Miscellaneous Performance Metrics

This section looks at some of the other commonly used benchmarks representative of the performance of specific real-world applications.

3D Rendering - CINEBENCH R15

We use CINEBENCH R15 for 3D rendering evaluation. The program provides three benchmark modes - OpenGL, single threaded and multi-threaded. Evaluation of different PC configurations in all three modes provided us the following results.

3D Rendering - CINEBENCH R15 - Single Thread

3D Rendering - CINEBENCH R15 - Multiple Threads

3D Rendering - CINEBENCH R15 - OpenGL

The high turbo frequency allows the NUC8i7BEH to come out on top in the single-threaded cases. However, the TDP limitations and the limited thermals push the system to the middle of the pack in the multi-threaded case. For the OpenGL case, the systems with discrete GPUs provide better results compared to the NUC8i7BEH.

x265 Benchmark

Next up, we have some video encoding benchmarks using x265 v2.8. The appropriate encoder executable is chosen based on the supported CPU features. In the first case, we encode 600 1080p YUV 4:2:0 frames into a 1080p30 HEVC Main-profile compatible video stream at 1 Mbps and record the average number of frames encoded per second.

Video Encoding - x265 - 1080p

Our second test case is 1200 4K YUV 4:2:0 frames getting encoded into a 4Kp60 HEVC Main10-profile video stream at 35 Mbps. The encoding FPS is recorded.

Video Encoding - x265 - 4K 10-bit

TDP limitations prevent the Bean Canyon NUC from performing better than the 45W / 65W TDP-equipped systems in the x265 benchmark passes.

7-Zip

7-Zip is a very effective and efficient compression program, often beating out OpenCL accelerated commercial programs in benchmarks even while using just the CPU power. 7-Zip has a benchmarking program that provides tons of details regarding the underlying CPU's efficiency. In this subsection, we are interested in the compression and decompression rates when utilizing all the available threads for the LZMA algorithm.

7-Zip LZMA Compression Benchmark

7-Zip LZMA Decompression Benchmark

The raw clock rates and core counts pull the Core i7-8700 and the Core i7-8809G ahead of the Core i7-8559U in the 7-Zip benchmarks.

Cryptography Benchmarks

Cryptography has become an indispensable part of our interaction with computing systems. Almost all modern systems have some sort of hardware-acceleration for making cryptographic operations faster and more power efficient. In this sub-section, we look at two different real-world applications that may make use of this acceleration.

BitLocker is a Windows features that encrypts entire disk volumes. While drives that offer encryption capabilities are dealt with using that feature, most legacy systems and external drives have to use the host system implementation. Windows has no direct benchmark for BitLocker. However, we cooked up a BitLocker operation sequence to determine the adeptness of the system at handling BitLocker operations. We start off with a 2.5GB RAM drive in which a 2GB VHD (virtual hard disk) is created. This VHD is then mounted, and BitLocker is enabled on the volume. Once the BitLocker encryption process gets done, BitLocker is disabled. This triggers a decryption process. The times taken to complete the encryption and decryption are recorded. This process is repeated 25 times, and the average of the last 20 iterations is graphed below.

BitLocker Encryption Benchmark

BitLocker Decryption Benchmark

In addition to the clock rate, the performance in this benchmark is also influenced by the DRAM speed. Thanks to the DDR4-3000 SODIMMs, the Bean Canyon NUC manages to get into the top half of the numbers set.

Creation of secure archives is best done through the use of AES-256 as the encryption method while password protecting ZIP files. We re-use the benchmark mode of 7-Zip to determine the AES256-CBC encryption and decryption rates using pure software as well as AES-NI. Note that the 7-Zip benchmark uses a 48KB buffer for this purpose.

7-Zip AES256-CBC Encryption Benchmark

7-Zip AES256-CBC Decryption Benchmark

Removing the DRAM out of the equation results in a slight re-ordering of the results. However, the Bean Canyon NUC still manages to be in the top half.

Yet another cryptography application is secure network communication. OpenSSL can take advantage of the acceleration provided by the host system to make operations faster. It also has a benchmark mode that can use varying buffer sizes. We recorded the processing rate for a 8KB buffer using the hardware-accelerated AES256-CBC-HAC-SHA1 feature.

OpenSSL Encryption Benchmark

OpenSSL Decryption Benchmark

The Bean Canyon NUC turns out to be the best performer in this benchmark.

