Restaking: A New Growth Driver for the DeFi Ecosystem

HTX Learn發佈於 2024-09-19更新於 2026-06-29

文章摘要

Ethereum staking involves committing your Ether to the network to enhance its security and earn additional ETH rewards in return. This mechanism is designed to enhance Ethereum's network security, but it also has certain risks and limitations. First, staked ETH is locked up for a period of time and cannot be traded freely, which limits liquidity.

I. Background on Staking and Liquid Staking

Ethereum staking involves committing your Ether to the network to enhance its security and earn additional ETH rewards in return. This mechanism is designed to enhance Ethereum's network security, but it also has certain risks and limitations. First, staked ETH is locked up for a period of time and cannot be traded freely, which limits liquidity. Stakers are unable to withdraw or sell their ETH quickly, which may also lead to a shortage of asset liquidity. Second, stakers may face penalties from the network for improper validation activities. Moreover, becoming a validator on the Ethereum network has a high threshold, as individuals must stake a minimum of 32 ETH. This threshold can be a huge barrier for many ordinary investors.

To lower the barriers to entry in the staking market and mitigate risks related to limited liquidity, platforms such as ConsenSys and Ledger have started offering pooled staking services. These platforms enable users to combine their ETH to meet the minimum staking requirements, making it possible for ordinary investors to participate in staking. However, even with pooled staking, the staked ETH remains locked and cannot be withdrawn immediately, and the liquidity problem persists in this case.

To address this issue, liquid staking was introduced. Liquid staking allows users to stay active in market activities, such as DeFi, by minting liquid tokens as a substitute for their staked ETH. Lido is a pioneer in liquid staking, followed by platforms like Rocket and Stader that have launched similar services. These services not only lower the entry barriers for staking but also offer greater flexibility to stakers. With liquid tokens, investors can both earn staking rewards and use the tokens for other investment strategies, potentially achieving higher returns.

Difference Between Staking and Liquid Staking

In traditional staking, users cannot access their staked ETH until the lock-up period ends. Liquid staking, on the other hand, allows users to receive liquid tokens that represent their staked ETH. These tokens can be freely traded on the market. This innovation enhances fund liquidity and offers investors diversified income opportunities. With liquid staking, investors can earn staking rewards and also boost their returns by utilizing these tokens on DeFi platforms.

II. The Emergence of Restaking

Restaking, a novel concept introduced by EigenLayer, allows staked ETH to be used to secure other modules that are not directly tied to the Ethereum mainnet, such as sidechains, oracles, and data availability layers. These modules often require Active Verification Services (AVS), which rely on their own tokens and face high costs and trust issues in building a secure network independently. Restaking enhances the security of these modules by utilizing Ethereum's extensive validator network, thereby reducing the costs associated with building separate security networks.

The core advantage of restaking is its ability to channel the security provided by Ethereum's validators to other chains and applications, making it much more costly to attack these modules compared to the potential gains. As a result, this mechanism enables restaking networks to protect critical modules in other blockchain ecosystems by sharing Ethereum's security.

Although EigenLayer was the first protocol to introduce the concept of restaking, other protocols have emerged as the field evolves. These different restaking protocols differ in their implementation approaches and the types of assets they support, creating a competitive and diverse market landscape.

The EigenLayer whitepaper elaborates on the concept of "pooled security" in restaking. This approach means that when multiple validators participate in the same network through restaking, attackers must incur higher costs to compromise the network. While this design enhances module security, there is a risk of validator collusion. If multiple modules share the same staked assets, collusion among validators could lead to simultaneous threats to several networks. To mitigate this risk, EigenLayer proposes limiting the amount of assets each validator can restake.

III. Overview of Restaking Protocols

1. Supported Deposit Assets

One of the primary distinctions between restaking protocols lies in the types of deposit assets they support. Currently, EigenLayer exclusively supports ETH and ETH Liquid Staking Tokens (LSTs), while Karak and Symbiotic accommodate a broader range of assets. Karak accepts several asset types, including LRTs, Pendle LP tokens, and stablecoins. Symbiotic further includes asset types such as ENA and sUSDE.

This diversity of asset types is vital for the appeal and growth of restaking protocols. By supporting a wider array of asset types, these protocols can attract more liquidity and user participation, particularly in multi-chain ecosystems. EigenLayer also plans to expand its asset support in the future by introducing more dual-staking and LP restaking options.

