官方文档 · v3.1

EnteleKRON 官方白皮书

EnteleKRON 白皮书阐述项目愿景、主权架构、由 Ethereum 保障安全的汇总方案方向、ENK 代币背景、原生生态模块、治理原则、安全模型及路线图。

版本
v3.1
最后更新
2026-09-23

Official interactive edition

ENTELΞKRON Whitepaper v3.1 · ZH

Language switching keeps you inside this Whitepaper on EnteleKRON.io. Only currently enabled, content-safe locales are selectable.

PDF 版本发布后,将通过 EnteleKRON.org 官方白皮书页面提供。
文档透明度
官方文档
v3.1公共架构与生态愿景官方来源:ENTELΞKRON

EnteleKRON 官方白皮书

了解 ENK 背后的主权架构

EnteleKRON 白皮书阐述项目愿景、主权架构、由 Ethereum 保障安全的汇总方案方向、ENK 代币背景、原生生态模块、治理原则、安全模型及路线图。

在线阅读

PDF 版本发布后,将通过 EnteleKRON.org 官方白皮书页面提供。

官方网站

主权自主的设计

EnteleKRON 旨在掌控其生态方向、链身份、协议模块、钱包体验、浏览器可见性、治理路线图和长期独立路径。

现实可行的链方向

首个现实可行的技术方向是采用 OP Stack rollup 路径、由 Ethereum 提供安全保障且兼容 EVM 的生态链,并须经过开发、测试、安全审查和正式上线批准。

原生生态模块

白皮书涵盖 ChronoSeal、TVK ID、SOVRA 结算凭证、EnergieMIND 锚定、EnteleWALLET、EnteleSCAN 以及未来的金融网络。

投资者背景

白皮书说明 ENK 代币背景、分配流程分离、未来链规划、风险因素及以合规为导向的项目开发。

EnteleKRON 白皮书仅用于提供项目、技术、生态系统和路线图信息,不构成投资、金融或法律建议,也不保证任何回报。参与任何 ENK 代币销售、分配或控制台流程,均须符合资格要求并获得批准,同时受 KYC/AML 检查、司法辖区限制、官方条款、归属与释放计划、项目风险因素和适用法律约束。

未来的 EnteleKRON Chain、testnet、mainnet、跨链桥和生态基础设施均须经过开发、测试、安全审查、法律审查和正式上线批准。

官方文档

交互式系统模型

探索核心架构、安全、经济与投资者流程模型。动态效果仅作为渐进增强,并会自动遵循减少动态效果的无障碍偏好。

1Layer 1

Users & Applications

Investor portal · ecosystem apps · institutional interfaces

2Layer 2

Access & Trust

EnteleWALLET · TVK ID · KYC/AML · authorization

3Layer 3

Native Modules

ChronoSeal · SOVRA · EnergieMIND · EnteleLEDGER · EnteleLINK

4Layer 4

ENTELΞKRON Chain

EVM-compatible OP Stack L2 · controlled sequencing

5Layer 5

Ethereum Settlement

Settlement security · fault proofs · canonical bridge

Figure 1 — Sovereign architecture flow. Trust and application requests move from user-facing access controls through native protocol modules to the planned ENTELΞKRON L2 and Ethereum settlement layer.
01
Event / request
02
Identity & eligibility
03
Policy / KYC gate
04
Module execution
05
Proof / receipt
06
Audit & explorer
Figure 2 — Controlled trust flow. Sensitive identity data remains off-chain; proofs, status, receipts and audit references can be anchored or exposed according to the applicable module and authorization policy.

Proof & Trust

ChronoSeal · GraphVAULT · EnteleSCAN

Identity & Access

TVK ID · EnteleWALLET · Q-Presence

Intelligence

SOVRA · ALVINA · multilingual intelligence

Sovereign core

ENTELΞKRON

Protocol coordination

Energy

EnergieMIND · energy proofs · asset data

Ledger & Interop

EnteleLEDGER · EnteleLINK · ISO middleware

Security

EnteleVAULT · EnteleCLOS · controlled key boundaries

Figure 5 — Canonical module topology. Modules remain independently staged and auditable; inclusion in the ecosystem does not imply production-live status.

Ecosystem utility

ENK

Coordination and utility token. Separate supply, allocations and lifecycle.

