans or similar events can result in serious financial losses in the form of health or property damage. There are no systems on the market that continuously analyze the condition of animals and naturally cool them to control their harmful behavior.
[0003] Therefore, there is a need for a security system to protect humans from aggressive animal behavior to avoid health problems and financial losses. The present invention effectively overcomes the above-mentioned problems, limitations, and disadvantages. OBJECT OF THE INVENTION
[0004] The main objective of the present invention is to provide a safety system to protect humans from animals to avoid health problems and accidents.
[0005] Another object of the present invention is to provide a real-time monitoring device for detecting aggressive behavior of street dogs to ensure the safety of people and vehicle drivers.
[0006] Another object of the present invention is to reduce the risk posed by stray dogs approaching vehicles while moving or people while walking by detecting signs of aggression early and warning people nearby.
[0007] Another object of the present invention is to provide a humane and non-invasive solution for controlling dog behavior that does not harm the dog or its environment.
[0008] Another aim of the present invention is to develop an affordable, lightweight and wearable AI-controlled belt that allows the dog to move smoothly.
[0009] Another object of the present invention is to integrate multiple sensors into a compact, energy-efficient design that operates continuously and enables continuous monitoring under various outdoor conditions.
[0010] These and other objects and advantages of the present invention will become apparent from the following detailed description taken in conjunction with the accompanying drawings. SUMMARY
[0011] The various embodiments of the present invention provide a security system for protecting humans from aggressive animal behavior to prevent accidents, animal attacks, and financial losses. The security system comprises a wearable belt worn around the neck by the animal. The animal can be a dog or the like. The wearable belt has several sensors that measure the wearer's heart rate and temperature using sensors in the shoulder and neck area. The MEMS microphone detects the dog's screams, barks, and howls to analyze its aggressiveness.
[0012] The AI module serves as a decision-making aid, analyzing the conditions based on the received parameters and executing operations in a predefined sequence. The vibration motor is located in the belt and generates vibrations on the dog's body to change the detected aggressive behavior / stage through vibration distraction. The display indicates the dog's status with a dangerous red or harmless green indicator.
[0013] The electromagnetic wave emitter module can be placed in vehicles, inside the human body, etc. It generates / transmits frequency waves to make the animal move or feel uncomfortable through counter-frequency. The Bluetooth low-energy module quickly connects the AI belt / module to the electromagnetic wave emitter module to protect humans when animal movements near the electromagnetic wave emitter module are detected.
[0014] The wearable belt has a power source, such as a battery, to power the wearable system. The wearable system can be attached to any part of the body of animals, birds, reptiles, etc. The wearable belt is made of elastic material and has a unique identification number for reliable detection of individual animal movements. The sensor can include one or more combinations of temperature sensors, pressure sensors, and the like. The MEMS microphone sends signals to the AI module to detect the aggressive stage or condition; the signals can also include sound signals. The electromagnetic wave emitting module responds to signals from the nearby movement of the AI belt / module and controls the animal attack by calculating parameters related to distance, aggressiveness, and animal species.
[0015] These and other aspects of the embodiments described herein will become more fully understood in conjunction with the following description and the accompanying drawings. While the following descriptions show preferred embodiments and numerous specific details, they are illustrative and not limiting. Numerous changes and modifications are possible within the scope of the embodiments described herein without departing from the spirit thereof, and the embodiments described herein are intended to include all such modifications. BRIEF DESCRIPTION OF THE DRAWING
[0016] The further objects, features and advantages will become apparent to those skilled in the art from the following description of the preferred embodiment and the accompanying drawings. In Fig. is a schematic representation of the security system for protecting people from animal attacks according to an embodiment of the present invention.
[0017] The specific features of the present invention are shown in some drawings but not in others. This is for convenience only, as each feature may be combined with all or some of the other features of the present invention. DETAILED DESCRIPTION
[0018] The various embodiments, as well as further developments and features, are explained in the following detailed description using non-limiting details. The depiction of processing techniques for known components is omitted in order not to unnecessarily obscure the embodiments described herein. The examples used herein are intended to facilitate understanding of the possible applications of the embodiments described herein and to enable those skilled in the art to practice the embodiments described herein. The examples should therefore not be construed as limiting the scope of application of the embodiments described herein.
