The Good Tech Companies - Educational Byte: What is DePIN in Crypto?
Episode Date: April 4, 2025This story was originally published on HackerNoon at: https://hackernoon.com/educational-byte-what-is-depin-in-crypto. Mix a crypto network with some physical set-up pro...vided by people globally, and you’ll likely have a DePIN. Let's discover more about it! Check more stories related to web3 at: https://hackernoon.com/c/web3. You can also check exclusive content about #depin, #what-is-depin, #depin-explained, #iot-applications, #iot-and-blockchain, #obyte, #components-of-a-depin, #good-company, and more. This story was written by: @obyte. Learn more about this writer by checking @obyte's about page, and for more stories, please visit hackernoon.com. “DePIN” is a relatively new one around. It means Decentralized Physical Infrastructure Network. It can be defined as a system that uses Distributed Ledger Technology (DLT) to gather and maintain real-world infrastructure.
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Educational byte. What is DEPIN in crypto? By obyte.
New terms and systems keep coming to the crypto world, and DEPIN is a relatively new one around.
It means decentralized physical infrastructure network, and it can be defined as a system that
uses distributed ledger technology, DLTT to gather and incentivize individuals to build and maintain real-world infrastructure,
like wireless networks, massive storage, or energy grids, without central control.
Or, in other words, mix a crypto network with some physical setup provided by people globally,
and you'll likely have a DEPIN. They can be more inclined toward physical services
or more toward digital services, but they always include a physical part. In this sense,
there are two main types of DEPIN, physical resource networks, PRNs, and digital resource
networks, DRNs. PRNs focus on real-world assets like hardware, energy, or mobility services,
requiring a fixed location.
DRNs, on the other hand, handle digital resources such as computing power or bandwidth,
which are flexible and not tied to a place, but that still require some kind of physical device.
Both models use token incentives to create decentralized networks for sharing resources
efficiently. Examples of PNRs include Helium,
which builds decentralized wireless networks,
HiveMapper, which crowd sources global mapping
using dashcam data, and WeatherXM,
where individuals deploy weather stations
to provide localized weather data in exchange for rewards.
In the DRN realm, we have Akash Network,
offering decentralized cloud computing,
Golem, which provides distributed
computing power, and Filecoin, which enables decentralized storage.
Components of a DEPIN. At its core, DEPIN relies on physical infrastructure,
which includes tangible assets like Internet of Things, IoT, devices, routers, sensors,
solar panels, and even satellites.
These resources are typically owned and operated by individuals or businesses that contribute
to the network in exchange for incentives.
The infrastructure plays a crucial role in providing services such as connectivity, data
collection, or energy distribution, forming the foundation of a DEPIN ecosystem.
To connect these physical assets with a decentralized ledger, a middleware layer is
required. This component ensures seamless communication between the hardware and the
crypto network. It functions similarly to decentralized oracles, gathering real-world
data and transmitting it on-chain for processing. Middleware enhances interoperability, allowing
different devices and systems to integrate smoothly within a DEPIN.
Once the data reaches the DLT, it's securely recorded, processed, and used for automating
transactions, managing demand, and ensuring fair distribution of services and rewards.
A well-functioning DEPIN also relies on governance and tokenomics.
Governance mechanisms, often
community-driven, ensure that decisions about the network development are made
collectively. Tokenomics, on the other hand, provides incentives for
participation by rewarding contributors with tokens. These tokens can be used for
transactions, staking, or governance, ensuring a self-sustaining ecosystem
where users and providers benefit from their contributions.
IoT and Obite
Obite offers a fully decentralized, censorship-resistant, and efficient framework that makes it well
suited as the foundation for a DEPIN system.
Unlike blockchains, which rely on block producers or validators, Obite's DAG-based architecture
eliminates the need for intermediaries. Transactions are added directly by users, ensuring there is no single point of control
that could be pressured to censor data or restrict participation.
Obyte can ensure that DIPIN participants remain autonomous
while benefiting from a transparent and tamper-resistant record of activity.
One of Obyte's advantages is its lightweight and energy-efficient design,
making it ideal for IoT-driven DEPIN networks.
IoT devices often operate with limited computing power and memory, and Obyte's structure allows these devices to interact with the network without requiring excessive resources.
The platform has already demonstrated its capabilities through proof-of-concept projects, including IoT-based payment systems,
smart energy trading, and autonomous machine transactions. Beyond censorship resistance
and efficiency, Obite's customized oracles, tokenization features, and autonomous agents,
AAs, provide a strong foundation for governing DEPIN interactions. Oracles can connect real-world
data to the ledger, and AAs can manage device authentication,
enforce service agreements, and facilitate fair payments in a trustless environment.
The platform has already enabled decentralized auctions, pay-per-use power tools, and secure
IoT transactions, demonstrating its ability to facilitate real-world economic interactions.
With its autonomy, resilience, and low operating
costs, Obite offers an ideal solution for D-PIN projects that require fast,
censorship-resistant, and cost-effective transactions among physical infrastructure
providers and users. Featured vector image by FreePic. Thank you for listening to this
Hacker Noon story, read by Artificial Intelligence. Visit hackernoon.com to read, write, learn and publish.