如何购买HYC币、如何购买HYC教程 答案:
1、通过交易平台购买Hycon
交易平台
BSC交易SwapETH交易SwapPolygon交易SwapAvax交易SwapSol交易SwapOKC交易Swap货币兑换PancakeSwap在银河系最受欢迎的去中心化平台上交易、赚取和赢得加密货币。
BiswapBiswap是市场上第一个拥有三类推荐系统和最低平台交易费用(0.1%)的去中心化交换平台。我们是一个在Binance智能链网络上交换BEP-20代币的去中心化交换平台。这个网络保证了卓越的速度和更低的网络交易成本
KyberSwap BSCKyberSwap BSC 去中心化交易平台
DappRadar-BSCBSC去中心化交易聚合平台
DODO Swap面向Web3的 去中心化交易协议
Kine ProtocolKINE提供了一个[点对点]的衍生品市场,由链上数字资产支持的流动性池作为交易所内所有交易者的被动对手方。
Matcha-Dex聚合交易 在 Ethereum、Binance、Polygon、Avalanche、Celo、Fantom 等平台上进行交易!Matcha 为您在交易所找到最优惠的价格,并将它们组合成一笔交易。
MDEX swapMDEX.COM 支持BSC、HECO及ETH的去中心化跨鏈交易協議,多次位列CoinMarketCap、CoinGecko的DEX排行榜第一。
MsgSenderMsgSender是采用Trustwallet内核的去中心化多链钱包.
Uniswap (V2)Uniswap是一个在以太坊上自动交换代币的协议。它于2018年11月2日推出。Uniswap将自己描述为一个简单的智能合约接口,用于交换ERC20代币。它有一个正式的模型来汇集流动性储备。它作为交易者和流动性提供者的开源前端接口,致力于提供免费和去中心化的资产交换。
Uniswap(V3)在领先的去中心化加密货币交易协议上进行交换、赚取和建立。
TornadoTornado Cash 通过打破源地址和目标地址之间的链上链接来提高交易隐私。它使用一个智能合约,接受可以通过不同地址提取的 ETH 存款。为了保护隐私,可以使用中继器提取到没有 ETH 余额的地址。每当新地址提取 ETH 时,都无法将提取与存款联系起来,从而确保完全隐私。
1inch Exchange1inch是一个DeFi聚合器和一个具有智能路由的去中心化交易所。
Curve Finance曲线的目的是利用先进的粘合曲线创造深层的链上流动性。
SushiswapSushiSwap是一个Uniswap分叉,它的理念是将权力从VC手中剥离,并将其归还给社区。
Balancer自动化的投资组合管理器和去中心化交易平台
BancorBancor去中心化的交易协议
KyberSwap ETHKyberSwap ETH 去中心化交易
Loopring swapLoopring swap 去中心化交易
DYDX期货交易所dYdX是一家领先的非托管去中心化交易所的开发商,其使命是建立开放、安全和强大的金融产品。dYdX在以太坊上的审计智能合约上运行,在交易时不需要信任中央交易所。该交易所结合了去中心化交易所的安全性和透明度,以及中心化交易所的速度和实用性。
DODO Swap面向Web3的 去中心化交易协议
DappRadar-ETHETH去中心化交易聚合平台
Kine ProtocolKINE提供了一个[点对点]的衍生品市场,由链上数字资产支持的流动性池作为交易所内所有交易者的被动对手方。
Matcha-Dex聚合交易 在 Ethereum、Binance、Polygon、Avalanche、Celo、Fantom 等平台上进行交易!Matcha 为您在交易所找到最优惠的价格,并将它们组合成一笔交易。
MDEX swapMDEX.COM 支持BSC、HECO及ETH的去中心化跨鏈交易協議,多次位列CoinMarketCap、CoinGecko的DEX排行榜第一。
TokenlonTokenlon是基于0x协议的去中心化交易服务平台
