With the development of Internet technology, the transmission and display of real-time data are receiving more and more attention. In the medical industry, real-time ECG display is critical to monitoring patients' lives. In Java language, we can use Websocket technology to display real-time electrocardiogram. Next, this article will introduce how to use Java Websocket to display real-time electrocardiogram and give specific code examples.
1. What is Java Websocket
Websocket is a new type of network communication protocol that enables two-way communication between the client and the server. Compared with the HTTP protocol, the Websocket protocol can push data in real time and improve the real-time nature of data transmission. In the Java language, we can use the API in the javax.websocket package to implement Websocket communication.
2. The process of realizing real-time electrocardiogram display
(1) Create Websocket server side
We can create the Websocket server side by implementing the javax.websocket.Endpoint class. The specific code is as follows:
import javax.websocket.server.ServerEndpoint; @ServerEndpoint("/heartBeat") public class HeartBeatEndpoint { }
In this Endpoint class, we use the @ServerEndpoint annotation to specify the server-side address. Here we set the server side address to "/heartBeat".
(2) Send real-time ECG data to the client
After creating the Websocket service on the server side, we need to send real-time ECG data to the client. In this example, we use simulated ECG data, but you can also modify the data sent yourself. The specific code is as follows:
private void sendHeartBeat(Session session, int count) { Random random = new Random(); float[] data = new float[100]; for (int i = 0; i < 100; i++) { data[i] = (float) (random.nextGaussian() * 0.1 + Math.sin(count * 0.1 + i * 0.1)); } String json = "{"command":"heartbeat","data":" + Arrays.toString(data) + "}"; try { session.getBasicRemote().sendText(json); } catch (IOException e) { e.printStackTrace(); } }
In this method, we use the Random class to generate random data, and then send the data to the client in JSON format. The data format is:
{ "command": "heartbeat", "data": [1.0, 2.0, 3.0, ..., 100.0] }
(3) Create Websocket client
We can use JavaScript or other languages to implement the Websocket client, here we use JavaScript. The specific code is as follows:
var ws = new WebSocket("ws://localhost:8080/heartBeat"); ws.onmessage = function(event) { var data = JSON.parse(event.data); var command = data.command; var data = data.data; if (command === "heartbeat") { // 展示实时心电图数据 showHeartBeat(data); } }
In this code, we use the WebSocket class to create a connection and set the server-side address. Next, we use the onmessage event handler to receive data from the server side. When it is detected that the command is "heartbeat", we call the showHeartBeat method to display the data.
(4) Display real-time ECG data
Finally, we need to display the real-time ECG data. Here, we use the Chart.js library to display ECG data. The specific code is as follows:
function showHeartBeat(data) { // 去除第一个元素 data.shift(); var ctx = document.getElementById('heartBeatChart').getContext('2d'); var chart = new Chart(ctx, { type: 'line', data: { labels: Array.apply(null, {length: data.length}).map(Number.call, Number), datasets: [{ data: data, borderColor: 'rgba(255,99,132)', backgroundColor: 'rgba(255,99,132,0.5)', fill: false }] }, options: { legend: false, tooltips: false } }); }
In this code, we create a Chart.js line chart and pass in the electrocardiogram data. Here, we set the Y-axis coordinate of the electrocardiogram as the heart rate value, the X-axis coordinate as time, and the time interval is 0.1 seconds. In the chart, we display the ECG data with red lines.
3. Complete code example
The following is a complete Java and JavaScript code example:
Java code:
import java.io.IOException; import java.util.Arrays; import java.util.Random; import javax.websocket.Endpoint; import javax.websocket.EndpointConfig; import javax.websocket.Session; import javax.websocket.server.ServerEndpoint; @ServerEndpoint("/heartBeat") public class HeartBeatEndpoint implements Endpoint { private Session session; private Timer timer; @Override public void onOpen(Session session, EndpointConfig config) { this.session = session; timer = new Timer(); timer.scheduleAtFixedRate(new TimerTask() { int count = 0; @Override public void run() { sendHeartBeat(session, count++); } }, 0, 100); } @Override public void onClose(Session session, CloseReason reason) { timer.cancel(); } @Override public void onError(Session session, Throwable throwable) { throwable.printStackTrace(); } private void sendHeartBeat(Session session, int count) { Random random = new Random(); float[] data = new float[100]; for (int i = 0; i < 100; i++) { data[i] = (float) (random.nextGaussian() * 0.1 + Math.sin(count * 0.1 + i * 0.1)); } String json = "{"command":"heartbeat","data":" + Arrays.toString(data) + "}"; try { session.getBasicRemote().sendText(json); } catch (IOException e) { e.printStackTrace(); } } }
JavaScript code:
var ws = new WebSocket("ws://localhost:8080/heartBeat"); ws.onmessage = function(event) { var data = JSON.parse(event.data); var command = data.command; var data = data.data; if (command === "heartbeat") { // 展示实时心电图数据 showHeartBeat(data); } } function showHeartBeat(data) { // 去除第一个元素 data.shift(); var ctx = document.getElementById('heartBeatChart').getContext('2d'); var chart = new Chart(ctx, { type: 'line', data: { labels: Array.apply(null, {length: data.length}).map(Number.call, Number), datasets: [{ data: data, borderColor: 'rgba(255,99,132)', backgroundColor: 'rgba(255,99,132,0.5)', fill: false }] }, options: { legend: false, tooltips: false } }); }
4. Summary
This article introduces how to use Java Websocket to implement real-time electrocardiogram display, and gives specific code examples. With the popularization and continuous improvement of Websocket technology, we believe that the transmission and display of real-time data will become more convenient and efficient. Hope this article is helpful to everyone.
The above is the detailed content of How to use Java Websocket to implement real-time ECG display?. For more information, please follow other related articles on the PHP Chinese website!

