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Kaspa最新价格_KAS币今日行情_KAS币价格历史走势图

KaspaLOGO
KAS【Kaspa】 NO.34
$ 0.15180 -$0.00067
+1.95 % %
0.12255051745177 24H最高
0.11511344176216 24H最低
0.20754794622992 历史最高
0.00016988222001318 历史最低
1322812552.95 24H成交量
154901349.95 24H成交额
153.8亿 总量
2974661687.7863 市值
6.46% 24H波幅
25392334524.501 流通数量
0.12186810746888 昨开
0.11815536438828 昨收
88.46 % 流通率
  • KAS币介绍

Kaspa is a proof-of-work cryptocurrency which implements the GHOSTDAG protocol. Unlike traditional blockchains, GHOSTDAG does not orphan blocks created in parallel, rather allows them to coexist and orders them in consensus. Whereby our blockchain is actually a blockDAG; you can see GHOSTDAG in action in a real time blockDAG visualizer). This generalization of Nakamoto consensus allows for secure operation while maintaining very high block rates (currently one block per second, aiming for 10/sec, dreaming of 100/sec) and minuscule confirmation times dominated by internet latency (cf. chapter 6 of the the paper for some initial benchmarks). The Kaspa implementation includes a lot of cool features and subprotocols including Reachability to query the DAG's topology, Block data pruning (with near-future plans for block header pruning), SPV proofs, and later subnetwork support which will make future implementation of layer 2 solutions much easier.

Kaspa is a proof-of-work cryptocurrency which implements the GHOSTDAG protocol. Unlike traditional blockchains, GHOSTDAG does not orphan blocks created in parallel, rather allows them to coexist and orders them in consensus. Whereby our blockchain is actually a blockDAG; you can see GHOSTDAG in action in a real time blockDAG visualizer). This generalization of Nakamoto consensus allows for secure operation while maintaining very high block rates (currently one block per second, aiming for 10/sec, dreaming of 100/sec) and minuscule confirmation times dominated by internet latency (cf. chapter 6 of the the paper for some initial benchmarks). The Kaspa implementation includes a lot of cool features and subprotocols including Reachability to query the DAG's topology, Block data pruning (with near-future plans for block header pruning), SPV proofs, and later subnetwork support which will make future implementation of layer 2 solutions much easier.