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Load Testing & Performance Benchmarking (JMeter & k6) · Lektion

Szenarien für virtuelle Benutzer (VUs)

Definieren und verwalten Sie verschiedene Szenarien virtueller Benutzer, um unterschiedliche Lastmuster effektiv zu simulieren.

Szenarien für virtuelle Benutzer (VUs) ist eine kostenlose Load Testing & Performance Benchmarking (JMeter & k6)-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 Load Testing & Performance Benchmarking (JMeter & k6)-Lernpfads, und dein Fortschritt wird über Web und CoddyKit-App synchronisiert. Der Load Testing & Performance Benchmarking (JMeter & k6)-Kurs umfasst insgesamt 4 Lektionen.

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

Beyond Simple Load: k6 Scenarios

When performance testing, a simple 'run 10 VUs for 30 seconds' might not capture real user behavior. Real users often have different patterns: some log in, some browse, some make purchases. This is where k6 scenarios come in!

Scenarios allow you to define complex load profiles and simulate diverse user groups, each with its own specific behavior and load pattern, all within a single test script.

Defining Your Test Scenarios

In k6, you define scenarios within the options object of your test script. The scenarios block is a JavaScript object where each key represents a unique scenario name.

Each scenario specifies an executor, which dictates how virtual users (VUs) and iterations are managed. It also links to a specific function in your script that defines what those VUs will do.

import http from 'k6/http';
import { sleep } from 'k6';

export const options = {
  scenarios: {
    // Scenario definitions go here
  },
};

export default function () {
  http.get('https://test.k6.io');
  sleep(1);
}

Basic Scenario: Shared Iterations

The default k6 executor, shared-iterations, distributes a fixed number of iterations among a pool of VUs. Each VU will execute as many iterations as it can until the total specified iterations are complete or the test duration ends.

It's good for tests where you want to complete a specific amount of work.

import http from 'k6/http';
import { sleep } from 'k6';

export const options = {
  scenarios: {
    my_scenario: {
      executor: 'shared-iterations',
      vus: 5,
      iterations: 20,
      maxDuration: '30s',
    },
  },
};

export default function () {
  http.get('https://test.k6.io');
  sleep(1);
}

Constant Load with `constant-VUs`

The constant-VUs executor maintains a fixed number of virtual users throughout the test's duration. VUs are started at the beginning and kept active until the duration is met.

This is useful for simulating a steady, continuous load on your system.

import http from 'k6/http';
import { sleep } from 'k6';

export const options = {
  scenarios: {
    constant_load: {
      executor: 'constant-VUs',
      vus: 10,
      duration: '1m', // Run 10 VUs for 1 minute
    },
  },
};

export default function () {
  http.get('https://test.k6.io/news.php');
  sleep(2);
}

Gradual Load with `ramping-VUs`

The ramping-VUs executor allows you to gradually increase or decrease the number of virtual users over time. This simulates a more realistic load curve, like users slowly joining a website or leaving it.

It uses stages to define these changes in VU count.

import http from 'k6/http';
import { sleep } from 'k6';

export const options = {
  scenarios: {
    gradual_load: {
      executor: 'ramping-VUs',
      startVUs: 0,
      stages: [
        { duration: '30s', target: 20 }, // Ramp up to 20 VUs over 30s
        { duration: '1m', target: 20 },  // Stay at 20 VUs for 1 minute
        { duration: '20s', target: 0 },  // Ramp down to 0 VUs over 20s
      ],
    },
  },
};

export default function () {
  http.get('https://test.k6.io/contacts.php');
  sleep(1);
}

Structuring Load with Stages

Within ramping-VUs, stages are an array of objects, each with a duration and a target VU count.

  • duration: How long this stage lasts (e.g., '1m', '30s').
  • target: The number of VUs to reach by the end of this stage. k6 will linearly ramp VUs from the current stage's end target to the next stage's target.

Stages are powerful for modeling complex load patterns like peak hours or sudden traffic spikes.

Controlling Request Rate: `ramping-arrival-rate`

Unlike VU-based executors, ramping-arrival-rate is an open model executor. It controls the rate at which new iterations (or 'arrivals') are started, rather than the number of VUs.

