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MongoDB Academy · Lektion

Mitglieder eines Replica Sets: Primary, Secondary, Arbiter

Sie beschreiben die Rolle jedes Replica-Set-Mitglieds und verfolgen, wie Schreibvorgänge über das Oplog vom Primary zu den Secondaries fließen.

Mitglieder eines Replica Sets: Primary, Secondary, Arbiter ist eine kostenlose MongoDB Academy-Lektion auf CoddyKit. Dies ist Lektion 1 von 4. Du kannst die komplette Lektion unten kostenlos lesen – dann übst du sie direkt im Browser mit einem integrierten Code-Editor und einem KI-Tutor rund um die Uhr. Sie ist Teil des MongoDB Academy-Lernpfads, und dein Fortschritt wird über Web und CoddyKit-App synchronisiert. Der MongoDB Academy-Kurs umfasst insgesamt 4 Lektionen.

Teile dieser Lektion wurden noch nicht übersetzt und werden auf Englisch angezeigt.

What Is a Replica Set?

A replica set is a group of MongoDB servers that all hold the same data, providing high availability and redundancy. If one server fails, another automatically takes over. A typical replica set has three or more members: at least one primary, one or more secondaries, and optionally an arbiter.

The Primary: Source of Truth

The primary is the only member that accepts write operations. All clients send inserts, updates, and deletes to the primary. It records every write operation in a special log called the oplog (operations log), which secondaries then read to stay in sync.

// Check which member is primary in mongosh
rs.isMaster()
// or
rs.status()

The Secondary: Hot Standby

A secondary replicates data from the primary by continuously tailing the primary's oplog and applying the same operations to its own copy of the data. Secondaries can serve read queries (with the right read preference) and will take over as primary if the current primary becomes unavailable.

// View oplog on a secondary
use local
db.oplog.rs.find().sort({$natural: -1}).limit(5)

Oplog: The Replication Backbone

The oplog (operations log) is a special capped collection stored in the local database on every replica set member. Every write to the primary is appended to the oplog. Secondaries read the oplog and replay each entry in order, keeping their data identical to the primary. The oplog's size determines how far behind a secondary can fall before needing a full resync.

// Check oplog size and time range
use local
db.oplog.rs.stats().maxSize
db.oplog.rs.find({},{ts:1,op:1,ns:1}).sort({$natural:-1}).limit(3)

The Arbiter: Tiebreaker Member

An arbiter is a lightweight replica set member that holds no data. Its sole purpose is to participate in elections by casting a vote when a new primary needs to be chosen. Arbiters are used in even-member sets (e.g., two data-bearing members) to ensure a majority can always be reached without the cost of a third full data node.

// Add an arbiter to the replica set
rs.addArb('hostname:27017')

Votes and Elections Overview

Each replica set member has a vote (0 or 1). A primary is elected by majority vote. With 3 members (each with 1 vote), a majority is 2. If the primary goes down, the remaining two members hold an election and the one with the most up-to-date oplog typically wins. Elections complete in seconds under normal network conditions.

// View all members and their vote configuration
rs.conf().members.forEach(m => {
  print(m.host, 'votes:', m.votes, 'priority:', m.priority)
})

Member Priorities

Each member has a priority value (default 1). A member with higher priority is preferred as primary in elections. Setting priority to 0 prevents a member from ever becoming primary — useful for secondaries in distant data centers that should serve local reads but not take writes from the primary region.

// Set a member to never become primary (priority 0)
let cfg = rs.conf()
cfg.members[2].priority = 0
rs.reconfig(cfg)

Hidden and Delayed Secondaries

Hidden secondaries (priority 0, hidden: true) are invisible to drivers and used only for backups or analytics without affecting the primary election pool. Delayed secondaries intentionally lag behind the primary by a configured number of seconds, providing a rolling recovery window in case of accidental data corruption.

// Configure a delayed secondary (e.g., 1 hour behind)
let cfg = rs.conf()
cfg.members[2].hidden = true
cfg.members[2].priority = 0
cfg.members[2].secondaryDelaySecs = 3600
rs.reconfig(cfg)

Checking Replication Lag

Replication lag is the delay between when a write is committed on the primary and when it appears on a secondary. High lag means secondaries serve stale data. You can monitor lag with rs.printSecondaryReplicationInfo() or by comparing the oplog timestamps between members. Atlas provides built-in lag alerts.