Financial Mesh

PaymentsCustodyTreasuryTokenizationMarkets

Each regulated activity remains jurisdiction-, entity-, security- and activation-gated.

Planned settlement instrument

TVKUSD

EnteleMINT issuance/redemption controls + EnteleTREASURY reserve and safeguarding controls.

Control boundary: TVKUSD reserves, customer assets, corporate treasury, ENK ecosystem treasury and settlement liquidity remain separate legal/accounting books.
Figure 6 — Financial Mesh separation model. ENK and planned TVKUSD are distinct instruments; future financial services require their applicable activation gates.
PLANNED CONTROL ARCHITECTURE — not an issued stablecoin or live regulated service.

TVKUSD

planned

Planned settlement instrument

EnteleMINT

planned

Planned issuance control plane

EnteleTREASURY

planned

Planned treasury control plane

EntelePAY

planned

Planned payment infrastructure

EnteleEXCHANGE

planned

Planned exchange infrastructure

1. Eligibility / source-of-funds controls2. Reserve confirmation + authorized issuance3. Reconciliation / settlement controls4. Redemption + burn + reserve release
Figure 16 — Planned TVKUSD control lifecycle. Module names, roles and statuses are sourced from the canonical ecosystem registry; activation remains subject to issuer, reserve, safeguarding, legal, security and jurisdiction gates.
SOVRA
Signals / requests
Reasoning & anomaly assessment
Evidence / AI receipt
Human or policy gate
EnergieMIND
Device / asset data
Off-chain processing
Hash / proof anchor
Analytics / audit
Figure 7 — Intelligence and energy evidence lanes. Raw AI and sensor data can remain off-chain while controlled receipts, hashes and proofs support auditability. SOVRA recommendations do not replace required human, legal or financial authority.
01

主权架构

以分层方式展示协议、智能、身份、结算与基础设施层面。

02

信任与数据流

展示已验证信息如何穿过身份、政策、证明、结算与审计层。

03

生态模块网络

展示原生模块以及它们进行协调所使用的受控接口的互联模型。

04

ENK 经济流

连接代币效用、参与、生态访问与受控分配流程的可视化模型。

05

分配结构

按比例展示 ENK 分配类别,以及将销售、生态与长期储备相互隔离的控制机制。

06

销售生命周期

从受控轮次,经公开预售分段,到售后控制的分阶段参与生命周期。

07

投资者旅程

从申请与资格审查,经 KYC/AML、分配与付款验证,直至归属的状态化路径。

08

KYC / AML 关口

将资格、身份、制裁与合规决策明确表示为审批关口,而不是隐藏步骤。

09

安全与信任

覆盖钱包验证、访问控制、合规关口与透明度控制的纵深防御模型。

10

金库与透明度

将已发布的验证数据、受控金库操作与敏感密钥材料分离的可追踪模型。

11

SOVRA 智能

协调 AI 服务、诊断、自动化以及感知结算状态工作流的主权智能层。

12

EnergieMIND 循环

连接能源数据、智能、基础设施决策与生态协调的反馈模型。

13

身份与信任图谱

通过 TVK ID 与主权验证工作流连接的凭证、证明与声明。

14

链演进

从 Ethereum 可见的 ENK 基础设施迈向逐步独立生态能力的受控成熟路径。

15

治理控制

用于将信号表达与授权执行分离的决策、金库、升级和法律关口。

16

交付路线图

将产品、安全、法律、基础设施与生态交付里程碑表示为就绪关口。

17

风险矩阵

对技术、市场、监管、执行、托管与生态依赖关系的结构化展示。

定义

EnteleKRON 是一个主权型人工智能、金融与基础设施协议层,旨在通过由 Ethereum 提供安全保障的生态链,连接数字资产、身份、能源智能、人工智能系统和结算流程。

核心原则

EnteleKRON 的设计追求主权自主,而非封闭孤立。

01

Account

02

Application

03

Eligibility

04

KYC / AML

05

Allocation

06

Payment instruction

07

Wallet verification

08

Vesting / delivery

Figure 3 — Investor control journey. Application, identity, allocation and payment authorization are distinct states; payment instructions are issued only through authenticated official surfaces.
I1