QuickSwapQuickSwap 是一个去中心化交易所 (DEX),如果你想交易 MATIC,你绝对应该使用它。 它是Polygon网络的典型交易所,具有更低的gas成本和更容易交易的优势。
SushiswapSushiSwap是一个Uniswap分叉,它的理念是将权力从VC手中剥离,并将其归还给社区。
KyberSwap PolygonKyberSwap Polygon 去中心化交易平台
DappRadar-PolygonPolygon去中心化交易聚合平台
ParaSwap-Polygon交易市场Polygon链上交易市场
DODO Swap面向Web3的 去中心化交易协议
Matcha-Dex聚合交易 在 Ethereum、Binance、Polygon、Avalanche、Celo、Fantom 等平台上进行交易!Matcha 为您在交易所找到最优惠的价格,并将它们组合成一笔交易。
TraderJoeTrader Joe是你在Avalanche网络上的一站式去中心化交易平台。
SushiswapSushiSwap是一个Uniswap分叉,它的理念是将权力从VC手中剥离,并将其归还给社区。
Hurricane swapAvalanche 上的第一个跨链流动性 DEX
KyberSwap AVAXKyberSwap AVAX 去中心化交易
Lydia Swap-AVAXLydiaSwap-AVAXLydiaSwap-AVAX
Pangolin-AVAX一个社区驱动的去中心化交易所,用于 Avalanche 和以太坊资产 快速结算 , 低交易费用 ,和 提供支持的民主分配 由 Avalanche 。 穿山甲带给你 寻找和最大化收益的最佳交易机会。
RaydiumRaydium AcceleRaytor是自动化做市商Raydium旗下的IDO平台。平台目前已经成功IDO项目7个,包括近期热门的链游StarAtlas也选择了在Raydium上进行IDO。
Serum Portal在世界上最快、最强大的去中心化交易所进行交易。
DODO Swap面向Web3的 去中心化交易协议
DappRadar-SolSol去中心化交易聚合平台
SaberSabre 是一个面向全球范围的开放式交易和流动性平台,Sabre是在 Solana 上交易资产的自动化做市商。
OrcaOrca是在Solana区块链上兑换加密货币的最简单的地方。在Orca上,你可以比以太坊上的任何DEX更便宜、更快速、更自信地交换代币(感谢我们的公平价格指标)。此外,你可以向交易池提供流动性,以赚取交易费。
SlopeSlope Finance是一个由社区驱动的全栈平台,由建立在Solana之上的DEX、钱包和NFT部门组成,为用户提供极快的速度、几乎为零的交易费用和直观的界面。我们的目标是打造一个
Jswap去中心化交易协议
Cherry Swap樱桃交换
KswapOKExChain生态去中心化交易所
Pexpay | 币安投资币安投资全球最安全的C2C交易平台
数字钱包
BSC钱包ETH钱包Polygon钱包Avax钱包Sol钱包OKC钱包钱包工具MetaMaskMetaMask是一款最流行的支持多链的浏览器插件钱包。它允许用户与以太坊生态系统进行交互,该生态系统承载着大量分散的应用程序 (Dapps),而无需在他们的设备上下载整个区块链。因此,它是最好的以太坊钱包解决方案之一,可轻松访问去中心化交易所 (DEX)、游戏平台和许多其他应用程序。目前已开发手机移动端产品。
WalletconnectWalletConnect 是一种开放协议,用于在 Dapp 和钱包之间安全地通信。该协议使用中继服务器在两个应用程序和/或设备之间建立远程配对以中继有效负载。这些有效载荷通过两个对等方之间的共享密钥对称加密。配对由显示二维码或带有标准 WalletConnect URI 的深层链接的一个对等方发起,并在对方批准此配对请求时建立。
imTokenimToken 是一款区块链支持多链的数字资产钱包。如以太坊、比特币、Cosmos 等,它能帮助非常简单、安全地管理在区块链上的账户和资产。此外,它还内置 Dapp 浏览器。