This is ideal for testing systems where you care about requests per second (RPS) or transactions per second (TPS).

import http from 'k6/http';
import { sleep } from 'k6';

export const options = {
  scenarios: {
    arrival_rate_test: {
      executor: 'ramping-arrival-rate',
      startRate: 0, // Initial iterations per second
      timeUnit: '1s', // How often 'rate' is applied
      stages: [
        { duration: '30s', target: 10 }, // Ramp up to 10 iterations/s over 30s
        { duration: '1m', target: 10 },  // Stay at 10 iterations/s for 1 minute
      ],
      preAllocatedVUs: 20, // Initial VUs to allocate
      maxVUs: 50,         // Max VUs to spin up if needed
    },
  },
};

export default function () {
  http.get('https://test.k6.io/login.php');
  sleep(0.5); // Simulate some user think time
}

Combining Different User Behaviors

You can define multiple, independent scenarios within a single k6 script. Each scenario can have its own executor, VUs, duration, and even call a different function that defines its specific user journey.

This allows you to simulate a mix of user types (e.g., admin users, regular users, guests) in one comprehensive test.

import http from 'k6/http';
import { sleep } from 'k6';

export const options = {
  scenarios: {
    anonymous_browsing: {
      executor: 'constant-VUs',
      vus: 5,
      duration: '30s',
      exec: 'anonymousBrowser', // Call this function
    },
    authenticated_user: {
      executor: 'ramping-VUs',
      startVUs: 0,
      stages: [{ duration: '20s', target: 3 }],
      exec: 'loggedInUser', // Call this function
    },
  },
};

export function anonymousBrowser() {
  http.get('https://test.k6.io/');
  sleep(2);
}

export function loggedInUser() {
  // Simulate login (not actual login, just for demo)
  http.post('https://test.k6.io/login', { username: 'user', password: 'pass' });
  sleep(1);
  http.get('https://test.k6.io/my-profile');
  sleep(2);
}

Fine-Tuning Scenario Execution

Beyond basic executor settings, scenarios offer additional options for precise control:

  • startTime: Delay the start of a specific scenario (e.g., '10s' after test start). Useful for staggered tests.
  • gracefulStop: How long k6 should wait for active VUs to finish their current iteration before forcefully stopping them (e.g., '5s').
  • env: Environment variables specific to this scenario.

These options help orchestrate complex test flows.

Scenario Challenge

You need to simulate a load test where:

  • 5 virtual users (VUs) constantly browse the homepage for 1 minute.
  • At the same time, another group of users gradually ramps up from 0 to 10 VUs over 30 seconds, then holds at 10 VUs for 30 seconds, performing a login action.

Which two k6 executors would be most appropriate for these two distinct user behaviors?

Scenarios: Your Load Orchestrator

In this lesson, you've learned how k6 scenarios enable you to model diverse and realistic load patterns. We explored key executors:

  • shared-iterations for fixed work.
  • constant-VUs for steady load.
  • ramping-VUs for gradual load changes with stages.
  • ramping-arrival-rate for open-model testing based on request rate.

You also saw how to combine multiple scenarios and use options like startTime for advanced control. Mastering scenarios is crucial for sophisticated performance testing!

Häufig gestellte Fragen

Ist die Lektion „Szenarien für virtuelle Benutzer (VUs)“ kostenlos?

Ja — der vollständige Text von „Szenarien für virtuelle Benutzer (VUs)“ ist hier im Web kostenlos zu lesen. Um sie interaktiv zu üben (integrierter Code-Editor und 24/7 KI-Tutor) und den Rest des Load Testing & Performance Benchmarking (JMeter & k6)-Kurses freizuschalten, upgrade auf CoddyKit PRO. Der Load Testing & Performance Benchmarking (JMeter & k6)-Kurs umfasst insgesamt 4 Lektionen.

Was lerne ich in „Szenarien für virtuelle Benutzer (VUs)“?

Definieren und verwalten Sie verschiedene Szenarien virtueller Benutzer, um unterschiedliche Lastmuster effektiv zu simulieren. Du übst Load Testing & Performance Benchmarking (JMeter & k6) 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 Load Testing & Performance Benchmarking (JMeter & k6) zu starten?

Keine Vorkenntnisse erforderlich. Load Testing & Performance Benchmarking (JMeter & k6) 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 „Szenarien für virtuelle Benutzer (VUs)“?

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 Load Testing & Performance Benchmarking (JMeter & k6)-Lektion Code schreiben und ausführen?

Ja. Jede Load Testing & Performance Benchmarking (JMeter & k6)-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. Szenarien für virtuelle Benutzer (VUs)
  2. Datenparametrisierung in k6
  3. Cloud-Ausführung mit k6
  4. Benutzerdefinierte Metriken und Trends in k6
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