コンテンツにスキップ
Kong Logo | Kong Docs Logo
  • ドキュメント
    • API仕様を確認する
      View all API Specs すべてのAPI仕様を表示 View all API Specs arrow image
    • ドキュメンテーション
      API Specs
      Kong Gateway
      軽量、高速、柔軟なクラウドネイティブAPIゲートウェイ
      Kong Konnect
      SaaSのエンドツーエンド接続のための単一プラットフォーム
      Kong AI Gateway
      GenAI インフラストラクチャ向けマルチ LLM AI Gateway
      Kong Mesh
      Kuma と Envoy をベースにしたエンタープライズサービスメッシュ
      decK
      Kongの構成を宣言型で管理する上で役立ちます
      Kong Ingress Controller
      Kubernetesクラスタ内で動作し、Kongをプロキシトラフィックに設定する
      Kong Gateway Operator
      YAMLマニフェストを使用してKubernetes上のKongデプロイメントを管理する
      Insomnia
      コラボレーティブAPI開発プラットフォーム
  • Plugin Hub
    • Plugin Hubを探索する
      View all plugins すべてのプラグインを表示 View all plugins arrow image
    • 機能性 すべて表示 View all arrow image
      すべてのプラグインを表示
      AI's icon
      AI
      マルチ LLM AI Gatewayプラグインを使用してAIトラフィックを管理、保護、制御する
      認証's icon
      認証
      認証レイヤーでサービスを保護する
      セキュリティ's icon
      セキュリティ
      追加のセキュリティレイヤーでサービスを保護する
      トラフィック制御's icon
      トラフィック制御
      インバウンドおよびアウトバウンドAPIトラフィックの管理、スロットル、制限
      サーバーレス's icon
      サーバーレス
      他のプラグインと組み合わせてサーバーレス関数を呼び出します
      分析と監視's icon
      分析と監視
      APIとマイクロサービストラフィックを視覚化、検査、監視
      変革's icon
      変革
      Kongでリクエストとレスポンスをその場で変換
      ログ記録's icon
      ログ記録
      インフラストラクチャに最適なトランスポートを使用して、リクエストと応答データをログに記録します
  • サポート
  • コミュニティ
  • Kongアカデミー
デモを見る 無料トライアルを開始
Kong Konnect
  • Home icon
  • Kong Konnect
  • Network Resiliency and Availability
report-issue問題を報告する
  • Kong Gateway
  • Kong Konnect
  • Kong Mesh
  • Kong AI Gateway
  • Plugin Hub
  • decK
  • Kong Ingress Controller
  • Kong Gateway Operator
  • Insomnia
  • Kuma