2. Security Model

EigenLayer adopts a more conservative approach to security design, focusing primarily on ETH and its variants to maintain network security and economic stability. In contrast, Karak and Symbiotic provide a wider selection of restaking asset options, allowing for increased flexibility and customizable security solutions.

In designing the security model for a restaking protocol, it is crucial to balance flexibility and security. By centering on ETH and related assets, EigenLayer minimizes the volatility risks associated with lower market cap tokens. On the other hand, Karak and Symbiotic offer adjustable security features tailored to specific needs, that allow users to select their desired level of economic security.

Both EigenLayer and Karak employ upgradeable core smart contracts, with multi-signature management systems controlling different parts of the infrastructure, ensuring decentralized governance. Symbiotic, however, utilizes an immutable contract design that reduces governance risks but requires redeployment if vulnerabilities or errors in the contract code are discovered.

3. Supported Chains and Partnerships

The scope of chain support is a core competency of restaking protocols. EigenLayer and Symbiotic currently focus on the Ethereum ecosystem, while Karak has expanded its support to five blockchains. Despite most of the Total Value Locked (TVL) being concentrated on Ethereum, Karak's multi-chain support enables it to attract more assets from non-Ethereum chains to participate in restaking.

Additionally, Karak has launched a Layer 2 network, K2, which serves as a testing environment for its decentralized staking solution (DSS), enabling upgrades and tests before deployment on Ethereum. EigenLayer and Symbiotic lack similar test environments but allow for protocol testing through integration with other chains.

Ultimately, the success of a protocol depends on the partnerships it can establish. As a trailblazer in the restaking sector, EigenLayer has attracted the most AVS participation, boasting prominent partners like EigenDA, AltLayer, and Hyperlane. Meanwhile, Karak and Symbiotic have also gradually expanded their partnerships, integrating projects such as Wormhole and Ethena.

IV. Overview of Liquid Restaking

1. Types of Liquid Restaking Tokens (LRTs)

In liquid restaking protocols, users can deposit their staked assets to receive corresponding liquid restaking tokens (LRTs). LRTs enhance capital efficiency for stakers by providing higher capital utilization. This allows stakers to participate in more DeFi activities without having to unlock their staked assets. For example, the Renzo protocol supports wBETH deposits and issues corresponding ezETH tokens, while Kelp supports ETHx and sfrxETH deposits and issues rsETH tokens. Each of these tokens represents different types of staked assets and further optimizes capital efficiency within the DeFi ecosystem.

Some protocols aggregate multiple LSTs into a single LRT, providing greater flexibility. While this multi-asset-backed LRT enhances capital utilization, it also introduces increased management complexity and potential counterparty risk. For example, protocols like Puffer, which natively support stETH, ultimately convert it into native ETH for restaking, thus minimizing dependence on LST protocols and reducing risk exposure.

The variety of LRT tokens not only diversifies the options available to users but also complicates integration between protocols. Effective management and utilization of these tokens require a careful balance between security and flexibility.

2. Support for DeFi and Layer 2

A major advantage of liquid restaking protocols is their ability to enhance capital efficiency. These protocols allow staked assets to earn rewards through restaking and generate additional returns within the DeFi ecosystem. Platforms like Pendle feature yield trading mechanisms that enable users to leverage their staked assets and earn additional rewards in liquid staking. By providing liquidity to Pendle, stakers can earn rewards prior to maturity while mitigating the risk of impermanent loss.

Furthermore, liquid restaking protocols are deeply integrated with DEXs like Curve and Uniswap, ensuring liquidity for LRT tokens and enabling stakers to quickly exit their staked assets when necessary. Meanwhile, some protocols have designed vaults with various yield strategies, including cyclic restaking and options, further increasing stakers' returns.

With the rapid advancement of Layer 2 solutions, liquid restaking protocols are increasingly supporting Layer 2 networks, providing users with lower gas fees and faster transaction speeds. Although most liquidity and trading volume remain concentrated on the Ethereum mainnet, it is expected that more users will choose to stake and restake on Layer 2 in the future to achieve higher capital efficiency.

3. Support for Restaking Protocols

Liquid restaking protocols were initially built on EigenLayer, a pioneer in this sector and one of the first to offer restaking services. With the gradual introduction of Karak and Symbiotic, liquid restaking protocols have expanded to more platforms and integrated with multiple protocols. Karak enables users to deposit LRTs directly on its platform for restaking, while Symbiotic restricts the use of LRTs, requiring users to stake through alternative channels.