Account

Authenticated investor identity

I2

Eligibility

Jurisdiction + participation checks

I3

KYC / AML

Identity, sanctions and required due diligence

I4

Allocation

Approved amount and binding terms

I5

Payment access

Official enabled rail instructions

I6

Delivery

Verification, vesting and distribution controls

Privacy boundary: identity documents and sensitive PII remain in authorized off-chain verification systems. Blockchain records should contain only the minimum proofs, references or state required by the applicable workflow.
Figure 17 — Identity and participation gate architecture. TVK ID is the planned sovereign identity direction; current investor KYC/AML remains a controlled verification workflow and must not be represented as an on-chain PII store.

EnteleWALLET

in progress

Wallet & access infrastructure

TVK Wallet

in progress

White-label wallet infrastructure

Shared trust core

TVK Wallet Architecture

identity · policy · signing · evidence

EnteleAGENT Wallet

in progress

Autonomous-agent wallet & authority control

EnteleROBOT Wallet

in progress

Robot wallet & fleet authority control

Human: EnteleWALLET — user-controlled identity, permissions and assets.
Agent: EnteleAGENT — software/runtime identity and bounded delegated economic authority.
Robot: EnteleROBOT — hardware/firmware attestation, fleet authority, safety policy and quarantine.
Figure 18 — Wallet family and shared trust architecture. EnteleAGENT and EnteleROBOT are specialized TVK Wallet products, not skins of the human wallet. Registration or machine identity does not itself grant unrestricted spending or signing authority.
1

Public verification

Official domains · explorer · Transparency Center

2

Authenticated investor plane

Session · application · KYC status · controlled payment instructions

3

Administrative control plane

Role separation · review queues · audit records

4

Key / treasury boundary

Multisig · signer policy · sensitive keys never public

Enabled Stage-4 rail→Scoped receiving wallet→Authenticated instruction→On-chain verification
Figure 8 — Security and transparency zones. Public verification is intentionally separated from authenticated investor operations, administration and sensitive key-management boundaries.
01

Select participation

02

Eligibility / KYC

03

Choose supported stablecoin rail

04

Server-issued destination (release-gated)

Presale receiving addresses are intentionally not published in public documentation. The private order ledger and server-side issuance architecture are deployed, but real fund collection remains release-gated. Payment instructions are issued only after the operational, compliance, settlement-verification and security gates pass; no historical shared address is a valid new-order instruction.
Figure 14 — Controlled settlement flow. The currently supported rails are BTC on Bitcoin, native ETH on Ethereum, SOL on Solana, XRP on XRP Ledger, TRX on TRON, SUI on Sui, USDC on Ethereum, USDC on Base and USDT on Ethereum; receiving destinations remain behind the authenticated approval boundary and are not published in the whitepaper.

ENK

Coordination & utility

01Ecosystem access
02Infrastructure utility
03Future validation / staking
04Governance signaling
05Identity / attestations
06AI intelligence services
07Energy coordination
Figure 13 — ENK utility map. Utility activation remains conditional on module readiness, security review, published terms and applicable law; the map does not represent guaranteed value, yield, listing or liquidity.

第 4 阶段 — 公开预售(6 个部分)

第 1 阶段 — 早期投资者轮

已结束
预售价格
US$0.008 ENK
最低配额
US$10,000
奖励代币
5% ENK
UTC
2026年7月1日 – 2026年7月29日

第 2 阶段 — 生态访问轮

已结束
预售价格
US$0.010 ENK
最低配额
US$5,000
奖励代币
3% ENK
UTC
2026年7月29日 – 2026年8月26日

第 3 阶段 — 私募销售

已结束
预售价格
US$0.012 ENK
最低配额
US$2,500
奖励代币
2% ENK
UTC
2026年8月26日 – 2026年9月23日
第 4 阶段 · 公开预售