Trust walletTrust Wallet 是被全球最大加密资产交易所 Binance 收购的,去中心化移动钱包应用程序。Trust Wallet 钱包支持购买、存储数字货币,查看价格、交易等。 此外,它还是一个去中心化应用程序(dApp)浏览器,其内置的 dApp 浏览器可与 dApp 建立通信,因此用户可以直接在智能手机或平板电脑上交易加密货币和收藏品。
TokenPocketTokenPocket是多链数字钱包。
Mathwallet麦子钱包是一个多平台(移动/桌面/硬件)通用加密钱包。麦子钱包支持存储 50 多个区块链和 3000 多个代币。
Binance WalletBinance Wallet是Binance Chain、Binance Smart Chain和Ethereum的加密货币钱包。它是存储、交换和赚取加密货币的一站式网关。它支持Firefox、Chrome和Brave浏览器。
HyperPayHyperPay是一款四位一体数字资产钱包,创新性融合托管钱包、自管钱包、共管钱包、硬件钱包于一体。
MetaMaskMetaMask是一款最流行的支持多链的浏览器插件钱包。它允许用户与以太坊生态系统进行交互,该生态系统承载着大量分散的应用程序 (Dapps),而无需在他们的设备上下载整个区块链。因此,它是最好的以太坊钱包解决方案之一,可轻松访问去中心化交易所 (DEX)、游戏平台和许多其他应用程序。目前已开发手机移动端产品。
WalletconnectWalletConnect 是一种开放协议,用于在 Dapp 和钱包之间安全地通信。该协议使用中继服务器在两个应用程序和/或设备之间建立远程配对以中继有效负载。这些有效载荷通过两个对等方之间的共享密钥对称加密。配对由显示二维码或带有标准 WalletConnect URI 的深层链接的一个对等方发起,并在对方批准此配对请求时建立。
imTokenimToken 是一款区块链支持多链的数字资产钱包。如以太坊、比特币、Cosmos 等,它能帮助非常简单、安全地管理在区块链上的账户和资产。此外,它还内置 Dapp 浏览器。
TokenPocketTokenPocket是多链数字钱包。
Mathwallet麦子钱包是一个多平台(移动/桌面/硬件)通用加密钱包。麦子钱包支持存储 50 多个区块链和 3000 多个代币。
Binance WalletBinance Wallet是Binance Chain、Binance Smart Chain和Ethereum的加密货币钱包。它是存储、交换和赚取加密货币的一站式网关。它支持Firefox、Chrome和Brave浏览器。
HyperPayHyperPay是一款四位一体数字资产钱包,创新性融合托管钱包、自管钱包、共管钱包、硬件钱包于一体。
MyetherwalletMEW (MyEtherWallet) 是一个免费的客户端界面,可帮助您与以太坊区块链进行交互。我们易于使用的开源平台允许您生成钱包、与智能合约交互等等。
Portis人们期望通过简单而熟悉的方式来加载和使用应用程序。设置钱包、签署交易和支付 gas 费用对主流用户来说可能是令人生畏的。您的 Dapp(去中心化应用程序)使用标准的 web3.js 方法与 Portis SDK 通信,这意味着它将自动与您现有的代码一起工作。 用户无需提前安装任何东西即可使用您的 DApp。使用 Portis,您的 DApp 已经与解决方案捆绑在一起,为他们提供了一种感觉熟悉的简单的浏览器内电子邮件/密码登录方法。
RainbowRainbow 是一种创建以太坊钱包、收集 NFT 和探索 Web3 新世界的有趣、简单且安全的方式。
ArgentArgent 是基于以太坊的移动钱包,可帮助用户轻松管理加密资产和身份,没有助记词、gas 费用或长地址,具备简单、安全和完全分布式等特点。
Ethereum 以太坊钱包以太坊是社区运营的技术,为加密货币以太坊(ETH)和成千上万的去中心化应用程序提供动力。
CoinbaseCoinbase 钱包支持超过 4,000 种代币和整个世界的去中心化应用程序
