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Car Thieves Can Hack into Today’s Computerized Vehicles

2023-08-21 13:21:56
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These days, cars are computer centers on wheels. Today’s vehicles can contain over 100 computers and millions of lines of software code. These computers are all networked together and can operate all aspects of your vehicle.

It’s not surprising, then, that car theft has also become high-tech.

The ones and zeros of getting from A to B

The computers in a vehicle can be divided into four categories. Many computers are dedicated to operating the vehicle’s drive train, including controlling the fuel, battery or both, monitoring emissions and operating cruise control.

The second category is dedicated to providing safety. These computers collect data from the vehicle and the outside environment and provide functions like lane correction, automatic braking and backup monitoring.

The third category is infotainment systems that provide music and video and can interface with your personal devices through Bluetooth wireless communications. Many vehicles can also connect to cellular services and provide Wi-Fi connectivity. The final category is the navigation system, including the car’s GPS system.

Computers in one category often need to communicate with computers in another category. For example, the safety system must be able to control the drive train and the infotainment systems.

One difference between the network in your car and a typical computer network is that all devices in the car trust each other. Therefore, if an attacker can access one computer, they can easily access other computers in the car.

As with any new technology, some aspects of today’s cars make it harder for thieves, and some make it easier. There are several methods of stealing a car that are enabled by today’s technology.

Hijacking wireless keys

One of the high-tech features is the use of keyless entry and remote start. Keyless entry has become common on many vehicles and is very convenient. The fob you have is paired to your car using a code that both your car and fob know, which prevents you from starting other cars. The difference between keyless entry and the remotes that unlock your car is that keyless entry fobs are always transmitting, so when you get near your car and touch the door, it will unlock. You had to press a button for old fobs to unlock the car door and then use your key to start the car.

The first keyless fobs transmitted a digital code to the car, and it would unlock. Thieves quickly realized they could eavesdrop on the radio signal and make a recording. They could then “replay” the recording and unlock the car. To help with security, the newest fobs use a one-time code to open the door.

One method of stealing cars involves using two devices to build an electronic bridge between your fob and your car. One person goes near the car and uses a device to trick the car into sending a digital code used to verify the owner’s fob. The thief’s device sends that signal to an accomplice standing near the owner’s home, which transmits a copy of the car’s signal. When the owner’s fob replies, the device near the house sends the fob signal to the device near the car, and the car opens. The thieves can then drive off, but once they turn the car off they cannot restart it. Carmakers are looking to fix this by ensuring the fob is in the car for it to be driven.

Hacking the network

The network used by all computers in a car to communicate is called a controller area network bus. It’s designed to allow the computers in a car to send commands and information to each other. The CAN bus was not designed for security, because all of the devices are assumed to be self-contained. But that presumption leaves the CAN bus vulnerable to hackers.

Car thieves often try to hack into the CAN bus and from there the computers that control the car’s engine. The engine control unit stores a copy of the wireless key code, and thieves can clone this to a blank key fob to use to start the victim’s car. One method is accessing a car’s onboard diagnostics through a physical port or wireless connection meant for repair technicians. Thieves who access the onboard diagnostics gain access to the CAN bus.

Another network hacking method is breaking through a headlight to reach the CAN bus via a direct wiring connection.

Throwback attack

Modern thieves also try the USB hack, which exploits a design flaw in Hyundai and Kia vehicles. This is more of an old-style hot-wiring of a car than a high-tech computer issue. It is named the USB hack because when thieves break into a car, they look for a slot in the steering column. It turns out that a USB connector fits into the slot, and this allows you to turn on the ignition.

So all someone has to do is break the window, insert a USB connector and start the car. This technique has become infamous thanks to a loose affiliation of young car thieves in Milwaukee dubbed the Kia Boyz who have gained notoriety on TikTok.

Hyundai and Kia have issued an update that closes the vulnerability by requiring the fob to be in the car before you can start it.

Limiting your car’s vulnerability

Given there are so many different car models, and their complexity is increasing, there are likely to continue to be new and creative ways for thieves to steal cars.

So what can you do? Some things are the same as always: Keep your vehicle locked, and don’t leave your key fob in it. What is new is keeping your vehicle’s software up to date, just as you do with your phone and computer.

This article was originally published on The Conversation. Read the original article.

