<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>工程实践 - 逆向工程 Cookbook</title><link>https://overkazaf.github.io/reverse_engineering/web/06-engineering/</link><description>Android 与 Web 逆向工程实战手册</description><generator>Hugo 0.147.7 &amp; FixIt v0.4.0-alpha.3-20251224074056-4fec1cda</generator><language>zh-CN</language><managingEditor>overkazaf@gmail.com (+5)</managingEditor><webMaster>overkazaf@gmail.com (+5)</webMaster><lastBuildDate>Thu, 25 Sep 2025 00:00:00 +0000</lastBuildDate><atom:link href="https://overkazaf.github.io/reverse_engineering/web/06-engineering/index.xml" rel="self" type="application/rss+xml"/><item><title>数据存储方案</title><link>https://overkazaf.github.io/reverse_engineering/web/06-engineering/data_storage_solutions/</link><pubDate>Thu, 25 Sep 2025 00:00:00 +0000</pubDate><author>overkazaf@gmail.com (+5)</author><guid>https://overkazaf.github.io/reverse_engineering/web/06-engineering/data_storage_solutions/</guid><description>&lt;h1 class="heading-element" id="数据存储方案">&lt;span>数据存储方案&lt;/span>
 &lt;a href="#%e6%95%b0%e6%8d%ae%e5%ad%98%e5%82%a8%e6%96%b9%e6%a1%88" class="heading-mark">
 &lt;svg class="octicon octicon-link" viewBox="0 0 16 16" version="1.1" width="16" height="16" aria-hidden="true">&lt;path d="m7.775 3.275 1.25-1.25a3.5 3.5 0 1 1 4.95 4.95l-2.5 2.5a3.5 3.5 0 0 1-4.95 0 .751.751 0 0 1 .018-1.042.751.751 0 0 1 1.042-.018 1.998 1.998 0 0 0 2.83 0l2.5-2.5a2.002 2.002 0 0 0-2.83-2.83l-1.25 1.25a.751.751 0 0 1-1.042-.018.751.751 0 0 1-.018-1.042Zm-4.69 9.64a1.998 1.998 0 0 0 2.83 0l1.25-1.25a.751.751 0 0 1 1.042.018.751.751 0 0 1 .018 1.042l-1.25 1.25a3.5 3.5 0 1 1-4.95-4.95l2.5-2.5a3.5 3.5 0 0 1 4.95 0 .751.751 0 0 1-.018 1.042.751.751 0 0 1-1.042.018 1.998 1.998 0 0 0-2.83 0l-2.5 2.5a1.998 1.998 0 0 0 0 2.83Z">&lt;/path>&lt;/svg>
 &lt;/a>
&lt;/h1>&lt;h2 class="heading-element" id="概述">&lt;span>概述&lt;/span>
 &lt;a href="#%e6%a6%82%e8%bf%b0" class="heading-mark">
 &lt;svg class="octicon octicon-link" viewBox="0 0 16 16" version="1.1" width="16" height="16" aria-hidden="true">&lt;path d="m7.775 3.275 1.25-1.25a3.5 3.5 0 1 1 4.95 4.95l-2.5 2.5a3.5 3.5 0 0 1-4.95 0 .751.751 0 0 1 .018-1.042.751.751 0 0 1 1.042-.018 1.998 1.998 0 0 0 2.83 0l2.5-2.5a2.002 2.002 0 0 0-2.83-2.83l-1.25 1.25a.751.751 0 0 1-1.042-.018.751.751 0 0 1-.018-1.042Zm-4.69 9.64a1.998 1.998 0 0 0 2.83 0l1.25-1.25a.751.751 0 0 1 1.042.018.751.751 0 0 1 .018 1.042l-1.25 1.25a3.5 3.5 0 1 1-4.95-4.95l2.5-2.5a3.5 3.5 0 0 1 4.95 0 .751.751 0 0 1-.018 1.042.751.751 0 0 1-1.042.018 1.998 1.998 0 0 0-2.83 0l-2.5 2.5a1.998 1.998 0 0 0 0 2.83Z">&lt;/path>&lt;/svg>