MetaMaskMetaMask是一款最流行的支持多链的浏览器插件钱包。它允许用户与以太坊生态系统进行交互,该生态系统承载着大量分散的应用程序 (Dapps),而无需在他们的设备上下载整个区块链。因此,它是最好的以太坊钱包解决方案之一,可轻松访问去中心化交易所 (DEX)、游戏平台和许多其他应用程序。目前已开发手机移动端产品。
WalletconnectWalletConnect 是一种开放协议,用于在 Dapp 和钱包之间安全地通信。该协议使用中继服务器在两个应用程序和/或设备之间建立远程配对以中继有效负载。这些有效载荷通过两个对等方之间的共享密钥对称加密。配对由显示二维码或带有标准 WalletConnect URI 的深层链接的一个对等方发起,并在对方批准此配对请求时建立。
imTokenimToken 是一款区块链支持多链的数字资产钱包。如以太坊、比特币、Cosmos 等,它能帮助非常简单、安全地管理在区块链上的账户和资产。此外,它还内置 Dapp 浏览器。
TokenPocketTokenPocket是多链数字钱包。
Mathwallet麦子钱包是一个多平台(移动/桌面/硬件)通用加密钱包。麦子钱包支持存储 50 多个区块链和 3000 多个代币。
Portis人们期望通过简单而熟悉的方式来加载和使用应用程序。设置钱包、签署交易和支付 gas 费用对主流用户来说可能是令人生畏的。您的 Dapp(去中心化应用程序)使用标准的 web3.js 方法与 Portis SDK 通信,这意味着它将自动与您现有的代码一起工作。 用户无需提前安装任何东西即可使用您的 DApp。使用 Portis,您的 DApp 已经与解决方案捆绑在一起,为他们提供了一种感觉熟悉的简单的浏览器内电子邮件/密码登录方法。
Wallet-AVAX钱包Avalanche 钱包是一个简单、安全、非托管的钱包,用于存储 Avalanche 资产。
MetaMaskMetaMask是一款最流行的支持多链的浏览器插件钱包。它允许用户与以太坊生态系统进行交互,该生态系统承载着大量分散的应用程序 (Dapps),而无需在他们的设备上下载整个区块链。因此,它是最好的以太坊钱包解决方案之一,可轻松访问去中心化交易所 (DEX)、游戏平台和许多其他应用程序。目前已开发手机移动端产品。
WalletconnectWalletConnect 是一种开放协议,用于在 Dapp 和钱包之间安全地通信。该协议使用中继服务器在两个应用程序和/或设备之间建立远程配对以中继有效负载。这些有效载荷通过两个对等方之间的共享密钥对称加密。配对由显示二维码或带有标准 WalletConnect URI 的深层链接的一个对等方发起,并在对方批准此配对请求时建立。
imTokenimToken 是一款区块链支持多链的数字资产钱包。如以太坊、比特币、Cosmos 等,它能帮助非常简单、安全地管理在区块链上的账户和资产。此外,它还内置 Dapp 浏览器。
TokenPocketTokenPocket是多链数字钱包。
Mathwallet麦子钱包是一个多平台(移动/桌面/硬件)通用加密钱包。麦子钱包支持存储 50 多个区块链和 3000 多个代币。
MetaMaskMetaMask是一款最流行的支持多链的浏览器插件钱包。它允许用户与以太坊生态系统进行交互,该生态系统承载着大量分散的应用程序 (Dapps),而无需在他们的设备上下载整个区块链。因此,它是最好的以太坊钱包解决方案之一,可轻松访问去中心化交易所 (DEX)、游戏平台和许多其他应用程序。目前已开发手机移动端产品。
WalletconnectWalletConnect 是一种开放协议,用于在 Dapp 和钱包之间安全地通信。该协议使用中继服务器在两个应用程序和/或设备之间建立远程配对以中继有效负载。这些有效载荷通过两个对等方之间的共享密钥对称加密。配对由显示二维码或带有标准 WalletConnect URI 的深层链接的一个对等方发起,并在对方批准此配对请求时建立。
imTokenimToken 是一款区块链支持多链的数字资产钱包。如以太坊、比特币、Cosmos 等,它能帮助非常简单、安全地管理在区块链上的账户和资产。此外,它还内置 Dapp 浏览器。