本篇文章给大家带来了关于java的相关知识,其中主要介绍了关于结构化数据处理开源库SPL的相关问题,下面就一起来看一下java下理想的结构化数据处理类库,希望对大家有帮助。

本篇文章给大家带来了关于java的相关知识,其中主要介绍了关于PriorityQueue优先级队列的相关知识,Java集合框架中提供了PriorityQueue和PriorityBlockingQueue两种类型的优先级队列,PriorityQueue是线程不安全的,PriorityBlockingQueue是线程安全的,下面一起来看一下,希望对大家有帮助。

本篇文章给大家带来了关于java的相关知识,其中主要介绍了关于java锁的相关问题,包括了独占锁、悲观锁、乐观锁、共享锁等等内容,下面一起来看一下,希望对大家有帮助。

本篇文章给大家带来了关于java的相关知识,其中主要介绍了关于多线程的相关问题,包括了线程安装、线程加锁与线程不安全的原因、线程安全的标准类等等内容,希望对大家有帮助。

本篇文章给大家带来了关于java的相关知识,其中主要介绍了关于枚举的相关问题,包括了枚举的基本操作、集合类对枚举的支持等等内容,下面一起来看一下,希望对大家有帮助。

本篇文章给大家带来了关于Java的相关知识,其中主要介绍了关于关键字中this和super的相关问题,以及他们的一些区别,下面一起来看一下,希望对大家有帮助。

本篇文章给大家带来了关于java的相关知识,其中主要介绍了关于平衡二叉树(AVL树)的相关知识,AVL树本质上是带了平衡功能的二叉查找树,下面一起来看一下,希望对大家有帮助。

封装是一种信息隐藏技术,是指一种将抽象性函式接口的实现细节部分包装、隐藏起来的方法;封装可以被认为是一个保护屏障,防止指定类的代码和数据被外部类定义的代码随机访问。封装可以通过关键字private,protected和public实现。


Hot AI Tools

Undresser.AI Undress
AI-powered app for creating realistic nude photos

AI Clothes Remover
Online AI tool for removing clothes from photos.

Undress AI Tool
Undress images for free

Clothoff.io
AI clothes remover

AI Hentai Generator
Generate AI Hentai for free.

Hot Article

Hot Tools

EditPlus Chinese cracked version
Small size, syntax highlighting, does not support code prompt function

ZendStudio 13.5.1 Mac
Powerful PHP integrated development environment

Safe Exam Browser
Safe Exam Browser is a secure browser environment for taking online exams securely. This software turns any computer into a secure workstation. It controls access to any utility and prevents students from using unauthorized resources.

Dreamweaver Mac version
Visual web development tools

VSCode Windows 64-bit Download
A free and powerful IDE editor launched by Microsoft