 &lt;/a>
&lt;/h2>&lt;p>爬虫系统需要高效的数据存储方案来处理海量数据。本章介绍常见的存储选型和最佳实践。&lt;/p></description></item><item><title>代理池管理</title><link>https://overkazaf.github.io/reverse_engineering/web/06-engineering/proxy_pool_management/</link><pubDate>Fri, 29 Aug 2025 00:00:00 +0000</pubDate><author>overkazaf@gmail.com (+5)</author><guid>https://overkazaf.github.io/reverse_engineering/web/06-engineering/proxy_pool_management/</guid><description>&lt;h1 class="heading-element" id="代理池管理">&lt;span>代理池管理&lt;/span>
 &lt;a href="#%e4%bb%a3%e7%90%86%e6%b1%a0%e7%ae%a1%e7%90%86" class="heading-mark">
 &lt;svg class="octicon octicon-link" viewBox="0 0 16 16" version="1.1" width="16" height="16" aria-hidden="true">&lt;path d="m7.775 3.275 1.25-1.25a3.5 3.5 0 1 1 4.95 4.95l-2.5 2.5a3.5 3.5 0 0 1-4.95 0 .751.751 0 0 1 .018-1.042.751.751 0 0 1 1.042-.018 1.998 1.998 0 0 0 2.83 0l2.5-2.5a2.002 2.002 0 0 0-2.83-2.83l-1.25 1.25a.751.751 0 0 1-1.042-.018.751.751 0 0 1-.018-1.042Zm-4.69 9.64a1.998 1.998 0 0 0 2.83 0l1.25-1.25a.751.751 0 0 1 1.042.018.751.751 0 0 1 .018 1.042l-1.25 1.25a3.5 3.5 0 1 1-4.95-4.95l2.5-2.5a3.5 3.5 0 0 1 4.95 0 .751.751 0 0 1-.018 1.042.751.751 0 0 1-1.042.018 1.998 1.998 0 0 0-2.83 0l-2.5 2.5a1.998 1.998 0 0 0 0 2.83Z">&lt;/path>&lt;/svg>
 &lt;/a>
&lt;/h1>&lt;h2 class="heading-element" id="概述">&lt;span>概述&lt;/span>
 &lt;a href="#%e6%a6%82%e8%bf%b0" class="heading-mark">
 &lt;svg class="octicon octicon-link" viewBox="0 0 16 16" version="1.1" width="16" height="16" aria-hidden="true">&lt;path d="m7.775 3.275 1.25-1.25a3.5 3.5 0 1 1 4.95 4.95l-2.5 2.5a3.5 3.5 0 0 1-4.95 0 .751.751 0 0 1 .018-1.042.751.751 0 0 1 1.042-.018 1.998 1.998 0 0 0 2.83 0l2.5-2.5a2.002 2.002 0 0 0-2.83-2.83l-1.25 1.25a.751.751 0 0 1-1.042-.018.751.751 0 0 1-.018-1.042Zm-4.69 9.64a1.998 1.998 0 0 0 2.83 0l1.25-1.25a.751.751 0 0 1 1.042.018.751.751 0 0 1 .018 1.042l-1.25 1.25a3.5 3.5 0 1 1-4.95-4.95l2.5-2.5a3.5 3.5 0 0 1 4.95 0 .751.751 0 0 1-.018 1.042.751.751 0 0 1-1.042.018 1.998 1.998 0 0 0-2.83 0l-2.5 2.5a1.998 1.998 0 0 0 0 2.83Z">&lt;/path>&lt;/svg>
 &lt;/a>
&lt;/h2>&lt;p>代理池是分布式爬虫的核心组件之一，用于突破 IP 限制和反爬虫检测。本章介绍代理池的构建、管理和优化策略。&lt;/p></description></item><item><title>监控与告警系统</title><link>https://overkazaf.github.io/reverse_engineering/web/06-engineering/monitoring_and_alerting/</link><pubDate>Wed, 13 Aug 2025 00:00:00 +0000</pubDate><author>overkazaf@gmail.com (+5)</author><guid>https://overkazaf.github.io/reverse_engineering/web/06-engineering/monitoring_and_alerting/</guid><description>&lt;h1 class="heading-element" id="监控与告警系统">&lt;span>监控与告警系统&lt;/span>