TokenPocketTokenPocket是多链数字钱包。
Mathwallet麦子钱包是一个多平台(移动/桌面/硬件)通用加密钱包。麦子钱包支持存储 50 多个区块链和 3000 多个代币。
SlopeSlope Finance是一个由社区驱动的全栈平台,由建立在Solana之上的DEX、钱包和NFT部门组成,为用户提供极快的速度、几乎为零的交易费用和直观的界面。我们的目标是打造一个
PhantomPhantom 是用于访问部署在 Solana 区块链上的分布式应用程序的扩展。 该扩展程序将一个对象注入到每个网站的 javascript 上下文中,以便分散的应用程序可以与您的钱包进行交互,您也可以与应用程序进行交互。 Phantom 还允许用户创建和管理自己的身份(通过私钥、助记符和 Ledger 等硬件钱包),因此当去中心化应用程序想要执行交易并写入区块链时,用户可以获得一个安全界面来查看交易, 在批准或拒绝之前。 因为它为普通浏览器上下文添加了功能,所以 Phantom 需要读取和写入任何网页的权限。安全非常重视,Phantom 代码已经过顶级审计公司的审计。
MetaX数字货币钱包,DApp 入口,NFT 世界 —— 您想要的应有尽有
MetaMaskMetaMask是一款最流行的支持多链的浏览器插件钱包。它允许用户与以太坊生态系统进行交互,该生态系统承载着大量分散的应用程序 (Dapps),而无需在他们的设备上下载整个区块链。因此,它是最好的以太坊钱包解决方案之一,可轻松访问去中心化交易所 (DEX)、游戏平台和许多其他应用程序。目前已开发手机移动端产品。
WalletconnectWalletConnect 是一种开放协议,用于在 Dapp 和钱包之间安全地通信。该协议使用中继服务器在两个应用程序和/或设备之间建立远程配对以中继有效负载。这些有效载荷通过两个对等方之间的共享密钥对称加密。配对由显示二维码或带有标准 WalletConnect URI 的深层链接的一个对等方发起,并在对方批准此配对请求时建立。
科学家抢币利用科学工具快速抢币
智能全链导入钱包右上方点选Connect Wallet 之后,便可以直接将该网络汇入至你的metamask 钱包,一键添加全网智能链到小狐狸钱包,多功能添加工具。链表 帮助用户连接到 EVM 供电的网络 Chainlist 是 EVM 网络的列表。用户可以使用这些信息将他们的钱包和 Web3 中间件提供商连接到适当的链 ID 和网络 ID 以连接到正确的链。
GEMIT钱包检查的化工具,可帮助交易者做出有关他们所做投资的日常决策。 只需几个简单的步骤,您就可以快速获取有关您当前盈亏的信息,以及币安智能链上钱包中每个仓位的反射收益。
钱包多对多转账钱包多对多转账
代币批量归集代币批量归集工具
代币授权用于代币授权
Token 合约授权查询Token 合约授权查询
批量生产钱包批量生产钱包
批量查询余额用于批量查询钱包余额
批量发送代币用于批量发送代币
交易加速/取消 工具用于钱包Mtramask、WalletConnect 交易加速或取消。
Google Authenticator开启Google的登陆二步验证,用于加密账户登录安全
2、通过教程购买HYC
HYCON(Hyperconnected Coin)是基于Infinity项目团队开发的一款更快,更具可扩展性区块链的数字资产。它使用DAG(有向无环图)结构,能够同时发布多个块,并且能够解决冲突事务并通SPECTER一致性算法拒绝双重花费。
项目愿景
无限项目的愿景是提供一个便捷、安全、可扩展、以用户为中心的区块链,以及可被广泛采用的加密货币生态系统。结合 SPECTRE 协议和 Black2b 哈希算法,我们提出了一种既安全又方便的新型加密货币。
项目亮点
在无限项目的形成过程中,我们提出了下面两个关键问题:
鉴于现有加密货币的局限性,市场的需求是什么?我们怎样提供解决方案?
一种加密货币须具备哪些特性才能被广泛采用并融入到更为广泛的经济中?