[0019] The embodiment of the present invention relates to a safety system (10) for protecting humans from the aggressive behavior of animals in order to prevent accidents caused by animal attacks. The safety system comprises a wearable belt. The wearable belt is configured to be worn around the neck of the animal. The animal can be a dog or the like. The wearable belt (15) comprises a plurality of sensors, an AI module, a vibration motor, a display, and a MEMS microphone. The plurality of sensors detect the wearer's heart rate and temperature using sensors in the shoulder and neck areas.
[0020] The MEMS microphone (55) records the dog's cries, barks, and roars to analyze its aggression. The AI module acts as a decision-making subsystem, analyzing the conditions based on the received parameters and executing operations in a predefined sequence. The vibration motor (50) is located in the harness and transmits vibrations to the dog's body to modify the detected aggressive behavior / stage through vibration distraction. The display indicates the dog's status with a dangerous red or harmless green indicator.
[0021] Fig.schematically shows the security system for protecting people from animal attacks according to an embodiment of the present invention. The electromagnetic wave emitter module (25) can be placed in vehicles, inside the human body, etc. It generates / transmits frequency waves to move / disturb the animal through counter-frequency. The Bluetooth low-energy module (30) quickly connects the AI belt / AI module to the electromagnetic wave transmitter module and protects people when animal movements are detected in the immediate vicinity of the electromagnetic wave transmitter module.
[0022] The wearable belt has a water-repellent coating to prevent damage. The AI belt worn by the dog features sensors that measure blood pressure, respiratory rate, temperature, and sounds such as roaring, barking, and growling. Dogs exhibit traits such as raising their fur, growling, and barking to demonstrate superiority over their opponent in a decisive situation. The microphone (55) in the belt records the barking, roaring, and growling. Sensors such as the blood pressure monitor then monitor sudden increases in blood pressure, while the temperature sensor measures the dog's temperature.
[0023] The AI module (45) acts as a control unit, determining the current situation—for example, whether the dog is angry or simply relaxed—and sending this information to the electromagnetic wave transmitter. After receiving the signals from the AI dog harness, the electromagnetic wave transmitter (25) emits waves in a frequency range that does not harm either party. It also generates a slight vibration to disrupt the dog's concentration before attacking.
[0024] The wearable belt (15) has a power source, such as a battery, that supplies the wearable system with energy. The wearable system can be attached to any part of the body of animals, birds, reptiles, and the like. The wearable belt is made of elastic material and has a unique identification number for reliably detecting the movements of individual animals. The sensor can comprise one or more combinations of a temperature sensor, a pressure sensor, and the like.
[0025] The MEMS microphone (55) sends signals to the AI module to detect the aggressive state. These signals can also include audio signals. The electromagnetic wave emitter module responds to signals from the movement of the AI belt / module in the vicinity and controls the animal attack based on parameters related to distance, aggressiveness, and animal species.
[0026] The integration of the device with an AI module marks a change in the field of conventional security systems by making timely decisions to ward off dog attacks in vehicles and in open terrain. The AI system / module (45) serves as a decision-making authority and continuously analyzes the dog's parameters in the attack scenario to adapt and react in real time. This proactive security approach represents a significant advance. The data used by the AI system / module includes various parameters that are crucial to the dog's attack process.
[0027] Another key parameter considered in real-time analysis is distance. The AI module / system evaluates the distance between the straps to determine the proximity of the dog attack. This ensures that the safety mechanism is tailored to each dog's specific conditions and enables an individualized response for optimal safety. Dog behavior represents an additional layer of complexity integrated into the AI system's analysis. By evaluating dog behavior in different scenarios, the system can anticipate potential risks and adjust the vibration to distract the dog's concentration through the vibration motor. The AI module acts as a decision-making subsystem, analyzing the information to determine heart rate / blood pressure, temperature, and noise through the anti-dog attack system interface.The electromagnetic wave transmitter can be placed in the vehicle or in the human body.
[0028] The AI measures temperature, blood pressure / heart rate, and sounds to determine whether the dog is angry or not. If anger is confirmed, the transmitter emits electromagnetic waves in a safe frequency range, which is determined by distance calculation. The closer the distance, the higher the electromagnetic wave frequency (harmless to humans and dogs), which causes discomfort to the dog. The vibration motor begins to vibrate to disrupt the dog's concentration.