Agisoft Photoscan

Agisoft PhotoScan is a commercial program that converts 2D images into 3D point maps, meshes and textures. The program designers sent us a command line version in order to evaluate the efficiency of various systems that go under our review scanner. The command line version has two benchmark modes, one using the CPU and the other using both the CPU and GPU (via OpenCL). We present the results from our evaluation using the CPU mode only. The benchmark (v1.3) takes 84 photographs and does four stages of computation:

  • Stage 1: Align Photographs (capable of OpenCL acceleration)
  • Stage 2: Build Point Cloud (capable of OpenCL acceleration)
  • Stage 3: Build Mesh
  • Stage 4: Build Textures

We record the time taken for each stage. Since various elements of the software are single threaded, and others multithreaded, it is interesting to record the effects of CPU generations, speeds, number of cores, and DRAM parameters using this software.

Agisoft PhotoScan Benchmark - Stage 1

Agisoft PhotoScan Benchmark - Stage 2

Agisoft PhotoScan Benchmark - Stage 3

Agisoft PhotoScan Benchmark - Stage 4

The Bean Canyon NUC performs admirably, beaten out only by CPUs with higher core counts and/or clock speeds.

Dolphin Emulator

Wrapping up our application benchmark numbers is the new Dolphin Emulator (v5) benchmark mode results. This is again a test of the CPU capabilities, and the Bean Canyon NUC comes in just behind the ASRock DeskMini Z370 (equipped with a hexa-core Core i7-8700).

Dolphin Emulator Benchmark

UL Benchmarks - PCMark, 3DMark, and VRMark GPU Performance - Gaming Workloads
Comments Locked

81 Comments

View All Comments

  • Hixbot - Monday, April 8, 2019 - link

    You really need noise measurements in HTPC reviews.
  • vortmax2 - Tuesday, April 9, 2019 - link

    Any try an eGPU setup using the TB port? How's it work?
  • vortmax2 - Tuesday, April 9, 2019 - link

    Just read through the entire article now and noticed they already tested it...looks like a neat little gaming rig.
  • alpha754293 - Tuesday, April 9, 2019 - link

    TL;DR: If you don't do much with it, it's great. Else; it's severely thermally castrated.

    My biggest problem with this unit is the fact that at full load, the processor CANNOT run at full speed that it otherwise SHOULD be able to run at due to Intel's crappy thermal management solution that they have designed and engineered for this.

    You can see that in the AIDA64 system stress test that the CPU caps out at 3.0 GHz during that portion of the test because it is being choked/castrated by the crappy thermal management system.

    I have one of these at home and it will hit the Tj limit of 100 C with an ambient temperature of around 22-23 C which means that in order for it to stay within the thermal power limit, it can ONLY run at 3.0 GHz rather than at its full turbo speed.

    In summary, if you don't do much with it, these things are great.

    But if you intend on doing basically ANYTHING else with it (it was able to hit the thermal power limit just by installing Windows 10 updates), it's not a very good system since you can't make use of its full potential.

    The Core i3 variants run a little bit better, but you also get less performance out of a Core i3 to begin with. (I have another slightly older NUC that has a Core i3 7100U and that one actually runs "better" in the sense that at least I can make full use of the CPU without the CPU running into the thermal limit and then getting severely throttled just to keep it below the thermal power limit.)
  • acme64 - Thursday, April 11, 2019 - link

    only wish i have is they should include dual monitor out
  • voicequal - Saturday, April 13, 2019 - link

    Prime95 w/Furmark test is concerning. CPU clock drops to 1 GHz while GPU & CPU are under heavy load. It looks like the system is heavily biased toward GPU performance, so high GPU usage robs the CPU of clock frequency.
  • Brightontech - Sunday, April 21, 2019 - link

    https://www.brightontech.net/2019/04/audiovideo-ed...
    Video Editor and Video Converter
  • mikato - Tuesday, April 30, 2019 - link

    The memory you have in the gallery photos does not match the memory listed in the specs table on page 1. In fact, I'm not sure that RipjawsV F4-3000C16-16GRS even exists since I can't find it on newegg or amazon.
  • NAPWR - Saturday, July 13, 2019 - link

    Must be 2 x 8:

    https://www.amazon.com/G-SKILL-Ripjaws-PC4-24000-3...
  • NAPWR - Saturday, July 13, 2019 - link

    I must admit,
    The NUC8i7BEH was recommended to me for using as a PHPBB home Server.

    So I now have the Samsung M.2 Evo Plus 1TB with the RipJaws 2x 16GB 2400 as recommended.

    Next is the Sata III ssd, then installing Linux Mint Mate 19.

Log in

Don't have an account? Sign up now