考虑到这些问题,我们对现有的区块链进行了彻底分析——包括比特币、以太坊以及各种有前景的代币,揭示了每个项目的优势和弱点。然而很难找到一个能够回答我们最初提出的问题的项目。
因此,无限项目团队开始研究新的适合在现实世界中大规模采用的技术和算法,来帮助我们实现目标。与此同时,我们设计了无限项目的基本框架,并制定了以下 5 个核心目标:
1. 确定加密货币的实际市场需求
2. 开发一种灵活的加密货币
3. 建立以用户为中心的区块链平台
4. 建立可持续创新的生态系统
5. 研究去中心化加密货币交易所的实现办法
技术概况
创世区块
韩国标准时间2018年1月4日凌晨3:15 ( GMT+9 ) , HYCON 发布了创世区块 , 可以在GitHub(HYCON 存储库的一部分)上查看。
哈希算法
HYCON 采用 Blake2b 作为系统中唯一的哈希函数 ,而随着 ASIC 技术的最新发展【38】,Blake2b 逐渐被抗矿机(ASIC-resistant)的 Cryptonight算法所取代,Monero 也采用该算法。Cryptonight 算法工作时使用伪随机内存读写操作,故与标准ASIC 体系结构不兼容,却使得 CPU 与 GPU 的工作性能差别相对不那么明显。今后,为了防止采掘资源的中央化,计划遵循 Monero 设定的示例,并定期调整哈希算法,以在开采期间维持 ASIC 阻力。
共 识 机 制 ——SPECTRE协议
比特币的共识机制是中本协议 , 与之不同 , HYCON使用称作SPECTRE的协议作为共识机制。SPECTRE在两组块之间采用投票算法,以成对的方式对它们进行排序,如块x应在块y之前,或块y应在块x之前,使得区块链变为有向无环图(简称 DAG)的形式。
序列化-协议缓冲器
在区块链系统中,任意时刻都有任意数量的信息在网络上飞来飞去,重要的是节点软件能够以一致且正确的方式解码这些数据。由谷歌开发的协议缓冲器允许在不同的平台上使用一致的消息定义,从而允许使用各种编程语言来开发运行在无限区块链上的节点。由于序列化层与编程语言无关,所以对于跨平台的程序是非常有用的。协议缓冲器还允许向后和向前兼容,使得更新更容易产生软分支,而不是硬分支。它还使第三方软件更加兼容,允许其他开发人员与 HYCON 网络进行交互。
采矿
概述
和大多数现有加密货币相似,采矿出块需要提供工作量证明(PoW)。矿工根据 DAG 末端的哈希值计算下一个块的哈希值、块中所含交易的梅克尔树(Merkle)根,以及一个随机数, 该随机数在超过当前难度的哈希值被计算出来之前一直变化。SPECTRE的创始人认为使用该协议可以做到每秒产出 10 个块,而 HYCON 则以每秒 1 个块作为初始目标。虽然目前的原型采用了工作量证明,但是我们非常清楚比特币和以太坊所需的大量电力,所以正在考虑其他选择。其中一种不太为人知的方法是空间证明(Proof of Space)。它要求矿工预先计算并存储大量数据,然后在其中搜索找到满足当前难度的答案。这种方法使用很少的电力,且已被 Burst Coin 和 Space Mint证明有效。
采矿过程的细节
采矿开始时将对块头的内容进行编码和哈希计算,块头不会因为采矿而改变。这些内容包括与先行块的关联、块中所含交易的梅克尔树(Merkle)根、块的难度目标、块的时间戳,以及带有Trie 前缀的 MPT 树( Merkle Patricia Tree) 根 ,代表了该块中的交易结束后 的状 态。
钱包与账户
钱包图形用户界面(GUI)
运行 HYCON 软件的完整节点可以访问本地托管的网页图形用户界面(GUI)进行钱包操作 、交易,以及区块链的开采等。该图形用户界面使用 React 编写,支持轻量级的高性能接口。
HYCON 钱包
HYCON 钱包采用行业标准的椭圆曲线加密法进行交易签署 , 特别是 sep256k,并根据BIP39的规定使用恢复钱包的助记码,以方便集成第三方钱包供应商。根据BIPS32和44 的规定,还为 HD(分层确定性)钱包作出了规定。
HYCON 地址
HYCON 地址是从相关公钥的 32 字节 blake2b 散列中分片生成的 20 字节数组。对于人类可读性,地址输出为 base58 字符串,前缀为大写 H。字符串的最后 4 个字符用作地址的校验和。校验和分三步计算。首先,计算地址的 32 字节 blake2b 哈希。然后,这个哈希输出被编码为 base58 字符串。最后,这个字符串中的前 4 个字符被提取并附加到地址的字符串表示形式中。以这种方式使用校验和将意外使用错误输入地址的可能性降至最低。
HYCON 地址由 32 字节 Blake2b 解析的结果生成 20 字节。为了加毒地址的第一个文字是以大写H开始,Base 58 string的结果构成。string的最后四个字是地址的格子岛。格子岛算为三阶段。先计算地址的 32 字节 blake2b 海报价格后,结果以 Base 58 string 编码。最后还附上了带有 4 个字的地址。如果用这种方式使用格子岛,可最小化输入地址的可能性。
账户与余额
为了记录 HYCON 用户的支出与余额,需要用到一个会计模型。HYCON 采用的模型是基于以太坊所使用并在其黄皮书中描述的,一种叫做 Merkle-Patricia Trie(带 Trie 前缀的MPT(Merkle Patricia Tree))的数据结构。每个块都包含块中交易结束后的状态。用 MPT 树根的 blake2b 哈希值表示,代表了所有 HYCON 账户的账户数据。
保存的账户数据包括某个 HYCON 账户的余额 , 与该账户相关的最近块的关联信息 ,以及一个随机数,代表该账户发起了多少交易。随机数用于防范重放攻击(Replay Attack),而前块的关联信息其实是一种优化,使交易历史查询更快,也使 SPECTRE 更容易追踪双重支付问题。在会计模型中使用 blake2b 哈希,因为它允许处理大量交易和余额所需的合适的哈希。
相关链接:
https://www.qukuaiwang.com.cn/szhb/3052.html###
*以上内容由非小号官方整理如若转载请注明出处。
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WalletconnectWalletConnect is an open protocol for secure communication between Dapps and wallets. This protocol uses a relay server to establish a remote pairing between two applications and/or devices to relay payloads. These payloads are symmetrically encrypted using a shared key between the two peers. Pairing is initiated by a peer displaying a QR code or deep link with a standard WalletConnect URI, and is established when the peer approves the pairing request.
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2. Purchase HYC through tutorials< /p>
