Pricelists.org Pricelists.org Log in Sign up

Enhancing Embedded Systems Simulation

☆☆☆☆☆ (0 reviews)
Show price history
Enhancing Embedded Systems Simulation
Lowest price (incl. delivery)
15 729,00 JPY
Typical price1 742,62 PLN
Lowest (90 days)99,99 PLN
Offers6
Last updated1 week ago
See best offer
Price history (90 days)
Full history
2026-08-08 2026-08-15
Price History
Updated AtPrice
2026-08-08109,99
2026-08-1599,99
Seller Product price Delivery Total Availability Updated
SP SpringerNatureLink Shop INT 15 729,00 JPY free 15 729,00 JPY Available 3 days ago View offer
SP Springer Nature Author 15 729,00 JPY 29,00 JPY 15 758,00 JPY Available 1 week ago View offer
SP SpringerNatureLink Shop INT 109,99 USD free 109,99 USD Available 3 days ago View offer
SP SpringerNatureLink Shop INT 119,99 USD 15,00 USD 134,99 USD Available 3 days ago View offer
SP SpringerNatureLink Shop INT 119,99 USD 25,00 USD 144,99 USD Available 3 days ago View offer
SP SpringerNatureLink Shop INT 130,00 EUR free 130,00 EUR Available 3 days ago View offer

Prices and availability may change. Last Updated: 08.08.2026 23:26.

0,0
☆☆☆☆☆
0 reviews
5★ 0%
4★ 0%
3★ 0%
2★ 0%
1★ 0%

Product reviews

Rating
No reviews yet — be the first!
Using the real Microcontroller (µC) as a replacement for a µC model inside a system simulation of a µC-based system is a big benefit since the µC is already verified. Moreover, its maximum performance and its accuracy are much higher than any simulation model. With the Chip-Hardware-in-the-Loop Simulation (CHILS) approach, Christian Köhler covers the connection between µC and simulation, the analysis and optimization of such coupling systems as well as the interface abstraction. He develops the hardware to simulation coupling system with a focus on less hardware effort, the capabilities to couple with different simulation environments, and the efficiency of coupling. The interface abstraction primarily supports the efficiency of coupling. The system analysis and optimization concepts include formal criteria to determine the fidelity of Hardware-in-the-Loop (HIL) coupling systems, stability analysis of coupling systems, and the numerical analysis of applied software algorithms. Furthermore, the author presents existing concepts to simulate complex systems and compares them with the new approach.

Similar products