Eigenlayer's recent airdrop event has sparked controversy, as some users have expressed dissatisfaction with the airdrop rules. Consequently, these users have begun withdrawing their assets and turning to other protocols in search of better returns and airdrop opportunities. Symbiotic, thanks to its flexible restaking mechanism, has emerged as a strong alternative. Despite a deposit cap of $200 million, its collaborations with multiple protocols position it to attract more users in the future.

Overall, competition among liquid restaking protocols is expected to intensify over time. Protocols that offer higher capital efficiency and greater flexibility are likely to capture a larger share of the market.

V. Growth and Future Prospects of Restaking

Since the end of 2023, the growth rate of restaking deposits has accelerated significantly. Recent data shows that the ratio of liquid restaking (TVL in liquid restaking to TVL in restaking) has surpassed 70%, with a monthly growth of around 5% to 10% over the past few months. This indicates that a large portion of restaking liquidity is conducted through liquid restaking protocols, making liquid restaking a major growth engine in the restaking category.

However, despite the overall upward trend, recent withdrawal events at Eigenlayer and Pendle in late June 2024 have revealed market volatility. Following Eigenlayer's airdrop event, the outflow of deposits exceeded 40%. This suggests that, while airdrop incentives may attract short-term speculators, they can impact long-term capital retention. Therefore, protocols need to attract and retain users through long-term incentive mechanisms and stable yield models.

Looking ahead, the rise of emerging agreements such as Karak and Symbiotic could further intensify market competition. Karak has already attracted a portion of the market share with its support for multi-asset restaking, while Symbiotic, with its collaboration with other protocols and the use of decentralized validator networks (DVNs), has also provided users with new restaking options.

VI. Summary

As of July 2024, nearly 33 million ETH were staked, and approximately 13.4 million ETH (about $46 billion) were staked via liquid staking platforms, representing 40.5% of the total staked ETH. This proportion indicates that liquid staking has become a key component of the Ethereum staking ecosystem. However, due to Eigenlayer's increased support for native ETH deposits and the deposit caps on LSTs, this proportion has recently declined slightly.

In the future, as restaking platforms offer more deposit options, lift deposit caps, and expand into other asset classes, the restaking market is expected to grow further. In particular, liquid restaking protocols are expected to capture a larger market share. While the allure of airdrop rewards may cause some short-term liquidity to flow out, the restaking ecosystem is expected to thrive in the long run through collaborations with major DeFi protocols and platforms, thereby improving capital efficiency for users.

In the entire restaking industry, protocols such as Eigenlayer, Karak, and Symbiotic are leading the development of new security models and liquidity solutions. The rise of restaking not only bolsters the security of staking but also improves liquidity and capital efficiency across various assets in the decentralized finance ecosystem. As restaking protocols evolve, we have seen a series of new innovations and applications, which expand the functionality of the Ethereum ecosystem and present users with greater investment opportunities.

Restaking, as an innovative mechanism, effectively harnesses the security of the Ethereum network to bolster other blockchain modules and protocols. It fortifies network security and introduces new economic incentives. The successful implementation and widespread adoption of protocols such as Eigenlayer, Karak, and Symbiotic indicate that restaking will become an indispensable part of the blockchain ecosystem.

However, this field still faces challenges. For example, issues of security and compliance in restaking protocols, as well as the impact of market volatility on liquidity and capital efficiency, are critical aspects that require continuous monitoring. Looking ahead, as technology evolves and the market matures, it is expected that restaking protocols will further refine their models and address these challenges through more effective mechanisms.

1. Impact of Policies and Regulations

As the markets for restaking and liquid restaking grow, regulatory authorities may increase their scrutiny and regulation of these emerging sectors. A critical challenge for policymakers and regulators will be finding a balance between promoting innovation and ensuring market stability. Ensuring transparency, fairness, and protecting investor interests will be key to the industry's development.

2. User Education and Risk Management

In the realm of restaking, user education and risk management are equally important. Users need to understand how different protocols work, as well as the associated risks and benefits, to make informed investment decisions. In addition, how to effectively manage liquidity risk, market risk, and operational risk will directly affect users' returns and the long-term stability of the protocols.