HYCON (Hyperconnected Coin) is a faster, more scalable digital asset based on the blockchain developed by the Infinity project team. It uses a DAG (directed acyclic graph) structure, is able to publish multiple blocks simultaneously, and is able to resolve conflicting transactions and reject double spends through the SPECTER consensus algorithm.
Project Vision
The vision of Infinite Project is to provide a convenient, secure, scalable, user-centered blockchain, and A cryptocurrency ecosystem that can be widely adopted. Combining the SPECTER protocol and the Black2b hashing algorithm, we propose a new cryptocurrency that is both secure and convenient.
Project Highlights
During the formation of the Infinite Project, we raised the following two key questions:
Given the existing encryption What are the limitations of currency and what is the market demand? How do we provide solutions?
What characteristics must a cryptocurrency possess in order to be widely adopted and integrated into the broader economy?
With these issues in mind, we conducted a thorough analysis of existing blockchains - including Bitcoin, Ethereum, and various promising coins, revealing the strengths and weaknesses of each project. Yet it was difficult to find a project that answered our original questions.
As a result, the Infinity Project team began researching new technologies and algorithms suitable for large-scale adoption in the real world to help us achieve our goals. At the same time, we designed the basic framework of the Infinity Project and formulated the following 5 core goals:
1. Determine the actual market demand for cryptocurrency
2. Develop a flexible cryptocurrency
3 . Establish a user-centered blockchain platform
4. Establish an ecosystem of sustainable innovation
5. Research the implementation of decentralized cryptocurrency exchanges
Technical Overview
Genesis Block
At 3:15 a.m. Korean Standard Time on January 4, 2018 (GMT+9), HYCON released the genesis block. View it on GitHub (part of the HYCON repository).
Hash Algorithm
HYCON uses Blake2b as the only hash function in the system. With the latest development of ASIC technology [38], Blake2b is gradually being used by anti-mining machines (ASIC-resis).tant)’s Cryptonight algorithm, which is also used by Monero. The Cryptonight algorithm uses pseudo-random memory read and write operations when working, so it is incompatible with standard ASIC architecture, but it makes the performance difference between CPU and GPU relatively less obvious. Going forward, to prevent the centralization of mining resources, the plan is to follow the example set by Monero and regularly adjust the hashing algorithm to maintain ASIC resistance during mining.
Consensus Mechanism - SPECTER Protocol
Bitcoin’s consensus mechanism is the Nakamoto Protocol. Unlike this, HYCON uses a protocol called SPECTER as the consensus mechanism. SPECTER uses a voting algorithm between two sets of blocks to order them in a pairwise manner, such that block x should come before block y, or block y should come before block x, making the blockchain a directed acyclic graph. (referred to as DAG).