公开预售时间表

从 2026 年 9 月至 2027 年 3 月共设六个结构化的 4 周阶段。每个阶段均有明确的日历时间窗口、ENK 价格和最低参与金额。

分区 1

分区 1

进行中
2026年9月23日 – 2026年10月21日
ENK 价格
$0.016 ENK
最低
$500

本分区目前向合格参与者开放。

分区 2

分区 2

即将开始
2026年10月21日 – 2026年11月17日
ENK 价格
$0.02 ENK
最低
$400

分区 3

分区 3

即将开始
2026年11月18日 – 2026年12月15日
ENK 价格
$0.024 ENK
最低
$300

分区 4

分区 4

即将开始
2026年12月16日 – 2027年1月12日
ENK 价格
$0.032 ENK
最低
$200

分区 5

分区 5

即将开始
2027年1月13日 – 2027年2月9日
ENK 价格
$0.04 ENK
最低
$100

分区 6

分区 6

即将开始
2027年2月10日 – 2027年3月9日
ENK 价格
$0.048 ENK
最低
$0 · No fixed minimum

Section 1

$0.016

per ENK

Minimum 500

2026-09-23 → 2026-10-20

Section 2

$0.020

per ENK

Minimum 400

2026-10-21 → 2026-11-17

Section 3

$0.024

per ENK

Minimum 300

2026-11-18 → 2026-12-15

Section 4

$0.032

per ENK

Minimum 200

2026-12-16 → 2027-01-12

Section 5

$0.040

per ENK

Minimum 100

2027-01-13 → 2027-02-09

Section 6

$0.048

per ENK

Minimum $0 · No fixed minimum

2027-02-10 → 2027-03-09

Figure 12 — Stage 4 six-section schedule. Prices, minimum policies and UTC windows are rendered from the canonical sale configuration. Section 6 has no fixed commercial minimum; $0 is the policy label, not a valid zero-dollar purchase, and every application or payment amount must be greater than $0.

100B

ENK fixed supply

100% allocated

Stage 1 — Early Investor

8%

Stage 2 — Ecosystem Access

5%

Stage 3 — Private Sale

7%

Stage 4 — Public Presale (6 sections)

10%

Ecosystem Growth, Development & Strategic Partnerships

22%

Team & Advisors

15%

Treasury & Reserve

18%

Validators & Incentives

10%

Liquidity & Market Making

5%
Figure 11 — Canonical ENK allocation. This figure is rendered directly from the same tokenomics configuration used by the investor platform rather than from duplicated whitepaper percentages.

代币经济

EnteleKRON 代币经济学

了解官方 ENK 代币分配、销售结构、生态储备、金库、验证者激励及流动性模型。

配额%预留代币
第 1 阶段 — 早期投资者轮8%8,000,000,000
第 2 阶段 — 生态访问轮5%5,000,000,000
第 3 阶段 — 私募销售7%7,000,000,000
第 4 阶段 — 公开预售(6 个部分)10%10,000,000,000
生态系统效用22%22,000,000,000
团队15%15,000,000,000
资金库18%18,000,000,000
网络运营10%10,000,000,000
流动性与做市5%5,000,000,000

EnteleKRON 采用受控金库透明度模型。官方生态系统金库、代币合约、流动性、vesting 及治理相关地址可在验证后发布于 EnteleKRON 透明度页面。 透明度

Vesting 与解锁时间表

战略锚定投资者:TGE 解锁 15%,其余 85% 在 15 个月内按月释放。标准早期投资者:TGE 解锁 10%,其余 90% 在 18 个月内按月释放。生态系统准入与私募:TGE 解锁 15%,其余 85% 在 12 个月内按月释放。公开预售:TGE 解锁 20%,之后连续 8 个月每月释放 10%。战略合作伙伴计划独立于标准销售轮次。

按配额函 cliff 与线性解锁为准

路线图项目为前瞻性陈述,可能不经通知而变更。

控制台中显示的分配金额(如有)须经最终批准,并受官方条款、代币生成事件条件、归属与释放计划、合规审查和技术准备情况约束。

查看 vesting 时间表 →
1

Current

ENK ERC-20 visibility on Ethereum

2

Testnet

OP Stack rollup + explorer + native-module integration

3

Controlled mainnet

Permissioned sequencing + security and operational gates

4

Progressive independence

Validator participation + sequencing/governance decentralization

Figure 4 — Progressive chain evolution. Later phases are gated by engineering, audit, legal and operational readiness and are not represented as live before activation evidence exists.

