Pricelists.org Pricelists.org Autentificare Înregistrează-te

Advanced System Development Technologies I

☆☆☆☆☆ (0 reviews)
Show price history
Advanced System Development Technologies I
Lowest price (incl. delivery)
28 628,00 JPY
Typical price3 693,51 PLN
Lowest (90 days)171,19 PLN
Offers6
Last updated1 săptămână în urmă
See best offer
Price history (90 days)
Full history
2026-08-08 2026-08-15
Istoricul prețurilor
Actualizat laPreț
2026-08-08171,19
2026-08-15171,19
Vânzător Product price Delivery Total Disponibilitate Updated
SP SpringerNatureLink Shop INT 28 599,00 JPY 29,00 JPY 28 628,00 JPY Disponibil 4 zile în urmă View offer
SP Springer Nature Author 28 599,00 JPY 19,00 JPY 28 618,00 JPY Disponibil 1 săptămână în urmă View offer
SP SpringerNatureLink Shop INT 199,99 USD 25,00 USD 224,99 USD Disponibil 4 zile în urmă View offer
SP SpringerNatureLink Shop INT 219,99 USD 15,00 USD 234,99 USD Disponibil 4 zile în urmă View offer
SP SpringerNatureLink Shop INT 219,99 USD 29,00 USD 248,99 USD Disponibil 4 zile în urmă View offer
SP SpringerNatureLink Shop INT 236,00 EUR free 236,00 EUR Disponibil 4 zile în urmă View offer

Prețurile și disponibilitatea se pot modifica. Ultima actualizare: 08.08.2026 23:36.

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

Product reviews

Rating
No reviews yet — be the first!
This book covers vibroacoustic monitoring, inertial attitude systems, and control system for device processing in complex objects. Modern approaches to the synthesis of algorithmic support for a strapdown inertial attitude system are considered. The general characteristics of navigation systems and the composition of their inertial measurement unit are given. The methods of initial alignment of the system on a stationary base are described. Particular attention is paid to the attitude kinematic parameters of the body frame and methods of their numerical integration. Picard's methods for integrating the Bortz and Poisson kinematic equations are shown. An algorithm for a strapdown inertial attitude system based on using real signals of high-precision laser gyroscopes is proposed. System simulation was carried out using the proposed algorithmic methods. The relevance of the control system created for the processing device parts in the conditions of automated manufacturing is substantiated. Theoretical studies are presented, and the relation between electrical signals, the level of tool wear, and the main reasons for generating electrical signals are identified. A mathematical model of cutting tool wear control was developed based on measuring the variable component of cutting electromotive force. A control system for processing device parts on computer numerical control machines in automated production conditions has been developed. It allows for recording critical wear and breakage of the cutting tool, performing its dimensional adjustment directly on the device, and carrying out its industrial approval in flexible production systems.

Similar products