VII. Conclusion

The rapid development of the restaking industry has brought new growth opportunities to the Ethereum ecosystem and the broader blockchain market. With the emergence of more restaking protocols and liquid restaking solutions, users will benefit from enhanced capital efficiency and flexibility, while also promoting the further development of DeFi. Despite facing challenges, innovation and the ongoing optimization of protocols will drive continuous progress in this sector.

Overall, restaking and liquid restaking, as new growth drivers in the Ethereum ecosystem, not only provide new earning opportunities for stakers but also drive the evolution of blockchain technology. As the market matures and technology advances, the restaking industry is expected to expand its applications and generate greater value in the future.

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什麼是 ETH 2.0

什麼是 ETH 3.0

ETH3.0 與 $eth 3.0:以深入分析以太坊的未來 介紹 在快速發展的加密貨幣和區塊鏈技術領域,ETH3.0,通常標記為 $eth 3.0,已成為一個備受關注和猜測的話題。該術語包含兩個主要概念,值得說明: 以太坊 3.0:這代表潛在的未來升級,旨在增強現有的以太坊區塊鏈的能力,特別集中於提高可擴展性和性能。ETH3.0 表情符號代幣:這個獨特的加密貨幣項目旨在利用以太坊區塊鏈創建一個以表情符號為中心的生態系統,促進加密貨幣社區的參與。 理解這些 ETH3.0 的方面不僅對加密愛好者至關重要,也對觀察數字空間中的更廣泛技術趨勢的人有所幫助。 什麼是 ETH3.0? 以太坊 3.0 以太坊 3.0 被認為是對已建立的以太坊網絡的擬議升級,自其誕生以來,它一直是許多去中心化應用程式(dApps)和智能合約的支柱。預想的增強主要集中於可擴展性——整合先進技術,如分片和零知識證明(zk-proofs)。這些技術創新旨在促進每秒交易數量的前所未有(TPS),潛在地達到數百萬筆,從而解決當前區塊鏈技術面臨的最重大限制之一。 這次改進不僅是技術性的,更是戰略性的;它旨在為以太坊網絡的普遍採用和未來的實用性做準備,因為該未來將面臨對去中心化解決方案日益增長的需求。 ETH3.0 表情符號代幣 與以太坊 3.0 不同,ETH3.0 表情符號代幣進入了一個更輕鬆和更具玩樂性的領域,通過將互聯網表情符號文化與加密貨幣動態相結合。該項目使用戶能夠在以太坊區塊鏈上購買、出售和交易表情符號,提供一個促進社區通過創造力和共同利益參與的平台。 ETH3.0 表情符號代幣旨在展示區塊鏈技術如何與數字文化交匯,創造出既有趣又具有經濟價值的使用案例。 誰是 ETH3.0 的創造者? 以太坊 3.0 對以太坊 3.0 的倡議主要由以太坊社區內的一個開發者和研究人員的聯盟推動,特別是包括 Justin Drake。他因對以太坊演變的見解和貢獻而聞名,Drake 在關於將以太坊轉變為新共識層的討論中是一個重要人物,這被稱為「Beam Chain」。 這種協作開發的方式標誌著以太坊 3.0 不是單一創造者的產品,而是集中精力促進區塊鏈技術進步的集體智慧的體現。 ETH3.0 表情符號代幣 關於 ETH3.0 表情符號代幣的創造者的詳細資料目前無法追溯。表情符號代幣的特性通常導致更分散和社區驅動的結構,這可以解釋為什麼缺乏具體的歸屬感。這與更廣泛的加密社區的精神相符,該社區的創新往往源於協作而非個人努力。 誰是 ETH3.0 的投資者? 以太坊 3.0 對以太坊 3.0 的支持主要來自以太坊基金會以及一個充滿熱情的開發者和投資者社區。這種基礎聯繫提供了相當程度的合法性,並增強了成功落實的前景,因為它利用了多年網絡運營建立的信任和可信度。 在快速變化的加密貨幣氣候中,社區支持在推動開發和採用中發揮了關鍵作用,將以太坊 3.0 置於未來區塊鏈進步的重要競爭者地位。 ETH3.0 表情符號代幣 雖然目前可用的來源並沒有明確提供支持 ETH3.0 表情符號代幣的投資機構或組織的具體信息,但這反映出表情符號代幣典型的資金模型,通常依賴於基層支持和社區參與。此類項目的投資者通常由因社區驅動的創新潛力以及在加密社區中發現的合作精神而受到激勵的個人組成。 ETH3.0 如何運作? 以太坊 3.0 以太坊 3.0 的區別特點在於其擬議的分片和零知識證明技術的實施。分片是一種將區塊鏈劃分為更小、更易管理的單元或「分片」的方法,這些分片能夠同時處理交易,而不是按序處理。這種處理的去中心化有助於避免擁堵,並確保即使在高負載下,網絡也能保持響應。 零知識證明(zk-proof)技術通過允許交易驗證而不揭示涉及的基本數據,增加了一層複雜性。這一方面不僅增強了隱私性,還提高了整個網絡的效率。還有討論將零知識以太坊虛擬機(zkEVM)納入此次升級,進一步擴大網絡的能力和實用性。 ETH3.0 表情符號代幣 ETH3.0 表情符號代幣通過利用表情符號文化的受歡迎程度而脫穎而出。它建立了一個市場,讓用戶參與表情符號交易,不僅僅是為了娛樂,也是為了潛在的經濟利益。通過整合質押、流動性供應和治理機制等特性,該項目營造了一種促進社區互動和參與的環境。 通過提供娛樂和經濟機會的獨特結合,ETH3.0 表情符號代幣旨在吸引多樣的觀眾,範圍從加密愛好者到隨便的表情符號愛好者。 ETH3.0 的時間表 以太坊 3.0 2024年11月11日:Justin Drake 暗示即將到來的 ETH 3.0 升級,重點是可擴展性改進。這一公告標誌著關於以太坊未來架構正式討論的開始。2024年11月12日:預期中的以太坊 3.0 提案將在曼谷的 Devcon 上公佈,為更廣泛的社區反饋和潛在的開發後續步驟奠定基礎。 ETH3.0 表情符號代幣 2024年3月21日:ETH3.0 表情符號代幣正式在 CoinMarketCap 上列出,標誌著其進入公眾加密領域,並增強了其基於表情符號的生態系統的可見性。 關鍵要點 總之,以太坊 3.0 代表了以太坊網絡內的重要演變,集中於通過先進技術克服可擴展性和性能的限制。其擬議的升級反映出對未來需求和可用性的主動應對。 另一方面,ETH3.0 表情符號代幣 encapsulates 加密貨幣領域中以社區為驅動文化的本質,利用表情符號文化來創建鼓勵用戶創造力和參與的平台。 理解 ETH3.0 和 $eth 3.0 的不同目的和功能對於任何對加密領域中正在進行的發展感興趣的人來說都是至關重要的。隨著這兩個倡議鋪展獨特的道路,它們共同凸顯了區塊鏈創新動態和多樣化的本質。

