Energy Harvesting-Based and Internet of Things Coordinated Environmentally Friendly Wireless Access Point Method
Patent Information
- Application Number
- TR202615429
- Authority / Receiving Office
- TR · TR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2026-09-09
- Publication Date
- 2026-09-21
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Abstract
Description
1 TARIFF Energy Harvesting Based and Internet of Things Coordinated Eco-Friendly Wireless Access Point Method Technical Area The invention relates to wireless communication systems, energy harvesting technologies, 5 green networking, smart home / office infrastructures, and IoT (Internet of Things) energy. used in management fields, environmental energy sources (solar, vibration, temperature difference) etc.) with a wireless access point (Wi-Fi router) that operates by generating electricity, in the same environment Smart systems that manage the energy consumption and communication behavior of IoT devices. It relates to a method that creates a network node. 10 The invention is a self-sustaining energy harvesting router. not only that, but it also provides energy-conscious communication for the IoT devices around it. It functions as a coordination layer. State of the Art Today, existing Wi-Fi router solutions are constantly dependent on mains power and 15 Energy efficiency is generally only considered at the hardware level. In the market... The solar-powered or battery-powered router solutions available are mostly just power-based. generating alternatives to its source, adapting network behavior according to energy status. It does not offer architecture. On the other hand, devices included in smart home and IoT systems manage their own energy. It does this individually. Coordination between these devices depends on the energy status. Because they are not present, devices operating in the same environment will optimize total energy consumption. They are unable to act together in this way. In conclusion, even if current solutions utilize environmental energy, the grid behavior of this energy is not affected. and managed in an integrated manner with inter-device communication policies 25 It is unable to provide this. In conclusion, due to the negative aspects described above and the current solutions being the subject of discussion... Due to its shortcomings, an improvement is needed in the relevant technical field. It has been made. 2 Purpose of the Invention The invention was created by drawing inspiration from existing situations and overcoming the aforementioned drawbacks. It aims to solve the problem. The main purpose of the invention is to utilize the limited and variable amount of energy obtained through energy harvesting, both The router's own communication behavior as well as the communication of IoT devices around it. 5 The goal is to enable it to be used in a way that will have an impact on planning. This way, network traffic... Transmission power, sleep / active schedules, and data prioritization policies in real time. It is adjusted according to the energy status. The system is higher in situations of excess energy. It offers high-performance connection profiles while providing low power consumption when energy constraints occur. It automatically switches between operating modes. Additionally, the router monitors the power status of IoT devices. By sharing, we can create a more balanced and sustainable communication environment for the entire community. This approach creates an ecosystem. In the long run, it reduces total energy consumption. It increases connection continuity. The structural and characteristic features and all the advantages of the invention are given in the figures below. Thanks to the detailed explanation written with references to these figures, 15 This will be understood, and therefore the evaluation should also take these forms and detailed explanations into consideration. It needs to be done by taking precautions. Figures that will help understand the invention. Figure 1 is a representative drawing illustrating the elements of the method described in the invention. Description of Part References 20 1. Multi-source energy harvesting module 2. Energy storage and management unit 3. Energy-aware network control motor 4. IoT energy coordination interface 5. Dynamic transmission power and channel management module 25 6. Local AI-powered optimization module 7. User and administration interface 3 Detailed Description of the Invention In this detailed explanation, the preferred configurations of the method in question are described only. This is explained to facilitate a better understanding of the subject. The elements that enable the realization of the method described in the invention are: - multi-source energy harvesting module (1), 5 - energy storage and management unit (2), - energy-aware network control motor (3), - IoT energy coordination interface (4), - dynamic transmission power and channel management module (5), - local AI-powered optimization module (6) and, 10 - is the user and management interface (7). Multi-source energy harvesting module (1) collects energy from solar, vibration and temperature difference. The energy storage and management unit (2) is an element that stores the harvested energy and It is the element that manages the available power. The energy-aware network control engine (3), network It is the element that adjusts its parameters according to the current energy situation. IoT energy 15 Coordination interface (4), energy and communication status information with surrounding IoT devices It is the element that shares the dynamic transmission power and channel management module (5). and is the factor that regulates channel usage according to energy. Locally powered by artificial intelligence. The optimization module (6) learns energy production and consumption patterns and makes decisions. It is the element that improves. The user and management interface (7) shows the energy and network status 20 It is a visualization interface. The procedural steps of the method described in the invention are as follows: - initially, the multi-source energy harvesting module (1) from environmental sources (2) storage by, 25 - the energy storage and management unit, the instantaneous production amount, battery or supercapacitor level and estimated energy gain energy-aware grid transmitting to the control motor (3), - energy-aware network control motor, depending on the current energy status The number of channels (beacons) to be used on the Wi-Fi access point is 30. It determines broadcast frequency, connection hold times, and packet scheduling. 4 - simultaneously with the IoT energy coordination interface (4) surrounding IoT sharing power and connection status information with devices (Router, specific IoT devices may require longer sleep periods, less frequent data transmission, or (suggests alternative connection times) - dynamic transmission power and channel management module (5), in accordance with the specified policies 5 adjusting the output power and channel parameters accordingly, - local AI-powered optimization module (6), past energy harvest quantities, user traffic densities, and IoT device behaviors by learning, the most suitable energy network for future time periods Predicting its configuration. 10 Thus, the method in question, which is the subject of the invention, reduces not only its own energy consumption but also that of the environment in which it is located. energy-sensitive management of wireless communication behavior across the entire environment This reveals a central node. In a preferred configuration of the invention, via the user and management interface (7), Energy and network status can be visualized. 15
Claims
REQUESTS 1. Wireless communication systems, energy harvesting technologies, green grid, smart home / office environmental energy used in infrastructure and IoT energy management fields With a wireless access point that generates electricity from its sources, in the same environment 5 that manage the energy consumption and communication behavior of the IoT devices located there It is a method that creates an intelligent network node; its characteristic feature is: - multi-source energy harvesting module (1) electricity from environmental sources energy production and energy storage and management unit (2) storage by, - the energy storage and management unit, the instantaneous production amount, battery or 10 supercapacitor level and estimated energy gain energy-aware grid transmitting to the control motor (3), - energy-aware network control motor, depending on the current energy status The number of channels to be used on the Wi-Fi access point, the beacon signal. It determines broadcast frequency, connection hold times, and packet scheduling, 15 - simultaneously with the IoT energy coordination interface (4) surrounding IoT sharing power and connection status information with devices (Router, specific IoT devices may require longer sleep periods, less frequent data transmission, or (suggests alternative connection times) - dynamic transmission power and channel management module (5), in accordance with the specified policies 20 adjusting the output power and channel parameters accordingly, - local AI-powered optimization module (6), past energy harvest quantities, user traffic densities, and IoT device behaviors by learning, the most suitable energy network for future time periods Predicting its configuration. 25 It includes the steps of the process.
2. The method that complies with Request 1 is characterized by being accessible via the user and management interface (7), It is a visualization of energy and network status.