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比特幣Solaris通過使用重複的子採樣投票來達成概率共識,提出了共識設計的突破。
Avalanche(s AVAX) has revolutionized blockchain technology with its groundbreaking contribution to consensus design. Its groundbreaking approach, which combines sub-sampled voting with a DAG (Directed Acyclic Graph) architecture, has unlocked new levels of throughput for blockchains.
Avalanche(S Avax)通過對共識設計的開創性貢獻徹底改變了區塊鏈技術。它的開創性方法將次採樣的投票與DAG(定向無環形圖)結構結合在一起,已解開了區塊鏈的新吞吐量。
However, while Avalanche’s innovation in achieving consensus with high throughput is undeniable, its model does come with trade-offs, especially in terms of fault tolerance, which becomes critical in adversarial conditions or periods of high validator churn.
但是,儘管不可否認的是,雪崩在達成高量吞吐量方面的創新是不可否認的,但它的模型確實與權衡相關,尤其是在容忍度方面,這在對抗性條件或高驗證器流動期的時期至關重要。
Bitcoin Solaris, a novel blockchain protocol currently in the final stages of its presale, addresses these limitations with a fundamentally different approach that leverages a Merkle-DAG structure to maintain complete order and optimal Byzantine Fault Tolerance (BFT) throughout its entire validator network.
比特幣Solaris是一種新型的區塊鏈協議,目前處於其預售的最後階段,它通過根本不同的方法來解決這些局限性,該方法利用了整個驗證器網絡,以利用默克爾 - DAG結構來維持完整的訂單和最佳的拜占庭式容錯(BFT)。
Instead of relying on repeated messages or randomized polling like Avalanche’s DAG, Bitcoin Solaris uses cryptographic linkages across state changes to enforce consistency, determinism, and conflict resolution without requiring any global coordination. This property is key to increasing throughput and finality speed, and it also improves resilience against long-range attacks and inconsistent state propagation—critical weaknesses of Avalanche’s design when applied to permissionless environments.
比特幣Solaris不依賴重複的消息或隨機輪詢(如Avalanche的DAG),而是使用跨州更改的加密聯繫來執行一致性,確定性和衝突解決方案,而無需任何全球協調。該屬性是提高吞吐量和最終速度的關鍵,它還提高了對遠程攻擊和不一致狀態傳播不一致的彈性 - 當應用於無許可環境時,雪崩設計的臨界弱點。
Merkle-DAG Integration Across the Dual-Layer Architecture
跨雙層體系結構的默克 - dag集成
The innovation lies in how the Merkle-DAG is implemented across Bitcoin Solaris’s dual-layer blockchain, where each layer maintains autonomy while contributing to network-wide consensus:
創新在於如何在比特幣Solaris的雙層區塊鏈中實現Merkle-DAG,在此,每一層都保持自主權,同時促進整個網絡範圍的共識:
Unlike Avalanche’s DAG-based consensus, where conflicting transactions may require multiple rounds of probabilistic resolution, Bitcoin Solaris’s Merkle-DAG model defines absolute order. This ensures state determinism even during validator faults or latency spikes—eliminating ambiguity and reorg risks.
與雪崩的基於DAG的共識不同,這種共識可能需要多輪概率分辨率,比特幣Solaris的Merkle-DAG模型定義了絕對順序。這也確保了國家的決定論,即使在驗證器斷層或延遲峰值期間,也可以利用歧義和重複風險。
Enhanced Byzantine Fault Tolerance Through Structural Verification
通過結構驗證增強拜占庭的容錯性
Avalanche’s consensus reaches finality when enough nodes probabilistically agree that a transaction is accepted. However, this model becomes vulnerable when validator identities change frequently or malicious participants intentionally delay propagation. Bitcoin Solaris resolves this by embedding Merkle-root checkpoints directly into block headers, providing cryptographic proof of network-wide state without repeated polling.
當足夠的節點概率地同意接受交易被接受時,雪崩的共識即將達到最終狀態。但是,當驗證者身份經常變化或惡意參與者故意延遲傳播時,該模型就會變得脆弱。比特幣Solaris通過將Merkle-Root檢查站直接嵌入塊標頭中來解決此問題,從而在不重複進行輪詢的情況下提供了網絡範圍內的加密證明。
This structure supports stronger BFT by making it computationally infeasible for a faulty subset of validators to rewrite history or produce inconsistent forks. Validators reach consensus by verifying Merkle proofs and synchronized time stamps, not by polling neighbors repeatedly—a model that lowers latency and increases resistance to asynchronous faults.