[0029] The sensor (35) enables precise real-time detection of the environment. The AI module serves as a decision-making system and analyzes the data. The electromagnetic wave transmitter attached to the vehicle is designed to cause discomfort to the dog without harming either the human or the dog. The display shows the dog's status based on the data collected by the AI. BLE (Bluetooth Low Energy) is used for quick connection between the AI belt and the electromagnetic wave transmitter. The ICS-40300 MEMS microphone is used to record the dog's growls, barks, and roars to confirm its anger. The lithium-ion battery is used to store and provide the input signals for the system.
[0030] The safety system (10) offers a practical solution for detecting and responding to aggressive behavior in stray dogs. The AMS AS7038RB sensor is integrated into the wearable dog harness to monitor heart rate and temperature and provide real-time data on these parameters. An AI module (45) processes data from various sensors and makes real-time decisions based on the dog's behavior to prevent attacks. Bluetooth Low Energy connects the harness to a mobile device or an electromagnetic wave transmitter, enabling fast communication with nearby vehicles. The electromagnetic wave transmitter (25) is installed in vehicles and, at the command of the AI module, emits electromagnetic waves at a safe frequency to cause mild discomfort to the dog and distract its attention without causing harm. The vibration motor integrated into the harness further distracts the dog from aggressive behavior.
[0031] The examples of the present invention described above are for illustrative purposes only. Although the present invention has been described using a specific example, numerous modifications are possible without materially departing from the teachings and advantages of the subject matter described herein. Other substitutions, modifications, and changes are possible without departing from the spirit of the present solution. All features and / or steps of the methods or processes described in this specification (including the appended claims, abstract, and drawings) and / or all steps of the methods or processes described therein may be combined in any way, except for combinations in which at least some of these features and / or steps are mutually exclusive.Although the embodiments described herein are described in terms of various specific embodiments, it will be obvious to those skilled in the art to practice the embodiments described herein with modifications. List of reference symbols: 10 Security system to protect people from animal attacks 15 Portable Belt 20 Power source 25 Module for generating electromagnetic waves 30 Bluetooth Low Energy module 35 Sensor 40 displays 45 AI module 50 vibration motor 55 MEMS microphone.
Claims
[1] A security system (10) for protecting humans from aggressive animal behaviour, comprising: a portable belt (15) which can be worn by the animal, for example a dog, worn around the neck, the wearable belt (15) comprising: a plurality of sensors (35) which detect the wearer's heart rate and temperature by means of sensors in the shoulder and neck area; a MEMS microphone (55) that records the dog’s screaming, barking and roaring to analyze its aggressiveness; an AI module (45) acting as a decision subsystem to analyze the conditions based on the received parameters and perform the operations in a predefined order; a vibration motor (50) positioned in the belt and Transmits vibrations to the dog's body to change the detected aggressive behavior / stage through vibration distraction; a display (40) that indicates the dog's status with a dangerous red or harmless green indicator. An electromagnetic wave emitter module (25) can be placed in vehicles, on the human body, etc., and generates / transmits frequency waves to agitate / discomfort the animal using counter-frequency; a Bluetooth low energy module (30) that quickly connects the AI belt / module to the electromagnetic wave emitter module to protect humans when animal movements near the electromagnetic wave emitter module are detected. [2] Security system according to claim 1, wherein the wearable belt comprises a power source, in particular a rechargeable battery, which supplies the wearable system with the necessary energy. [3] A security system according to claim 1, wherein the portable system (15) can be mounted over body parts of animals, birds, reptiles, etc. [4] A security system according to claim 1, wherein the wearable belt is made of elastic material and each belt has a unique identification number for reliably detecting the movement of individual animals. [5] A security system according to claim 1, wherein the sensor (35) may comprise one or more combinations of temperature sensor, pressure sensor and the like. [6] The security system of claim 1, wherein the MEMS microphone (55) sends signals to the AI module to detect the aggressive stage or condition, which signals may also include audio signals. [7] A security system according to claim 1, wherein the electromagnetic wave emitter module (25) responds to signals of movement of the AI belt / module in the vicinity to control the animal attack by calculating parameters related to distance, aggressiveness level and animal species.