  • ドキュメント投稿ガイドライン
  • Introduction
    • Overview of Konnect
    • Architecture
    • Network Resiliency and Availability
    • Port and Network Requirements
    • Private Connections to Other Cloud Providers
      • Create a private connection with AWS PrivateLink
    • Geographic Regions
    • Centralized consumer management
    • Compatibility
    • Stages of Software Availability
    • Release Notes
    • Support
      • Control Plane Upgrades FAQ
      • Supported Installation Options
  • Get Started
    • Overview
    • Add your API
    • Migrating a Self-Managed Kong Gateway into Konnect
  • Gateway Manager
    • Overview
    • Dedicated Cloud Gateways
      • Overview
      • Provision a Dedicated Cloud Gateway
      • Securing Backend Traffic
      • Transit Gateways
      • Azure VNET Peering
      • Custom Domains
      • Custom Plugins
      • Data plane logs
    • Serverless Gateways
      • Overview
      • Provision a serverless Gateway
      • Securing Backend Traffic
      • Custom Domains
    • Data Plane Nodes
      • Installation Options
      • Upgrade a Data Plane Node
      • Verify a Data Plane Node
      • Secure Control Plane/Data Plane Communications
      • Renew Data Plane Certificates
      • Parameter Reference
      • Using Custom DP Labels
    • Control Plane Groups
      • Overview
      • Working with Control Plane Groups
      • Migrate Configuration into Control Plane Groups
      • Conflicts in Control Planes
    • Kong Gateway Configuration in Konnect
      • Overview
      • Manage Plugins
        • Overview
        • Adding Custom Plugins
        • Updating Custom Plugins
        • How to Create Custom Plugins
      • Create Consumer Groups
      • Secrets Management
        • Overview
        • Konnect Config Store
        • Set Up and Use a Vault in Konnect
      • Manage Control Plane Configuration with decK
    • Active Tracing
      • Overview
    • KIC Association
    • Backup and Restore
    • Version Compatibility
    • Troubleshooting
  • Mesh Manager
    • Overview
    • Create a mesh with the Kubernetes demo app
    • Federate a zone control plane to Konnect
    • Migrate a self-managed zone control plane to Konnect
  • Service Catalog
    • Overview
    • Integrations
      • Overview
      • Datadog
      • GitHub
      • GitLab
      • PagerDuty
      • SwaggerHub
      • Traceable
      • Slack
    • Scorecards
  • API Products
    • Overview
    • Product Documentation
    • Productize a Service
  • Dev Portal
    • Overview
    • Dev Portal Configuration Preparation
    • Create a Dev Portal
    • Sign Up for a Dev Portal Account
    • Publish an API to Dev Portal
    • Access and Approval
      • Manage Developer Access
      • Manage Developer Team Access
      • Add Developer Teams from IdPs
      • Manage Application Registrations
      • Configure generic SSO for Dev Portal
      • Configure Okta SSO for Dev Portal
    • Application Lifecycle
    • Register and create an application as a developer
    • Enable and Disable App Registration for API Product Versions
    • Dynamic Client Registration
      • Overview
      • Okta
      • Curity
      • Auth0
      • Azure
      • Custom IdP
    • Portal Management API Automation Guide
    • Audit Logging
      • Overview
      • Set up an Audit Log Webhook
      • Set up an Audit Log Replay Job
    • Portal Customization
      • Overview
      • About Self-Hosted Dev Portal
      • Host your Dev Portal with Netlify
      • Custom Domains
    • Dev Portal SDK
    • Troubleshoot
  • Advanced Analytics
    • Overview
    • Dashboard
    • Explorer
    • Analyze API Usage and Performance with Reports
    • Requests
  • Org Management
    • Plans and Billing
    • Authentication and Authorization
      • Overview
      • Teams
        • Overview
        • Manage Teams
        • Teams Reference
        • Roles Reference
      • Manage Users
      • Manage System Accounts
      • Personal Access Tokens
      • Social Identity Login
      • Org Switcher
      • Configure Generic SSO
      • Configure Okta SSO
      • Login Sessions Reference
      • Troubleshoot
    • Audit Logging
      • Overview
      • Set up an Audit Log Webhook
      • Set up an Audit Log Replay Job
    • Account and Org Deactivation
  • API
    • Overview
    • API Request API (Beta)
      • API Spec
    • API Products API
      • API Spec
    • Audit Logs API
      • API Spec
      • Audit Log Webhooks
    • Control Plane API
      • API Spec
    • Control Plane Configuration API
      • API Spec
    • Cloud Gateways API
      • API Spec
    • Identity API
      • API Spec
      • Identity Integration Guide
      • SSO Customization
    • Konnect Search API (Beta)
      • API Spec
    • Mesh Manager API
      • API Spec
      • Kong Mesh API Reference
    • Portal Client API
      • API Spec
    • Portal Management API
      • API Spec
    • Reference
      • Filtering
      • API Errors
  • Reference
    • Labels
    • Plugin Ordering Reference
    • Konnect Search
    • Terraform Provider
    • Audit Logs
    • Verify audit log signatures
    • IdP SAML attribute mapping
enterprise-switcher-icon 次に切り替える: OSS

このページは、まだ日本語ではご利用いただけません。翻訳中です。

Network Resiliency and Availability

Kong Konnect deployments run either in either managed or hybrid mode, which means that there is a separate control plane attached to a data plane consisting of one or more data plane nodes. Control planes and data plane nodes must communicate with each other to receive and send configurations. If communication is interrupted and either side can’t send or receive config, data plane nodes can still continue proxying traffic to clients.

Whenever a data plane node receives new configuration from the control plane, it immediately loads that config into memory. At the same time, it caches the config to the file system. The location of the cache differs depending on the major release of your Gateway:

  • 2.x Gateway: By default, data plane nodes store their configuration in an unencrypted cache file, config.json.gz, in Kong Gateway’s prefix path.
  • 3.x Gateway: By default, data plane nodes store their configuration in an unencrypted LMDB database directory, dbless.lmdb, in Kong Gateway’s prefix path.

Communication

How do the control plane and data plane communicate?

Data traveling between control planes and data planes is secured through a mutual TLS handshake. Data plane nodes initiate the connection to the Konnect control plane. Once the connection is established, the control plane can send configuration data to the connected data plane nodes.

Normally, each data plane node maintains a persistent connection with the control plane. The node sends a heartbeat to the control plane every 30 seconds to keep the connection alive. If it receives no answer, it tries to reconnect to the control plane after a 5-10 second delay.

How does network peering work with Dedicated Cloud Gateway nodes?

Each Cloud Gateway node is part of a dedicated Cloud Gateway network that corresponds to a specific cloud region, such as us-east-1 or us-west-2. For enhanced security and seamless connectivity between your cloud network and the Konnect environment, you can peer your Cloud Gateway network with your own network in AWS. This integration is facilitated by using AWS’s TransitGateway feature, enabling secure network connections across both platforms.

What types of data travel between the Kong Konnect control plane and the data plane nodes, and how?

There are two types of data that travel between the planes: configuration and telemetry. Both use the secure TCP port 443.