該結構通過使驗證器的故障子集重寫歷史或產生不一致的叉子來支持更強的BFT。驗證者通過驗證默克爾的證明和同步時間戳,而不是通過反復對鄰居進行輪詢,該模型降低了潛伏期並增加了對異步斷層的抵抗力,從而達成共識。
This architecture maintains fault tolerance even when up to one-third of nodes behave maliciously while reducing coordination load and improving validator independence—two areas where Avalanche’s design introduces complexity.
即使多達三分之一的節點表現得很惡意,同時減少協調負載並改善了驗證器獨立性,該架構仍保持容忍度。
Crypto Royal breaks down how Bitcoin Solaris’s Merkle-DAG architecture improves upon Avalanche’s probabilistic model in a detailed comparison. The video highlights fault tolerance thresholds, validator independence, and the system’s ability to maintain consensus under pressure.
Crypto Ryare分解了比特幣Solaris的Merkle-Dag架構如何在詳細的比較中對Avalanche的概率模型進行改進。該視頻突出顯示了容錯閾值,驗證器獨立性以及系統在壓力下保持共識的能力。
Presale Phase 3: Structured Entry Ahead of Infrastructure Expansion
前3階段:在基礎設施擴展之前的結構化進入
Bitcoin Solaris is currently in Presale Phase 3, with BTC-S tokens priced at $3 USDT. This phase offers access ahead of Merkle-DAG protocol activation across the full validator network before centralized exchange listings.
比特幣Solaris目前處於前3階段,BTC-S代幣的價格為3美元。此階段在集中式交換列表之前,在整個驗證器網絡上激活Merkle-DAG協議之前提供了訪問。
The BTC-S supply is fixed at 21 million tokens, with 4.2 million (20%) allocated for presale across all phases. There is no inflation, and token emissions are tied directly to protocol-defined mining and validator participation. This structure rewards early participants before infrastructure scaling increases demand and network complexity.
BTC-S供應固定為2100萬個令牌,在所有階段分配了420萬(20%)。沒有通貨膨脹,令牌排放直接與協議定義的採礦和驗證者參與有關。這種結構在基礎架構擴展之前獎勵早期參與者會增加需求和網絡複雜性。
Third-Party Audits Reinforce Merkle-DAG Security
第三方審核加強了默克爾 - dag安全性
Bitcoin Solaris has undergone full protocol audits to validate its unique structural approach:
比特幣Solaris進行了完整的協議審核,以驗證其獨特的結構方法:
These audits validate that the Merkle-DAG implementation not only meets performance targets but also enforces Byzantine resilience and verifiable state propagation under real-world conditions.
這些審計驗證了默克爾 - dag實施不僅符合績效目標,而且還達到了現實情況下拜占庭式的彈性和可驗證的狀態傳播。
Avalanche’s DAG model showed that blockchain consensus could scale — but Bitcoin Solaris proves it can scale deterministically and securely. By embedding the Merkle-DAG structure across a layered validator system, it solves key limitations in BFT enforcement and state finality. As Phase 3 of the presale continues and Merkle-DAG logic expands across the protocol, Bitcoin Solaris is setting a new standard in consensus precision, resilience, and architectural clarity.
Avalanche的DAG模型表明,區塊鏈共識可以擴展 - 但比特幣Solaris證明它可以確定性地擴展。通過嵌入分層驗證器系統的Merkle-DAG結構,它解決了BFT執行和狀態終止的關鍵局限性。隨著預售的第3階段繼續進行,Merkle-Dag邏輯在整個協議中擴展,比特幣Solaris正在為共識精度,彈性和建築清晰度設定新的標準。
Website: https://bitcoinsolaris.com/
網站:https://bitcoinsolaris.com/
X: https://x.com/BitcoinSolaris
X:https://x.com/bitcoinsolaris
Telegram: https://t.me/Bitcoinsolaris
電報:https://t.me/bitcoinsolaris
Disclaimer: This is a sponsored article, and views in it do not represent those of, nor should they be attributed to, ZyCrypto. Readers should conduct independent research before taking any actions related to the company, product, or project mentioned in this piece; nor can this article be regarded as investment advice. Please be aware that trading cryptocurrencies involves substantial risk as the volatility of the crypto market can lead to significant losses.
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