 &lt;a href="#%e7%9b%91%e6%8e%a7%e4%b8%8e%e5%91%8a%e8%ad%a6%e7%b3%bb%e7%bb%9f" class="heading-mark">
 &lt;svg class="octicon octicon-link" viewBox="0 0 16 16" version="1.1" width="16" height="16" aria-hidden="true">&lt;path d="m7.775 3.275 1.25-1.25a3.5 3.5 0 1 1 4.95 4.95l-2.5 2.5a3.5 3.5 0 0 1-4.95 0 .751.751 0 0 1 .018-1.042.751.751 0 0 1 1.042-.018 1.998 1.998 0 0 0 2.83 0l2.5-2.5a2.002 2.002 0 0 0-2.83-2.83l-1.25 1.25a.751.751 0 0 1-1.042-.018.751.751 0 0 1-.018-1.042Zm-4.69 9.64a1.998 1.998 0 0 0 2.83 0l1.25-1.25a.751.751 0 0 1 1.042.018.751.751 0 0 1 .018 1.042l-1.25 1.25a3.5 3.5 0 1 1-4.95-4.95l2.5-2.5a3.5 3.5 0 0 1 4.95 0 .751.751 0 0 1-.018 1.042.751.751 0 0 1-1.042.018 1.998 1.998 0 0 0-2.83 0l-2.5 2.5a1.998 1.998 0 0 0 0 2.83Z">&lt;/path>&lt;/svg>
 &lt;/a>
&lt;/h1>&lt;h2 class="heading-element" id="概述">&lt;span>概述&lt;/span>
 &lt;a href="#%e6%a6%82%e8%bf%b0" class="heading-mark">
 &lt;svg class="octicon octicon-link" viewBox="0 0 16 16" version="1.1" width="16" height="16" aria-hidden="true">&lt;path d="m7.775 3.275 1.25-1.25a3.5 3.5 0 1 1 4.95 4.95l-2.5 2.5a3.5 3.5 0 0 1-4.95 0 .751.751 0 0 1 .018-1.042.751.751 0 0 1 1.042-.018 1.998 1.998 0 0 0 2.83 0l2.5-2.5a2.002 2.002 0 0 0-2.83-2.83l-1.25 1.25a.751.751 0 0 1-1.042-.018.751.751 0 0 1-.018-1.042Zm-4.69 9.64a1.998 1.998 0 0 0 2.83 0l1.25-1.25a.751.751 0 0 1 1.042.018.751.751 0 0 1 .018 1.042l-1.25 1.25a3.5 3.5 0 1 1-4.95-4.95l2.5-2.5a3.5 3.5 0 0 1 4.95 0 .751.751 0 0 1-.018 1.042.751.751 0 0 1-1.042.018 1.998 1.998 0 0 0-2.83 0l-2.5 2.5a1.998 1.998 0 0 0 0 2.83Z">&lt;/path>&lt;/svg>
 &lt;/a>
&lt;/h2>&lt;p>监控和告警是保障分布式爬虫系统稳定运行的关键。本章介绍如何构建完整的监控和告警体系。&lt;/p></description></item><item><title>Docker 容器化部署</title><link>https://overkazaf.github.io/reverse_engineering/web/06-engineering/docker_deployment/</link><pubDate>Thu, 07 Aug 2025 00:00:00 +0000</pubDate><author>overkazaf@gmail.com (+5)</author><guid>https://overkazaf.github.io/reverse_engineering/web/06-engineering/docker_deployment/</guid><description>&lt;h1 class="heading-element" id="docker-容器化部署">&lt;span>Docker 容器化部署&lt;/span>
 &lt;a href="#docker-%e5%ae%b9%e5%99%a8%e5%8c%96%e9%83%a8%e7%bd%b2" class="heading-mark">