参考译文
汽车窃贼可入侵如今的电脑化车辆
如今,汽车就像轮子上的电脑中心。现代汽车可能内置超过100台计算机和数百万行的软件代码。这些计算机相互联网,可以操作汽车的各个方面。因此,汽车盗窃也变得高科技起来。 从A到B的一和零 汽车中的计算机可以分为四类。许多计算机用于操作汽车的动力系统,包括控制燃油、电池或两者,监测排放,并操作巡航控制。第二类计算机负责安全功能。这些计算机收集来自汽车和外部环境的数据,提供车道修正、自动刹车和后视监控等功能。第三类是信息娱乐系统,提供音乐和视频,并能通过蓝牙无线通讯与个人设备连接。许多汽车还可以连接蜂窝网络,提供Wi-Fi。最后一类是导航系统,包括汽车的GPS系统。某一类计算机通常需要与其他类计算机通信。例如,安全系统必须能够控制动力系统和信息娱乐系统。 与普通计算机网络相比,汽车中的网络有一个显著差异,即汽车内的所有设备彼此信任。因此,如果攻击者可以访问一台计算机,他们就能轻松访问汽车中的其他计算机。 正如任何新技术一样,当今汽车的某些方面让窃贼更难下手,而另一些方面却让窃贼更容易得手。目前已有多种方法,利用现代技术进行汽车盗窃。 无线钥匙劫持 一种高科技功能是使用无钥匙进入和远程启动。无钥匙进入功能在许多汽车上已变得普遍,并且非常方便。你拥有的钥匙扣通过一个代码与你的汽车配对,你的汽车和钥匙扣都知道这个代码,从而防止你启动其他车辆。无钥匙进入与解锁汽车的遥控器的区别在于,无钥匙进入的钥匙扣始终在发送信号,因此当你靠近汽车并触摸车门时,车门就会自动解锁。而旧款钥匙扣必须按下按钮才能解锁车门,然后再用钥匙启动汽车。 最初的无钥匙进入钥匙扣向汽车发送数字代码,从而解锁车门。窃贼很快发现他们可以监听无线电波并记录信号。他们随后可以“重放”这些记录,从而解锁汽车。为了提高安全性,最新的钥匙扣使用一次性代码来打开车门。 一种汽车盗取方法是使用两台设备在你的钥匙扣和汽车之间建立电子桥梁。一名窃贼靠近汽车,使用设备诱骗汽车发送用于验证钥匙扣的数字代码。该设备将信号发送给站在车主家附近的同伙,后者将汽车的信号复制发送。当车主的钥匙扣回应时,靠近房子的设备将钥匙扣信号发送给靠近汽车的设备,从而打开汽车。窃贼可以驾车离去,但一旦他们关闭引擎,就无法重新启动汽车。为了解决这个问题,汽车制造商正努力确保钥匙扣在车内时才能驾驶汽车。 劫持汽车网络 汽车中所有计算机通信使用的网络称为控制器局域网总线(CAN bus)。它旨在让汽车中的计算机相互发送命令和信息。CAN bus 并非为安全性设计的,因为假设所有设备都是自包含的。但这种假设使 CAN bus 面临黑客攻击的威胁。汽车窃贼常常试图入侵 CAN bus,进而攻击控制汽车引擎的计算机。引擎控制单元存储了无线钥匙的代码,窃贼可以将其复制到空白钥匙扣中,从而启动受害者的汽车。 一种方法是通过物理端口或无线连接访问汽车的车载诊断系统(OBD)。窃贼一旦获得车载诊断系统的访问权限,就能进入 CAN bus。另一种网络入侵方法是通过打破车灯,利用直接连线进入 CAN bus。 回溯式攻击 现代窃贼还尝试使用 USB 黑客攻击,该方法利用了现代起亚和现代汽车的设计漏洞。这更像是传统的汽车“短接”启动,而不是高科技的电脑问题。该方法被称为 USB 黑客攻击,是因为当窃贼闯入汽车时,他们会寻找方向盘柱上的插槽,而恰好一个 USB 插头可以插入这个插槽,从而启动点火系统。因此,有人只需打破车窗,插入 USB 插头,就可以启动汽车。这种方法因一群来自密尔沃基的年轻汽车窃贼(被称为“Kia Boyz”)在 TikTok 上走红而声名狼藉。现代和起亚已经发布了一个更新,通过要求钥匙扣必须在车内才能启动汽车来填补这一漏洞。 减少你的汽车被攻击的风险 鉴于汽车型号繁多且复杂性不断增加,未来可能会继续出现新的、更有创意的汽车盗窃方式。那么,你能做些什么呢?有些方法与以往相同:锁好你的车,不要将钥匙扣留在车内。新的方法是像更新你的手机和电脑一样,确保你的汽车软件保持最新。 本文最初发表于 The Conversation。阅读原文。
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