190 人學過發佈於 2024.04.04更新於 2024.12.03

什麼是 ETH 3.0

如何購買ETH

歡迎來到HTX.com!在這裡,購買Ethereum (ETH)變得簡單而便捷。跟隨我們的逐步指南,放心開始您的加密貨幣之旅。第一步:創建您的HTX帳戶使用您的 Email、手機號碼在HTX註冊一個免費帳戶。體驗無憂的註冊過程並解鎖所有平台功能。立即註冊第二步:前往買幣頁面,選擇您的支付方式信用卡/金融卡購買:使用您的Visa或Mastercard即時購買Ethereum (ETH)。餘額購買:使用您HTX帳戶餘額中的資金進行無縫交易。第三方購買:探索諸如Google Pay或Apple Pay等流行支付方式以增加便利性。C2C購買:在HTX平台上直接與其他用戶交易。HTX 場外交易 (OTC) 購買:為大量交易者提供個性化服務和競爭性匯率。第三步:存儲您的Ethereum (ETH)購買Ethereum (ETH)後,將其存儲在您的HTX帳戶中。您也可以透過區塊鏈轉帳將其發送到其他地址或者用於交易其他加密貨幣。第四步:交易Ethereum (ETH)在HTX的現貨市場輕鬆交易Ethereum (ETH)。前往您的帳戶,選擇交易對,執行交易,並即時監控。HTX為初學者和經驗豐富的交易者提供了友好的用戶體驗。

4.2k 人學過發佈於 2024.12.10更新於 2026.06.02

如何購買ETH

相關討論

歡迎來到 HTX 社群。在這裡,您可以了解最新的平台發展動態並獲得專業的市場意見。 以下是用戶對 ETH (ETH)幣價的意見。

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