 &lt;svg class="octicon octicon-link" viewBox="0 0 16 16" version="1.1" width="16" height="16" aria-hidden="true">&lt;path d="m7.775 3.275 1.25-1.25a3.5 3.5 0 1 1 4.95 4.95l-2.5 2.5a3.5 3.5 0 0 1-4.95 0 .751.751 0 0 1 .018-1.042.751.751 0 0 1 1.042-.018 1.998 1.998 0 0 0 2.83 0l2.5-2.5a2.002 2.002 0 0 0-2.83-2.83l-1.25 1.25a.751.751 0 0 1-1.042-.018.751.751 0 0 1-.018-1.042Zm-4.69 9.64a1.998 1.998 0 0 0 2.83 0l1.25-1.25a.751.751 0 0 1 1.042.018.751.751 0 0 1 .018 1.042l-1.25 1.25a3.5 3.5 0 1 1-4.95-4.95l2.5-2.5a3.5 3.5 0 0 1 4.95 0 .751.751 0 0 1-.018 1.042.751.751 0 0 1-1.042.018 1.998 1.998 0 0 0-2.83 0l-2.5 2.5a1.998 1.998 0 0 0 0 2.83Z">&lt;/path>&lt;/svg>
 &lt;/a>
&lt;/h1>&lt;h2 class="heading-element" id="概述">&lt;span>概述&lt;/span>
 &lt;a href="#%e6%a6%82%e8%bf%b0" class="heading-mark">
 &lt;svg class="octicon octicon-link" viewBox="0 0 16 16" version="1.1" width="16" height="16" aria-hidden="true">&lt;path d="m7.775 3.275 1.25-1.25a3.5 3.5 0 1 1 4.95 4.95l-2.5 2.5a3.5 3.5 0 0 1-4.95 0 .751.751 0 0 1 .018-1.042.751.751 0 0 1 1.042-.018 1.998 1.998 0 0 0 2.83 0l2.5-2.5a2.002 2.002 0 0 0-2.83-2.83l-1.25 1.25a.751.751 0 0 1-1.042-.018.751.751 0 0 1-.018-1.042Zm-4.69 9.64a1.998 1.998 0 0 0 2.83 0l1.25-1.25a.751.751 0 0 1 1.042.018.751.751 0 0 1 .018 1.042l-1.25 1.25a3.5 3.5 0 1 1-4.95-4.95l2.5-2.5a3.5 3.5 0 0 1 4.95 0 .751.751 0 0 1-.018 1.042.751.751 0 0 1-1.042.018 1.998 1.998 0 0 0-2.83 0l-2.5 2.5a1.998 1.998 0 0 0 0 2.83Z">&lt;/path>&lt;/svg>
 &lt;/a>
&lt;/h2>&lt;p>Docker 容器化使爬虫项目具备可移植性、可扩展性和易维护性。本章介绍如何将爬虫项目容器化并进行生产部署。&lt;/p></description></item><item><title>反爬虫对抗框架</title><link>https://overkazaf.github.io/reverse_engineering/web/06-engineering/anti_anti_scraping_framework/</link><pubDate>Wed, 07 May 2025 00:00:00 +0000</pubDate><author>overkazaf@gmail.com (+5)</author><guid>https://overkazaf.github.io/reverse_engineering/web/06-engineering/anti_anti_scraping_framework/</guid><description>&lt;h1 class="heading-element" id="反爬虫对抗框架">&lt;span>反爬虫对抗框架&lt;/span>
 &lt;a href="#%e5%8f%8d%e7%88%ac%e8%99%ab%e5%af%b9%e6%8a%97%e6%a1%86%e6%9e%b6" class="heading-mark">
 &lt;svg class="octicon octicon-link" viewBox="0 0 16 16" version="1.1" width="16" height="16" aria-hidden="true">&lt;path d="m7.775 3.275 1.25-1.25a3.5 3.5 0 1 1 4.95 4.95l-2.5 2.5a3.5 3.5 0 0 1-4.95 0 .751.751 0 0 1 .018-1.042.751.751 0 0 1 1.042-.018 1.998 1.998 0 0 0 2.83 0l2.5-2.5a2.002 2.002 0 0 0-2.83-2.83l-1.25 1.25a.751.751 0 0 1-1.042-.018.751.751 0 0 1-.018-1.042Zm-4.69 9.64a1.998 1.998 0 0 0 2.83 0l1.25-1.25a.751.751 0 0 1 1.042.018.751.751 0 0 1 .018 1.042l-1.25 1.25a3.5 3.5 0 1 1-4.95-4.95l2.5-2.5a3.5 3.5 0 0 1 4.95 0 .751.751 0 0 1-.018 1.042.751.751 0 0 1-1.042.018 1.998 1.998 0 0 0-2.83 0l-2.5 2.5a1.998 1.998 0 0 0 0 2.83Z">&lt;/path>&lt;/svg>
 &lt;/a>
&lt;/h1>&lt;h2 class="heading-element" id="概述">&lt;span>概述&lt;/span>
