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Polkadot引入了Parachain系统,以通过共享继电器链解决多链可伸缩性。它启用了跨区块链的并行处理
Bitcoin Solaris, a blockchain project aiming for high throughput and decentralization, claims to achieve 87% higher throughput than Polkadot’s parachain system in testing.
比特币Solaris是一个旨在高通量和权力下放化的区块链项目,声称比Polkadot的Parachain System在测试中取得了87%的吞吐量。
Instead of a shared relay chain, Bitcoin Solaris uses a decentralized validator node architecture with two independent layers, each performing its own consensus and validation. This allows for parallel transaction processing and faster finality.
比特币Solaris不是共享继电器链,而是使用具有两个独立层的分散验证器节点体系结构,每个层都执行自己的共识和验证。这允许并行交易处理和更快的限制。
Highlighting the difference in architecture and optimal operating conditions, Crypto Legends provides a deep dive comparing Polkadot’s parachain system with Bitcoin Solaris’s distributed validator design.
加密传说强调了体系结构和最佳操作条件的差异,可深入研究Polkadot的Polkadot的Parachain系统与比特币Solaris的分布式验证器设计。
A Centralized Point of Coordination vs. Decentralized Parallelism
协调与分散平行的集中点
Polkadot’s parachains operate through a central relay chain that coordinates transactions and block production across multiple chains. This model faces challenges with optimal validator density and the coordination overhead imposed by a single point of contention.
Polkadot的降落伞通过中央继电器链运行,该链会协调交易并阻止多个连锁店的产量。该模型面临着最佳验证器密度和由单个争论所施加的协调开销的挑战。
Bitcoin Solaris, on the other hand, uses two blockchain layers, each with its own validator set and consensus mechanism.
另一方面,比特币Solaris使用两个区块链图层,每个图层都有其自己的验证器集和共识机制。
This allows for parallel validation and scalability across layers, with no reliance on a central relay. There is no limit on validator engagement, and there are no slot auction systems imposing throughput ceilings at the chain level.
这允许跨层的并行验证和可伸缩性,而不依赖中央继电器。验证器参与没有限制,并且没有插槽拍卖系统在链级上施加吞吐天花板。
Measured Throughput: 87% Higher Than Polkadot
测量的吞吐量:比Polkadot高87%
Benchmark testing across distributed validator environments shows that Bitcoin Solaris achieves 87% higher throughput than Polkadot’s parachain system when measured under similar validator density.
跨分布式验证器环境进行的基准测试表明,在相似的验证器密度下测量时,比特币Solaris的吞吐量比Polkadot的Parachain系统高87%。
While Polkadot reaches approximately 6,000 TPS across active parachains, Bitcoin Solaris exceeds 10,000 TPS consistently, even during peak validator activity.
虽然Polkadot在活跃的降落伞上达到了大约6,000 TP,但即使在峰值验证器活动期间,比特币太阳能也始终超过10,000 tps。
This performance gain is due to real-time transaction ordering on the Solaris Layer and dynamic validator assignment that avoids global scheduling dependencies.
这种性能增益是由于Solaris层上的实时交易顺序以及避免全局调度依赖性的动态验证器分配。
Validation operates in parallel without a single bottleneck point, allowing for deterministic block finality without delay.
验证并行运行,没有一个瓶颈点,可以毫不延迟确定性块最终性。
How Validators Join and Decentralization Standards
验证者如何加入和权力下放标准
Bitcoin Solaris welcomes anyone meeting protocol-defined criteria to operate a validator node.
比特币Solaris欢迎任何符合协议定义标准的人操作验证器节点。
There are no auctions or bonding requirements outside of protocol parameters. Selection is according to stake, uptime history, and performance accuracy. It ensures that validators are both distributed and accountable.
在协议参数之外,没有拍卖或粘合要求。选择是根据股份,正常时间历史记录和性能准确性。它确保验证者既分发又负责。
This model ensures that the validator set can scale horizontally as participation grows, supporting real-time application traffic, mobile mining verification, and cross-layer asset transfers without risking validator centralization.
该模型确保验证器集可以随着参与的增长而水平扩展,支持实时应用程序流量,移动挖掘验证以及跨层资产转移,而无需冒险验证器集中式。
In a recent analysis, Crypto Legends highlighted the architectural divergence between Polkadot’s relay-based parachain system and Bitcoin Solaris’s distributed validator design.
在最近的分析中,加密传说强调了Polkadot基于接力的Parachain系统和比特币Solaris的分布式验证器设计之间的建筑差异。
The video covers the implications for optimal validator density, optimal operating conditions, and why Bitcoin Solaris may represent the next standard in high-throughput decentralized execution.
该视频涵盖了对最佳验证器密度,最佳操作条件的影响,以及为什么比特币Solaris可能代表高通量分散执行中的下一个标准。
Presale Phase 3: Entry Before Validator Network Expansion
预售阶段3:进入验证器网络扩展之前
Bitcoin Solaris is currently in Presale Phase 3, with BTC-S tokens priced at $3 USDT. This phase gives early users access before rolling out the full validator infrastructure and before centralized exchange listings commence.
比特币Solaris目前处于前3阶段,BTC-S代币的价格为3美元。此阶段使早期用户在推出完整的验证器基础架构之前和集中式交换列表开始之前访问。
The project has a fixed total supply of 21 million BTC-S and has allocated 4.2 million tokens (20%) to presale across phases. It does not permit any inflation or dynamic minting. On-chain minting and validator distribution govern all token emissions. Phase 3 provides an early entry opportunity for both users and infrastructure participants before validator onboarding drives wider network utilization.
该项目的固定总供应量为2100万BTC-S,并分配了420万个令牌(20%)以跨阶段预售。它不允许任何通货膨胀或动态铸造。链上铸造和验证器分布控制着所有令牌排放。第3阶段为用户和基础架构参与者提供了较早的入境机会,然后才能驾驶驱动更广泛的网络利用率。
Moreover, Bitcoin Solaris’s validator logic and full protocol stack have undergone complete external audits and public team verification by ChainMagic and solidity.center. These measures ensure that the decentralized validator model operates transparently, securely, and without off-chain dependencies, which is crucial for trustless performance at a global scale.
此外,比特币Solaris的验证器逻辑和完整的协议堆栈已通过Chainmagic and Solidity.Center进行了完整的外部审核和公共团队验证。这些措施确保分散的验证器模型可透明,安全地运行,并且没有链依赖性依赖性,这对于全球范围内无信任的绩效至关重要。
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