Serialization - Protocol Buffer
In a blockchain system, there is any amount of information flying around the network at any time, and it is important that the node software can decode this data in a consistent and correct way . The Protocol Buffer, developed by Google, allows for consistent message definitions across different platforms, allowing a variety of programming languages to be used to develop nodes running on Infinity Blockchain. Since the serialization layer is independent of programming languages, it is very useful for cross-platform programs. Protocol buffers also allow backward and forward compatibility, making it easier for updates to produce soft branches rather than hard branches. It also makes third-party software more compatible, allowing other developers to interact with the HYCON network.
Mining
Overview
Similar to most existing cryptocurrencies, mining blocks requires proof of work (PoW). The miner calculates the hash of the next block based on the hash at the end of the DAG, the Merkle root of the transactions contained in the block, and a random number that is calculated after a hash exceeds the current difficulty It keeps changing until it comes out. The founder of SPECTER believes that using this protocol can produce 10 blocks per second, while HYCON has an initial goal of 1 block per second. While the current prototype uses proof-of-work, we are very aware of the large amounts of electricity required by Bitcoin and Ethereum, so other options are being considered. One of the lesser-known methods is Proof of Space. It requires miners to pre-compute and store large amounts of data, and then search within it to find answers that meet the current difficulty. This method uses very little electricity and has been proven effective by Burst Coin and Space Mint.
Details of the Mining Process
The contents of the block header will be encoded and hashed when mining begins, and the block header will not change due to mining. These include the association with the preceding block, the Merkle tree root of the transactions contained in the block, theThe difficulty target, the timestamp of the block, and the MPT tree (Merkle Patricia Tree) root with Trie prefix represent the state after the transaction in the block ends.
Wallets and Accounts
Wallet Graphical User Interface (GUI)
Full nodes running HYCON software can access the locally hosted web graphical user interface (GUI) for wallet operations, transactions, and blockchain mining, etc. . The graphical user interface is written in React and supports a lightweight, high-performance interface.
HYCON Wallet
HYCON Wallet uses industry-standard elliptic curve cryptography for transaction signing, specifically sep256k, and uses a recovery mnemonic code for the wallet in accordance with BIP39 to facilitate the integration of third-party wallet providers. Provisions have also been made for HD (Hierarchical Deterministic) wallets in compliance with BIPS32 and 44.
HYCON Address
HYCON Address is a 20-byte array generated from a 32-byte blake2b hash of the associated public key. For human readability, the address is output as a base58 string, prefixed with a capital H. The last 4 characters of the string are used as the checksum of the address. The checksum is calculated in three steps. First, a 32-byte blake2b hash of the address is calculated. This hash output is then encoded into a base58 string. Finally, the first 4 characters in this string are extracted and appended to the string representation of the address. Using checksums in this way minimizes the possibility of accidentally using an incorrectly entered address.
The HYCON address is 20 bytes generated from the 32-byte Blake2b parsed result. The first character of the poisoning address starts with a capital H and is formed from the result of a Base 58 string. The last four characters of the string are the lattice islands of the address. Grid Island counts as three stages. After first calculating the 32-byte blake2b poster price of the address, the result is encoded in a Base 58 string. Finally, a 4-word address is attached. If you use lattice islands in this way, you minimize the possibility of entering addresses.
Accounts and Balances
In order to record the expenditures and balances of HYCON users, an accounting model is needed. The model adopted by HYCON is based on a data structure called Merkle-Patricia Trie (MPT (Merkle Patricia Tree) with Trie prefix) used by Ethereum and described in its yellow paper. Each block contains the state after the transactions in the block have concluded. Represented by the blake2b hash of the MPT tree root, which represents the account data of all HYCON accounts.
The saved account data includes that of a HYCON accountbalance , associated information about the most recent block associated with the account, and a random number representing how many transactions the account has initiated. The random number is used to prevent replay attacks, and the associated information of the previous block is actually an optimization that makes transaction history query faster and makes it easier for SPECTER to track double payment problems. blake2b hashing is used in the accounting model as it allows suitable hashing required to handle large numbers of transactions and balances.
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