 &lt;a href="#%e6%a6%82%e8%bf%b0" class="heading-mark">
 &lt;svg class="octicon octicon-link" viewBox="0 0 16 16" version="1.1" width="16" height="16" aria-hidden="true">&lt;path d="m7.775 3.275 1.25-1.25a3.5 3.5 0 1 1 4.95 4.95l-2.5 2.5a3.5 3.5 0 0 1-4.95 0 .751.751 0 0 1 .018-1.042.751.751 0 0 1 1.042-.018 1.998 1.998 0 0 0 2.83 0l2.5-2.5a2.002 2.002 0 0 0-2.83-2.83l-1.25 1.25a.751.751 0 0 1-1.042-.018.751.751 0 0 1-.018-1.042Zm-4.69 9.64a1.998 1.998 0 0 0 2.83 0l1.25-1.25a.751.751 0 0 1 1.042.018.751.751 0 0 1 .018 1.042l-1.25 1.25a3.5 3.5 0 1 1-4.95-4.95l2.5-2.5a3.5 3.5 0 0 1 4.95 0 .751.751 0 0 1-.018 1.042.751.751 0 0 1-1.042.018 1.998 1.998 0 0 0-2.83 0l-2.5 2.5a1.998 1.998 0 0 0 0 2.83Z">&lt;/path>&lt;/svg>
 &lt;/a>
&lt;/h2>&lt;p>反爬虫对抗框架是一个综合性的系统，集成了多种对抗技术，用于突破各类反爬虫防护。本章介绍如何设计一个通用的反爬虫对抗框架。&lt;/p></description></item><item><title>消息队列应用</title><link>https://overkazaf.github.io/reverse_engineering/web/06-engineering/message_queue_application/</link><pubDate>Sun, 27 Apr 2025 00:00:00 +0000</pubDate><author>overkazaf@gmail.com (+5)</author><guid>https://overkazaf.github.io/reverse_engineering/web/06-engineering/message_queue_application/</guid><description>&lt;h1 class="heading-element" id="消息队列应用">&lt;span>消息队列应用&lt;/span>
 &lt;a href="#%e6%b6%88%e6%81%af%e9%98%9f%e5%88%97%e5%ba%94%e7%94%a8" class="heading-mark">
 &lt;svg class="octicon octicon-link" viewBox="0 0 16 16" version="1.1" width="16" height="16" aria-hidden="true">&lt;path d="m7.775 3.275 1.25-1.25a3.5 3.5 0 1 1 4.95 4.95l-2.5 2.5a3.5 3.5 0 0 1-4.95 0 .751.751 0 0 1 .018-1.042.751.751 0 0 1 1.042-.018 1.998 1.998 0 0 0 2.83 0l2.5-2.5a2.002 2.002 0 0 0-2.83-2.83l-1.25 1.25a.751.751 0 0 1-1.042-.018.751.751 0 0 1-.018-1.042Zm-4.69 9.64a1.998 1.998 0 0 0 2.83 0l1.25-1.25a.751.751 0 0 1 1.042.018.751.751 0 0 1 .018 1.042l-1.25 1.25a3.5 3.5 0 1 1-4.95-4.95l2.5-2.5a3.5 3.5 0 0 1 4.95 0 .751.751 0 0 1-.018 1.042.751.751 0 0 1-1.042.018 1.998 1.998 0 0 0-2.83 0l-2.5 2.5a1.998 1.998 0 0 0 0 2.83Z">&lt;/path>&lt;/svg>
 &lt;/a>
&lt;/h1>&lt;h2 class="heading-element" id="概述">&lt;span>概述&lt;/span>
 &lt;a href="#%e6%a6%82%e8%bf%b0" class="heading-mark">
 &lt;svg class="octicon octicon-link" viewBox="0 0 16 16" version="1.1" width="16" height="16" aria-hidden="true">&lt;path d="m7.775 3.275 1.25-1.25a3.5 3.5 0 1 1 4.95 4.95l-2.5 2.5a3.5 3.5 0 0 1-4.95 0 .751.751 0 0 1 .018-1.042.751.751 0 0 1 1.042-.018 1.998 1.998 0 0 0 2.83 0l2.5-2.5a2.002 2.002 0 0 0-2.83-2.83l-1.25 1.25a.751.751 0 0 1-1.042-.018.751.751 0 0 1-.018-1.042Zm-4.69 9.64a1.998 1.998 0 0 0 2.83 0l1.25-1.25a.751.751 0 0 1 1.042.018.751.751 0 0 1 .018 1.042l-1.25 1.25a3.5 3.5 0 1 1-4.95-4.95l2.5-2.5a3.5 3.5 0 0 1 4.95 0 .751.751 0 0 1-.018 1.042.751.751 0 0 1-1.042.018 1.998 1.998 0 0 0-2.83 0l-2.5 2.5a1.998 1.998 0 0 0 0 2.83Z">&lt;/path>&lt;/svg>