ENTELΞKRON Chain

Consensus evolution & native research

Research — not deployed
current

Ethereum Settlement

Anchor ENK visibility and the initial security/settlement path to Ethereum.

engineering

ENTELΞKRON Rollup Execution

Provide EVM-compatible execution for native modules while inheriting Ethereum settlement assurances.

engineering

Validator Engine

Validate state transitions, evidence and protocol policy as validator participation expands.

research

ENTELΞKRON Native Consensus Research

Research whether admissibility can combine economic security with verifiable time, authority, execution evidence and policy constraints.

gated

Progressive Network Independence

Increase validator, sequencing and governance decentralization only after measurable security evidence exists.

Candidate evidence classes

Economic security · ChronoSeal time evidence · identity/authority credentials · deterministic execution receipts · policy/admission proofs · SOVRA evidence inputs.

AI evidence never self-authorizes a vote, key, block or state transition.

Research gates

Formal state machine → safety/liveness model → Byzantine threat model → prior-art comparison → simulator → adversarial testing → testnet prototype → independent review.

Figure 19 — ENTELΞKRON consensus evolution. Ethereum-secured rollup engineering remains the buildable path while native multi-evidence consensus/admission is a separate research programme. No world-first, uniqueness or production-native-consensus claim is made before its evidence gates pass. Established BFT concepts such as quorum certificates, locking and proposer rotation are prior art; the research question is whether ENTELΞKRON’s typed multi-evidence and human/agent/robot authority composition yields a demonstrably new protocol property.

Native consensus research questions

R01What exact state or admissibility decision reaches consensus?
R02Who may propose, attest, validate and finalize a state transition?
R03Which evidence classes are objective and deterministically verifiable?
R04How are ChronoSeal time proofs and authority credentials prevented from becoming Sybil shortcuts?
R05How are SOVRA or other AI outputs treated strictly as evidence inputs rather than self-authorizing votes?
R06What are the safety, liveness and finality guarantees under Byzantine faults and network partitions?
R07How are equivocation, censorship, replay, stale authority, compromised credentials and invalid evidence handled?
R08What fork-choice, recovery and upgrade rules apply?
R09What economic security, penalties or alternative accountability mechanisms are required?
R10Which properties are genuinely distinct from existing PoS, BFT, rollup and proof/admission systems?
G1

Proposal / evidence

G2

Technical review

G3

Security review

G4

Legal / compliance gate

G5

Authorized approval

G6

Activation & monitoring

Figure 9 — Governance activation gates. Research, planned modules and regulated capabilities do not become production claims until the relevant evidence and approvals pass their gates.
P1Completed

Public Foundation

2026

P2Completed

Investor Platform

2026

P3Completed

Private Sale

Q3 2026

P4Upcoming

Core Infrastructure

2026–2027

P5Planned

Trust Layers

2026–2028

P6Planned

Financial Mesh

2026–2028

P7Planned

Mainnet Readiness

2027–2029

P8Planned

Global Ecosystem

2027–2030

Figure 15 — Canonical delivery roadmap. Phase names and statuses are rendered from the same roadmap configuration used by the product roadmap surface; planned phases are not presented as live capabilities.

Chapter 17 / 25

17 — Identity, Proof & Trust Layers

Identity, eligibility and audit evidence are separate controls. Sensitive identity records remain in protected systems; public proof or receipt references must not disclose private KYC documents. Planned trust capabilities are not represented as independently audited or active without release evidence.

Identity and compliance details →

路线图

已完成
2026

路线图 1

从平台基础到生态系统扩展、治理与全球规模的五个阶段性里程碑。

已完成
2026

路线图 2

从平台基础到生态系统扩展、治理与全球规模的五个阶段性里程碑。

已完成
Q3 2026

路线图 3

从平台基础到生态系统扩展、治理与全球规模的五个阶段性里程碑。

路线图 →
RiskClassControl direction
Smart contracts / bridgeTechnicalAudit · staged activation
Wallet / keysSecuritySigner policy · multisig
KYC / sanctionsComplianceProvider + review controls
Liquidity / listingMarketNo guarantee · disclosure
Sequencer concentrationGovernanceProgressive decentralization
Third partiesOperationalMonitoring · contingency
Figure 10 — Risk-control matrix. Controls reduce or manage exposure; they do not eliminate the underlying technical, regulatory, market or operational risks.

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