// Print replication lag for each secondary
rs.printSecondaryReplicationInfo()

// Example output:
// source: secondary1:27017
// syncedTo: Sat Jun 21 2025 10:00:00
// 0 secs (0 hrs) behind the primary

rs.status() Output Explained

rs.status() returns the full health snapshot of the replica set. Key fields to inspect: stateStr (PRIMARY / SECONDARY / ARBITER / DOWN), optimeDate (last applied oplog entry), health (1 = healthy, 0 = unreachable), and lastHeartbeatMessage for error details on troubled members.

rs.status().members.forEach(m => {
  print(m.name, m.stateStr, 'health:', m.health)
})

Data Writes Flow End to End

When a client writes a document, the flow is: 1) Driver sends write to the primary. 2) Primary applies the write to WiredTiger storage. 3) Primary appends the operation to its oplog. 4) Secondaries pull the oplog entry and apply it. 5) Primary acknowledges the client according to the configured writeConcern.

// Write with w:majority ensures secondaries have acknowledged
db.orders.insertOne(
  { item: 'laptop', qty: 1 },
  { writeConcern: { w: 'majority', wtimeout: 5000 } }
)

Quick Check

Test your understanding of MongoDB & NoSQL Databases concepts from this lesson.

Lesson Recap

In this lesson you learned: the primary accepts all writes and records them in the oplog, secondaries replicate from the oplog to maintain identical copies, and arbiters hold no data but cast votes in elections. Next up we explore how MongoDB automatically elects a new primary when the current one fails.

Häufig gestellte Fragen

Ist die Lektion „Mitglieder eines Replica Sets: Primary, Secondary, Arbiter“ kostenlos?

Ja — der vollständige Text von „Mitglieder eines Replica Sets: Primary, Secondary, Arbiter“ ist hier im Web kostenlos zu lesen. Um sie interaktiv zu üben (integrierter Code-Editor und 24/7 KI-Tutor) und den Rest des MongoDB Academy-Kurses freizuschalten, upgrade auf CoddyKit PRO. Der MongoDB Academy-Kurs umfasst insgesamt 4 Lektionen.

Was lerne ich in „Mitglieder eines Replica Sets: Primary, Secondary, Arbiter“?

Sie beschreiben die Rolle jedes Replica-Set-Mitglieds und verfolgen, wie Schreibvorgänge über das Oplog vom Primary zu den Secondaries fließen. Du übst MongoDB Academy mit praktischem Code, den du direkt im Browser ausführst, und ein 24/7 KI-Tutor beantwortet deine Fragen während du die Lektion bearbeitest.

Brauche ich Erfahrung, um MongoDB Academy zu starten?

Keine Vorkenntnisse erforderlich. MongoDB Academy auf CoddyKit ist für Anfänger bis fortgeschrittene Lernende strukturiert, sodass du hier starten oder von Anfang an beginnen und in deinem eigenen Tempo voranschreiten kannst. Dies ist Lektion 1 von 4.

Wie lange dauert die Lektion „Mitglieder eines Replica Sets: Primary, Secondary, Arbiter“?

Die meisten CoddyKit-Lektionen dauern etwa 5–10 Minuten. Jede ist kompakt und interaktiv, sodass du stetig Fortschritte machst und genau dort weitermachst, wo du aufgehört hast – im Web und in der App.

Kann ich in dieser MongoDB Academy-Lektion Code schreiben und ausführen?

Ja. Jede MongoDB Academy-Lektion enthält einen integrierten Code-Editor, sodass du echten Code direkt in deinem Browser schreibst und ausführst und sofort KI-Feedback erhältst — ohne lokale Einrichtung erforderlich.

Alle Lektionen in diesem Kurs

  1. Mitglieder eines Replica Sets: Primary, Secondary, Arbiter
  2. Wahlen und automatisches Failover
  3. Write Concerns und bestätigte Dauerhaftigkeit
  4. Lesepräferenzen: Leselast verteilen
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