 &lt;/a>
&lt;/h2>&lt;p>消息队列是分布式爬虫系统的核心组件，用于解耦生产者和消费者、削峰填谷、异步处理。本章介绍常见消息队列的使用。&lt;/p></description></item><item><title>分布式爬虫架构</title><link>https://overkazaf.github.io/reverse_engineering/web/06-engineering/distributed_scraping/</link><pubDate>Sat, 26 Apr 2025 00:00:00 +0000</pubDate><author>overkazaf@gmail.com (+5)</author><guid>https://overkazaf.github.io/reverse_engineering/web/06-engineering/distributed_scraping/</guid><description>&lt;h1 class="heading-element" id="分布式爬虫架构">&lt;span>分布式爬虫架构&lt;/span>
 &lt;a href="#%e5%88%86%e5%b8%83%e5%bc%8f%e7%88%ac%e8%99%ab%e6%9e%b6%e6%9e%84" class="heading-mark">
 &lt;svg class="octicon octicon-link" viewBox="0 0 16 16" version="1.1" width="16" height="16" aria-hidden="true">&lt;path d="m7.775 3.275 1.25-1.25a3.5 3.5 0 1 1 4.95 4.95l-2.5 2.5a3.5 3.5 0 0 1-4.95 0 .751.751 0 0 1 .018-1.042.751.751 0 0 1 1.042-.018 1.998 1.998 0 0 0 2.83 0l2.5-2.5a2.002 2.002 0 0 0-2.83-2.83l-1.25 1.25a.751.751 0 0 1-1.042-.018.751.751 0 0 1-.018-1.042Zm-4.69 9.64a1.998 1.998 0 0 0 2.83 0l1.25-1.25a.751.751 0 0 1 1.042.018.751.751 0 0 1 .018 1.042l-1.25 1.25a3.5 3.5 0 1 1-4.95-4.95l2.5-2.5a3.5 3.5 0 0 1 4.95 0 .751.751 0 0 1-.018 1.042.751.751 0 0 1-1.042.018 1.998 1.998 0 0 0-2.83 0l-2.5 2.5a1.998 1.998 0 0 0 0 2.83Z">&lt;/path>&lt;/svg>
 &lt;/a>
&lt;/h1>&lt;h2 class="heading-element" id="概述">&lt;span>概述&lt;/span>
 &lt;a href="#%e6%a6%82%e8%bf%b0" class="heading-mark">
 &lt;svg class="octicon octicon-link" viewBox="0 0 16 16" version="1.1" width="16" height="16" aria-hidden="true">&lt;path d="m7.775 3.275 1.25-1.25a3.5 3.5 0 1 1 4.95 4.95l-2.5 2.5a3.5 3.5 0 0 1-4.95 0 .751.751 0 0 1 .018-1.042.751.751 0 0 1 1.042-.018 1.998 1.998 0 0 0 2.83 0l2.5-2.5a2.002 2.002 0 0 0-2.83-2.83l-1.25 1.25a.751.751 0 0 1-1.042-.018.751.751 0 0 1-.018-1.042Zm-4.69 9.64a1.998 1.998 0 0 0 2.83 0l1.25-1.25a.751.751 0 0 1 1.042.018.751.751 0 0 1 .018 1.042l-1.25 1.25a3.5 3.5 0 1 1-4.95-4.95l2.5-2.5a3.5 3.5 0 0 1 4.95 0 .751.751 0 0 1-.018 1.042.751.751 0 0 1-1.042.018 1.998 1.998 0 0 0-2.83 0l-2.5 2.5a1.998 1.998 0 0 0 0 2.83Z">&lt;/path>&lt;/svg>
 &lt;/a>
&lt;/h2>&lt;p>随着数据规模的不断扩大，单机爬虫在性能、稳定性和效率上遇到了瓶颈。分布式爬虫架构通过将爬取任务分散到多台机器上并行执行，可以大幅提升爬取效率，实现千万级甚至亿级的数据采集。&lt;/p></description></item></channel></rss>