  • Configuration: The control plane sends configuration data to any connected data plane node in the cluster.

  • Telemetry: Data plane nodes send usage information to the control plane for Analytics and for account billing. Analytics tracks aggregate traffic by service, route, and the consuming application. For billing, Kong tracks the number of services, API calls, and active dev portals.

Telemetry data does not include any customer information or any data processed by the data plane. All telemetry data is encrypted using mTLS.

How frequently does configuration data travel between the Konnect control plane and data plane nodes?

When you make a configuration change on the control plane, that change is immediately pushed to any connected data plane nodes.

How frequently do data planes send telemetry data to the control plane?

The telemetry message interval depends on the major release version of the data plane:

  • 2.x data planes send messages every 10 seconds by default
  • 3.x data planes send messages every 1 second by default

You can configure this interval using the analytics_flush_interval setting.

Connection behavior and incident recovery

What happens if Kong Konnect goes down?

If the Kong-hosted control plane goes down, the control plane/data plane connection gets interrupted. You can’t access the control plane or change any configuration during this time.

A connection interruption has no negative effect on the function of your data plane nodes. They continue to proxy and route traffic normally.

What happens if the control plane and data plane nodes disconnect?

If a data plane node becomes disconnected from its control plane, configuration can’t travel between them. In that situation, the data plane node continues to use cached configuration until it reconnects to the control plane and receives new configuration.

Whenever a connection is re-established with the control plane, it pushes the latest configuration to the data plane node. It doesn’t queue up or try to apply older changes.

If your control plane is a Kong Mesh global control plane, see Failure modes in the Kong Mesh documentation for more details on what happens when there are Kong Mesh connectivity issues.

If the data plane loses communication with the control plane, what happens to telemetry data?

If a data plane loses contact with the control plane, the data plane accumulates request data into a buffer. Once the buffer fills up, the data plane starts dropping older data. The faster your requests come in, the faster the buffer fills up.

By default, the buffer limit is 100000 requests. You can configure a custom buffer amount using the analytics_buffer_size_limit setting.

How long can data plane nodes remain disconnected from the control plane?

A data plane node will keep pinging the control plane, until the connection is re-established or the data plane node is stopped.

The data plane node needs to connect to the control plane at least once. The control plane pushes configuration to the data plane, and each data plane node caches that configuration in-memory. It continues to use this cached configuration until it receives new instructions from the control plane.

There are situations that can cause further problems:

  • If the license that the data plane node received from the control plane expires, the node stops working.
  • If the data plane node’s configuration cache file (config.json.gz) or directory (dbless.lmdb) gets deleted, it loses access to the last known configuration and starts up empty.

Can I restart a data plane node if the control plane is down or disconnected?

Yes. If you restart a data plane node, it uses a cached configuration to continue functioning the same as before the restart.

Can I create a new data plane node when the connection is down?

Yes. Starting in version 3.2, Kong Gateway can be configured to support configuring new data plane nodes in the event of a control plane outage. See How to Configure Data Plane Resilience for more information.

Backups and alternative options

Can I create a backup configuration to use in case the cache fails?

You can set the declarative_config option to load a fallback YAML config.

Can I change a data plane node’s configuration when it’s disconnected from the control plane?

Yes, if necessary, though any manual configuration will be overwritten the next time the control plane connects to the node.

You can load configuration manually in one of the following ways:

  • Copy the configuration cache file (config.json.gz) or directory (dbless.lmdb) from another data plane node with a working connection and overwrite the cache file on disk for the disconnected node.
  • Remove the cache file, then start the data plane node with declarative_config to load a fallback YAML config.
Thank you for your feedback.
Was this page useful?
情報が多すぎる場合 close cta icon
Kong Konnectを使用すると、より多くの機能とより少ないインフラストラクチャを実現できます。月額1Mリクエストが無料。
無料でお試しください
  • Kong
    APIの世界を動かす

    APIマネジメント、サービスメッシュ、イングレスコントローラーの統合プラットフォームにより、開発者の生産性、セキュリティ、パフォーマンスを大幅に向上します。

    • 製品
      • Kong Konnect
      • Kong Gateway Enterprise
      • Kong Gateway
      • Kong Mesh
      • Kong Ingress Controller
      • Kong Insomnia
      • 製品アップデート
      • 始める
    • ドキュメンテーション
      • Kong Konnectドキュメント
      • Kong Gatewayドキュメント
      • Kong Meshドキュメント
      • Kong Insomniaドキュメント
      • Kong Konnect Plugin Hub
    • オープンソース
      • Kong Gateway
      • Kuma
      • Insomnia
      • Kongコミュニティ
    • 会社概要
      • Kongについて
      • お客様
      • キャリア
      • プレス
      • イベント
      • お問い合わせ
  • 利用規約• プライバシー• 信頼とコンプライアンス
© Kong Inc. 2025